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Results provide an understanding on how consumers differentiate between types of products when stating their WTP. The findings suggest that WTP for greener versus branded greener or new products varies with product category. For paper, toner cartridges, and cell phones, brand effects are apparent. However, for cameras and printers brand does not appear to counterbalance perceived risk. As the importance of brand is a function of product category and is significantly related to WTP, original equipment manufacturers (OEMs) should carefully consider this relationship for their products before making decisions on the use of brand as a part of remanufacturing\u002Frecycling strategy.",{"EN":134},"Offering branded remanufactured\u002Frecycled products: at what price?",{"VOID":136},"[\"18230403708898004944\"]",{"VOID":138},"Kilbourne W, Pickett G: How materialism affects environmental beliefs, concern, and environmentally responsible behavior. J Business Res 2007,61(9):885–893. 10.1016\u002Fj.jbusres.2007.09.016\nPrakash A: Greening the Firm – The Politics of Corporate Environmentalism. Cambridge University Press, Cambridge; 2000.\nSchaefer A, Crane A: Addressing sustainability and consumption. J Macromarketing 2005,25(1):76–92. 10.1177\u002F0276146705274987\nEwadinger M, Mouw S: Recycling creates jobs and boosts economy. Biocycle 2005,46(10):41–43.\nFarrell Tucker M: Becoming the world's coolest recycler. In Business 2006,28(5):14.\nJung KS, Hwang H: Competition and cooperation in a remanufacturing system with take-back requirement. J Intell Manuf 2011,22(3):427–433. 10.1007\u002Fs10845-009-0300-z\nShih LH: Reverse logistics system planning for recycling electrical appliances and computers in Taiwan. Resour Conserv Recycling 2001, 32: 55–72. 10.1016\u002FS0921-3449(00)00098-7\nEuropean Union (EU 2003a): Directive 2002\u002F96\u002FEC of the European Parliament and of the Council of 27 January 2003 on waste electrical and electronic equipment (WEEE), Official Journal, L 037, 13\u002F02\u002F2003, pp. 24–39. European Union, Brussels (2003)\nEuropean Union (EU 2003b): Directive 2002\u002F95\u002FEC of the European Parliament and of the Council of 27 January 2003 on the restriction of the use of certain hazardous substances in electrical and electronic equipment, pp. 19–23. European Union, Brussels (2003). Official Journal, L 037, 13\u002F02\u002F2003\nState of California:Electronic Waste Recycling Act of 2003 (SB 20) SHER. Statutes of 2003, California; 2003.\nLinton JD, Klassen R, Jayaraman V: Sustainable supply chains: an introduction. J Oper Manage 2007, 25: 1075–1082. 10.1016\u002Fj.jom.2007.01.012\nMichaud C, Llenena D: Green consumer behavior: an exploratory analysis of willingness to pay for remanufactured products. Business Strategy Environ 2011, 20: 408–420.\nArndt M: Cat sink its claws into services. Bus Week 2005,3692(December 5):56–59.\nLinton JD, Johnston DA: A decision support system for the planning of remanufacturing at Nortel. Interfaces 2000, 30: 17–31. 10.1287\u002Finte.30.6.17.11631\nLinton JD: Assessing the economic rationality of remanufacturing products. J Product Innovation Manage 2008, 25: 287–302. 10.1111\u002Fj.1540-5885.2008.00301.x\nFinisterra Do Paco A, Barata Raposo ML, Filho WL: Identifying the green consumer: a segmentation study. J Target Meas Anal Mark 2009,17(1):17–25. 10.1057\u002Fjt.2008.28\nBarquet AP, Rozenfled H, Forcellini FA: An integrated approach to remanufacturing: model of a remanufacturing system. J Remanufacturing 2013,3(1):1–11. doi:10.1186\u002F2210–4690–3-1 10.1186\u002F2210-4690-3-1\nXu Y, Feng W: Develop a cost model to evaluate the economic benefit of remanufacturing based on specific technique. J Remanufacturing 2014,4(4):1–12.\nKinoti M: Green marketing intervention strategies and sustainable development: a conceptual paper. Int J Business Soc Sci 2011,2(23):263–273.\nTsen C, Phang G, Hasan H, Buncha MR: Going green: a study of consumers' willingness to pay for green products in Kota Kinabalu. Int J Business Soc 2006,7(2):40–54.\nGuide VD, Li J: The potential for cannibalization of new products sales by remanufactured products. Decision Sci 2010,41(3):547. 10.1111\u002Fj.1540-5915.2010.00280.x\nHanss D, Böhm G: Sustainability seen from the perspective of consumers. Int J Consum Stud 2012, 36: 678–687. 10.1111\u002Fj.1470-6431.2011.01045.x\nMobley AS, Painter TS, Untch EM, Rao Unnava H: Consumer evaluation of recycled products. Psychol Mark 1995, 12: 165–176. 10.1002\u002Fmar.4220120302\nSmith VM, Keoleian GA: The value of remanufactured engines: life-cycle environmental and economic perspectives. J Ind Ecol 2004, 8: 193–221. 10.1162\u002F1088198041269463\nHamzaoui-Essoussi L, Linton JD: New or recycled products: how much are consumers willing to pay? J Consum Mark 2010,27(5):458–468. 10.1108\u002F07363761011063358\nAaker DA: Managing Brand Equity. The Free Press, New York; 1991.\nErdem T, Swait J: Brand equity as a signalling phenomenon. J Consum Psychol 1998,7(April):131–157. 10.1207\u002Fs15327663jcp0702_02\nAgrawal D: Effects of brand loyalty on advertising and trade promotions: a game theoretic analysis with empirical evidence. Mark Sci 1996, 15: 80–108. 10.1287\u002Fmksc.15.1.86\nPolonsky M, Mintu A: The future of environmental marketing: food for thought. In Environmental Marketing Strategies Practices, Theory and Research. Edited by: Polonsky M, Mintu A. Routledge, Oxford, UK; 1997:389–391.\nOttman, J: What sustainability means to consumer product marketers. In: The Ottman Report on Environmental Marketing. (1998). available at: www.greemnarketing.com\u002Farticles\u002FOttman-Report.html\nCharter M, Peattie D, Ottman J, Polonsky MJ: Marketing and Sustainability. The Centre for Business Relationships, Accountability, Sustainability and Society (BRASS), Cardiff; 2002.\nBarros AI, Dekker R, Scholten V: A two-level network for recycling sand: a case study. European J Oper Res 1998, 110: 199–214. 10.1016\u002FS0377-2217(98)00093-9\nKrikke HR, Van Harlen A, Schuur PC: Business case OCE: reverse logistics network redesign for copiers. OR Spectrum 1999, 21: 381–409. 10.1007\u002Fs002910050095\nZhang T, Chu J, Wang X, Liu X, Cui P: Development pattern and enhancing systemof automotive components remanufacturing industry in China. Resour Conserv Recycling 2011,55(6):613–622. 10.1016\u002Fj.resconrec.2010.09.015\nNasr N: Real-world remanufacturing. Ind Engineer 2011,43(6):24.\nThorn BK, Rogerson P: Take it back. IIIE Solutions 2002,34(4):34–40.\nBasgoze P, Tektas O: Ethical perceptions and green buying behavior of consumers: a cross-national exploratory study. J Econ Behav Stud 2012,4(8):477–488.\nLaroche M, Bergeron J, Barbaro-Forleo G: Targeting consumers who are willing to pay more for environmentally friendly products. J Consum Mark 2001,18(6):503–520. 10.1108\u002FEUM0000000006155\nPickett-Baker J, Ozaki R: Pro-environmental products: marketing influence on consumer purchase decision. J Consum Mark 2008,25(5):281–293. 10.1108\u002F07363760810890516\nCason TN, Gangadharan L: Environmental labelling and incomplete consumer information in laboratory markets. J Environ Econ Manage 2001, 43: 113–114. 10.1006\u002Fjeem.2000.1170\nKirchhoff S: Green business and blue angels: a model of voluntary overcompliance with asymmetric information. Environ Resour Econ 2000,15(4):403–420. 10.1023\u002FA:1008303614250\nMiyake M: Convergence theorems of willingness-to-pay and willingness-to-accept for non market goods. Soc Choice Welfare 2010,34(4):549–570. 10.1007\u002Fs00355-009-0416-2\nFerguson ME, Toktay LB: The effect of competition on recovery strategies. Prod Oper Manage 2006,15(3):351–368. 10.1111\u002Fj.1937-5956.2006.tb00250.x\nHazen BT, Overstreet RE, Jones-Farmer LA, Field HS: The role of ambiguity tolerance in consumer perception of remanufactured products. Int J Prod Econ 2012, 135: 781–790. 10.1016\u002Fj.ijpe.2011.10.011\nLund R: Remanufacturing. Technol Rev 1984, 87: 18–23.\nMandrik CA, Bao Y: Exploring the concept and measurement of general risk aversion. In Advances in Consumer Research 32nd edition. Edited by: Menon G, Rao AR. 2005, 531–539.\nRousseau DM, Sitkin SB, Butt RS, Camerer C: Not so different after all: a cross-discipline view of trust. Acad Manage Rev 1998,23(3):393–404. 10.5465\u002FAMR.1998.926617\nMitchell VW: Consumer perceived risk: conceptualisations and models. European J Mark 1999,33(1\u002F2):163–195. 10.1108\u002F03090569910249229\nMatzler K, Grabner-Kräuter S, Bidmon S: Risk aversion and brand loyalty: the mediating role of brand trust and brand affect. J Product Brand Manage 2008,17(3):154–162. 10.1108\u002F10610420810875070\nGermunden HG: Perceived risk and information search: a systematic meta-analysis of the empirical evidence. Int J Res Mark 1985, 2: 79–100. 10.1016\u002F0167-8116(85)90026-6\nAgarwal S, Teas RK: Perceived value: mediating role of perceived risk. J Mark Theory Pract 2001,9(4):1–14.\nDodds WB, Monroe KB, Grewal D: Effects of price, brand, and store information on buyers' product evaluations. J Mark Res 1991,28(3):307–319. 10.2307\u002F3172866\nElliot R, Yannopoulou N: The nature of trust in brands: a psychosocial model. European J Mark 2007,41(9\u002F10):988–998. 10.1108\u002F03090560710773309\nZeithaml VA: Consumer perceptions of price, quality and value: a means-end model and synthesis of evidence. J Mar Sci 1988,52(3):2–22.\nBauer RA: Consumer behavior as risk taking. In Dynamic Marketing for a Changing World, Proceedings of the 43rd Conference of the American Marketing Association Edited by: Hancock RS. 1960, 389–398.\nKotler P: Marketing Management. 9th edition. Prentice Hall, New Jersey; 1997.\nHan CM: Country image: halo or summary construct? J Mark Res 1989,26(May):222–229. 10.2307\u002F3172608\nJohansson JK: Determinants and effects of the use of the ‘Made In’ labels. Int Mark Rev 1989,6(January):47–58.\nSwait J, Erdem T: Brand effects on choice and choice set formation under uncertainty. Marketing Science 2007,26(5):679–697. 10.1287\u002Fmksc.1060.0260\nSteenkamp J-BEM, Hofstede F, Wedel M: A cross-national investigation into the individual and national cultural antecedents of consumer innovativeness. J Mar Sci 1999, 63: 55–59.\nMoney BR, Gilly MC, Graham JL: Explorations of national culture and word-of-mouth referral behaviour in the purchase of industrial services in the United States and Japan. J Mar Sci 1998,62(October):76–78.\nBearden WO, Shimp TA: The use of extrinsic cues to facilitate product adoption. J Mark Res 1982, 19: 229–239. 10.2307\u002F3151623\nFowler, GA: Green sales pitch isn't moving many products. Wall Street J 6, March (2002). B1 and B4\nHerbig P, Milewicz J: The relationship of reputation and credibility to brand success. J Consum Mark 1995, 12: 5–10. 10.1108\u002F07363769510795697\nErdem T, Swait J: Brand credibility and its role in brand choice and consideration. J Consum Res 2004,31(1):191–199. 10.1086\u002F383434\nErdem T, Keane MP: Decision-making under uncertainty: capturing dynamic brand choice processes in turbulent consumer goods markets. Mark Sci 1996,15(1):1–2. 10.1287\u002Fmksc.15.1.1\nEckert C, Louviere JJ, Islam T: Seeing the forest despite the trees: brand effects on choice uncertainty. Int J Res Mark 2012,29(3):256–264. 10.1016\u002Fj.ijresmar.2012.02.001\nSubramanian R, Subramanyam R: Key factors in the market for remanufactured products. Manuf Serv Oper Manage 2012,14(2):315–326.\nMooth, R: Winning a green innovation: room for growth in untapped markets. (2009). available at http:\u002F\u002Fwww.nielsen.com\u002Fus\u002Fen\u002Finsights\u002Fnews\u002F2009\u002Fwinning-at-green-innovation-room-for-growth-in-untapped-markets.html - accessed July 25, 2014, Mooth, R: Winning a green innovation: room for growth in untapped markets. (2009). available at - accessed July 25, 2014 http:\u002F\u002Fwww.nielsen.com\u002Fus\u002Fen\u002Finsights\u002Fnews\u002F2009\u002Fwinning-at-green-innovation-room-for-growth-in-untapped-markets.html\nAaker DA, Keller KL: Interpreting cross-cultural replications of brand extension research. Int J of Res in Marketing 1993,10(1):55–59. 10.1016\u002F0167-8116(93)90033-U\nEl Korchi A, Millet D: Conditions of emergence of OEM's reverse supply chains. J Remanufacturing 2014,4(3):1–17.\nPark C, Srinivasan V: A survey-based method for measuring and understanding brand equity and its extendibility. J Mark Res 1994,31(2):271–288. 10.2307\u002F3152199\nSethuraman R: A model of how discounting high-priced brands affects the sales of low-priced brands. J Mark Res 1996, 33: 399–409. 10.2307\u002F3152211\nTepper K: The role of labeling processes in elderly consumers' responses to age segmentation cues. J Consum Res 1994,20(March):503–519. 10.1086\u002F209366\nCho CH, Lee JG, Tharp M: Different forced-exposure levels to banner advertisements. J Advert Res 2001, 41: 45–56.\nBohlen G, Schlegelmilch BB, Diamantopoulos A: Measuring ecological concern: a multi-construct perspective. J Mark Manage 1993,9(4):415–430. 10.1080\u002F0267257X.1993.9964250\nCox D, Cox A: Communicating the consequences of early detection: the role of evidence and framing. J Mar Sci 2001,65(July):91–103.\nKo Y, Hwang H: Efficient operation policy in a closed-loop tire manufacturing system with EPR industry. Engineering Manage Syst 2009,8(3):162–170.\nLinnanen L: An Insider's Experiences with Environmental Entrepreneurship Making Ecopreneurs: Developing Sustainable Entrepreneurship. 2nd edition. Gowen Publishing Ltd, Farnham, England; 2010.\nAtasu A, Guide VDR Jr, Van Wassenhove LN: So what if remanufacturing cannibalizes my new product sales? 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paper considers a two-echelon remanufacturing supply chain model which consists of one supplier, one assembler and one remanufacturer under patent protection. The supplier manufactures two components which are assembled into one product by the assembler, and then sold to the market. The remanufacturer collects used products which are detached into two types of components by the remanufacturer, and the ordinary component can be directly remanufactured by the remanufacturer, but the remanufacturer needs to pay the patent licensing fee to the supplier. The core component needs to be remanufactured by the supplier, and then two types of remanufactured components are assembled into remanufactured products by the remanufacturer. The assembler and remanufacturer compete for new and remanufactured products in the sales market. This paper uses Stackelberg game to analyze the pricing strategy of the model, and obtain the equilibrium wholesale prices of two components and sales prices of new and remanufactured products in three cases that there is no fairness concerns (N Model), the supplier is concerned with the fairness concerns of the remanufacturer (F Model), the supplier is not concerned with the fairness concerns of the remanufacturer(NF Model). The results show that if the supplier pay attention to the fairness concern behavior of the remanufacturer, the equilibrium wholesale price of component 1 and selling price of new products increase with the fairness concern coefficient, and the equilibrium wholesale prices of component 2 and remanufactured products follow the opposite. Through the theoretical analysis and numerical simulation our paper obtains the equilibrium solutions of the pricing decisions and carry out the sensitivity analysis of the pricing strategy and profits with respect to the unit patent licensing fee and fairness concerns coefficient, which demonstrate that F Model is the best for the remanufacturer and the whole supply chain, N Model is the best for the supplier, and NF Model is the best for the assembler.",{"EN":240},"Pricing decisions of two-echelon remanufacturing supply chain with remanufacturer’s fairness 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J Oper Manag 31(3):129–137",{"doi":361},{"id":357,"text":432,"url":359,"identifiers":433},"Kovach JJ, Atasu A, Banerjee S (2018) Salesforce incentives and remanufacturing. Prod Oper Manag 27(3):516–530",{"doi":361},{"id":435,"text":436,"url":437,"identifiers":438},"96104005-af36-4c8a-909f-f3d74197da5f","Liu H, Lei M, Huang T, Leong GK (2018) Refurbishing authorization strategy in the secondary market for electrical and electronic products. Int J Prod Econ 195:198–209","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS0925527317303274",{"doi":439},"10.1016\u002Fj.ijpe.2017.10.012",{"id":357,"text":441,"url":359,"identifiers":442},"Li TT, Xie JX, Zhao XB, Tang JF (2016) On supplier encroachment with retailer’s fairness concerns. Comput Ind Eng 98:499–512",{"doi":361},{"id":357,"text":444,"url":359,"identifiers":445},"Liu BY, Chen WD, Segerstedt A, Yang HD, Zhang QH (2019) A min-max solution to optimise planned lead time in a remanufacturing system. Int Trans Oper Res 26:485–506",{"doi":361},{"id":22,"text":447,"url":22,"identifiers":448},"Liu Z, Li BY, Gong BG, Cheng JS (2016) Production design decision and coordination of closed-loop supply chain considering remanufacturer’s fairness concern. Control Decis 31(9):1615–1622 (in Chinese)",{},{"id":357,"text":450,"url":359,"identifiers":451},"Loch CH, Wu Y (2008) Social preferences and supply chain performance: an experimental study. Manage Sci 54(11):1835–1849",{"doi":361},{"id":357,"text":453,"url":359,"identifiers":454},"Ma ZJ, Hu S, Dai Y, Ye YS (2018) Pay-as-you-throw versus recycling fund system in closed-loop supply chains with alliance recycling. Int Trans Oper Res 25(6):1811–1829",{"doi":361},{"id":22,"text":456,"url":457,"identifiers":458},"Mehrjerdi YZ, Shafiee M (2020) A resilient and sustainable closed-loop supply chain using multiple sourcing and information sharing strategies. J Clean Prod. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.jclepro.2020.125141","https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.jclepro.2020.125141",{"mag":459,"openalex":460,"doi":461},"3109076998","W3109076998","10.1016\u002Fj.jclepro.2020.125141",{"id":463,"text":464,"url":465,"identifiers":466},"a0658fdd-413a-46db-9efd-77f854e1c48f","Mitra S, Webster S (2008) Competition in remanufacturing and the effects of government subsidies. Int J Prod Econ 111(2):287–298","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS0925527307001880",{"doi":467},"10.1016\u002Fj.ijpe.2007.02.042",{"id":357,"text":469,"url":359,"identifiers":470},"Ösdemir A, Kemahlıoğlu-Ziya E, Parlaktürk AK (2014) Competitive quality choice and remanufacturing. Prod Oper Manag 23(1):48–64",{"doi":361},{"id":472,"text":473,"url":474,"identifiers":475},"98cc1738-7971-4e12-8960-bbe31e907e3f","Ozgun CD, Chen YF, Li J (2010) Channel Coordination under fairness concerns and nonlinear demand. Eur J Oper Res 207(3):1321–1326","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS0377221710005278",{"doi":476},"10.1016\u002Fj.ejor.2010.07.017",{"id":357,"text":478,"url":359,"identifiers":479},"Pavlov V, Katok E (2009) Fairness and coordination failures in supply chain contracts. Technical Report, Smeal College of Business, Penn State University, USA",{"doi":361},{"id":357,"text":481,"url":359,"identifiers":482},"Qin F, Mai F, Fry MJ, Raturi AS (2016) Supply-chain performance anomalies: fairness concerns under private cost information. Eur J Oper Res 252(1):170–182",{"doi":361},{"id":484,"text":485,"url":486,"identifiers":487},"49e1f1d0-0c99-4982-8048-25f3bb97dbc3","Sarkar S, Bhala S (2021) Coordinating a closed loop supply chain with fairness concern by a constant wholesale price contract. 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J Oper Manag 25(6):1123–1140","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS0272696307000174",{"doi":513},"10.1016\u002Fj.jom.2007.01.014",{"id":22,"text":515,"url":516,"identifiers":517},"Zhang Z, Liu S, Niu B (2020) Coordination mechanism of dual-channel closed-loop supply chains considering product quality and return. J Clean Prod. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.jclepro.2019.119273","https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.jclepro.2019.119273",{"mag":518,"openalex":519,"doi":520},"2986236436","W2986236436","10.1016\u002Fj.jclepro.2019.119273",{"id":357,"text":522,"url":359,"identifiers":523},"Zhou W, Zheng Y, Huang W (2017) Competitive advantage of qualified WEEE recyclers through EPR legislation. Eur J Oper Res 257(2):641–655",{"doi":361},{"id":357,"text":525,"url":359,"identifiers":526},"Zhou YJ, Bao MJ, Chen XH, Xu XH (2016) Co-op advertising and emission reduction cost sharing contract and coordination in low-carbon supply chain based on fairness concerns. J Clean Prod 133(1):402–413",{"doi":361},{"id":528,"createTime":529,"updateTime":530,"relativeEntities":531,"slug":532,"properties":533,"entityType":141,"verifyStatus":142,"verifyTime":530,"verifyNote":144,"languages":22,"translateLanguages":22,"viewCount":23,"primaryUrl":542,"fullTextUrl":22,"authors":543,"publicationType":180,"publisherRelationship":559,"citationCount":22,"citationInfo":22,"publishDate":603,"publishYear":604,"citationAnalyzeStatus":21,"lastCitationAnalyze":22,"indexDatabases":605,"openAccess":22,"references":22,"isForceReanalyzing":229},"08907b7b-5aec-4c61-b547-73b2132d1be6","2023-12-31T21:31:26.461+00:00","2025-02-27T01:16:54.207+00:00",[],"Prognosis-of-product-take-back-for-enhanced-remanufacturing",{"abstract":534,"title":536,"references":538,"doi":540},{"EN":535},"Remanufacturing reduces final wastes to sinks, extraction of virgin materials and pollution from production processes by reinstating products taken back by end-users to satisfy part of overall demand. Product returns are delayed and possibly limited in periods of fast growth and excessive in the aftermath. Varying growth\u002Fdemand and volatile take back by consumers and industrial end-users introduce uncertainty, regarding quantity and quality of returns. As remanufacturing expands, escalating competition for acquisition of high quality returns exacerbates uncertainty. Production planning and control for efficient remanufacturing depends on reliable prediction of quantity and quality of returns. A method is developed for prognosis of product return quantity and quality grades, as reflected by vintage flows. It is anchored on a law relating stock and end-of-life level, under random losses and arbitrary end-of-life distribution. Efficacy is tested via a model that describes stock and flows in reuse\u002Fremanufacturing, allowing for varying demand, random stock losses, random product returns with time-varying distributions and time-varying utilisation of product returns. Realisations are obtained by Marko-chain Monte-Carlo simulation. Inherently integral in nature, using scaled data and founded on rigorous balances, the method enables prognosis of returns and age-vintage flows, under realistic conditions, including unknown nonlinearities and non-stationarities. It features improved performance (mean absolute error less than one half) compared to leading methods in-use that employ black-box models with error-driven parameter adaptation (e.g. regression). Efficacy is particularly high at crucial peaks and lows (shortage or surplus periods) enabling resourceful planning of acquisition and inventory control of product returns towards sustainability.",{"EN":537},"Prognosis of product take-back for enhanced remanufacturing",{"VOID":539},"Abbey JD, Meloy MG, Guide VDR, Atalay S (2015) Remanufactured products in closed-loop supply chains for consumer goods. 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Int J Prod Res 44(5):981–998\nJayaraman V, Singh R, Anandnarayan A (2012) Impact of sustainable manufacturing practices on consumer perception and revenue growth: an emerging economy perspective. Int J Prod Res 50(5):1395–1410\nJunior ML, Fihlo MG (2011) Production planning and control for remanufacturing: literature review and analysis. Prod Plan Control:419–435. https:\u002F\u002Fdoi.org\u002F10.1080\u002F09537287.2011.561815\nKelle P, Silver EA (1989) Forecasting the returns of reusable containers. J Oper Manag 8(1):17–35\nKiesmuller PG, van der Laan AE (2001) An inventory model with dependent product demands and returns. Int J Prod Econ 72(1):73–87\nKumar DT, Soleimani H, Kannan G (2014) Forecasting return products in an integrated forward\u002Freverse supply chain utilizing an ANFIS. Int J Appl Math Comput Sci 24(3):669–682\nLiang X, Jin X, Ni J (2014) Forecasting product returns for remanufacturing systems. J Remanufacturing 4(1):8 http:\u002F\u002Fwww.journalofremanufacturing.com\u002F4\u002F1\u002F8\nLyons DI (2007) A spatial analysis of loop closing among recycling, remanufacturing and waste treatment firms in Texas. J Ind Ecol 11(1):43–54\nMahadevan B, Pyke DF, Fleischmann M (2002) Periodic review, push inventory policies for remanufacturing. In: ERIM report series ERS-2002-35-LIS, Faculty of Business Administration, Erasmus University Rotterdam, The Netherlands\nMarx-Gómez J, Rautenstrauch C, Nürnberger A, Kruse R (2002) Neuro-fuzzy approach to forecast returns of scrapped products to recycling and remanufacturing. Knowl-Based Syst 15(1–2):119–128\nMatsumoto M, Umeda Y (2011) An analysis of remanufacturing practices in Japan. 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J Remanufacturing 5(4). https:\u002F\u002Fdoi.org\u002F10.1186\u002Fs13243-015-0014-7",{"VOID":541},"10.1007\u002Fs13243-019-00071-w","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002Fs13243-019-00071-w",[544],{"id":545,"sortIndex":23,"researcher":22,"roles":546,"affiliations":547,"properties":556,"displayName":558,"givenName":22,"familyName":22},"398cf4e9-38a6-4dd4-a57f-b4ac1d027af3",[150],[548],{"id":549,"sortIndex":23,"affiliation":550,"properties":22},"b13871ad-168c-4f64-8379-b367af930007",{"id":549,"createTime":22,"updateTime":22,"relativeEntities":551,"slug":22,"properties":552,"entityType":22,"verifyStatus":22,"verifyTime":22,"verifyNote":22,"languages":22,"translateLanguages":22,"viewCount":22,"url":22,"parentIds":555,"statistic":22},[],{"title":553},{"VI":554},"ANION Environmental, Ltd., Athens, Greece",[],{"title":557},{"VI":558},"Christos Aristeides Tsiliyannis",{"url":542,"publisher":560,"properties":598},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":561,"slug":10,"properties":562,"entityType":20,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"languages":22,"translateLanguages":22,"viewCount":23,"subjectFields":566,"manageAffiliations":579,"indexDatabases":585,"url":22,"thumbnailPath":22,"statistic":593,"gsStatistic":22,"type":119,"analyzePriority":22},[],{"issn":563,"title":564,"eissn":565},{"VOID":15},{"EN":17},{"VOID":13},[567,571,575],{"id":26,"createTime":22,"updateTime":22,"relativeEntities":568,"label":569,"description":570,"parentId":22,"standard":22,"scholarHubFieldId":22},[],{"EN":29},{},{"id":32,"createTime":22,"updateTime":22,"relativeEntities":572,"label":573,"description":574,"parentId":22,"standard":22,"scholarHubFieldId":22},[],{"EN":35},{},{"id":38,"createTime":22,"updateTime":22,"relativeEntities":576,"label":577,"description":578,"parentId":22,"standard":22,"scholarHubFieldId":22},[],{"EN":41},{},[580],{"id":45,"createTime":22,"updateTime":22,"relativeEntities":581,"slug":22,"properties":582,"entityType":22,"verifyStatus":22,"verifyTime":22,"verifyNote":22,"languages":22,"translateLanguages":22,"viewCount":22,"url":22,"parentIds":584,"statistic":22},[],{"title":583},{"EN":49},[],[586],{"id":53,"indexDatabase":587,"url":64,"indexYears":65,"academicFieldIds":592,"indexDatabaseRanking":70},{"id":55,"createTime":22,"updateTime":22,"relativeEntities":588,"label":589,"description":590,"key":61,"publicationTags":591,"standard":22},[],{"EN":58,"VI":58},{"EN":58,"VI":60},[63],[67,68,69],{"impactFactor":23,"impactFactorByYear":594,"i10Index":83,"i10IndexLast5Year":84,"totalPublication":85,"totalPublicationByYear":595,"totalCitation":98,"totalCitationByYear":596,"totalCitationPerPublication":107,"totalCitationPerPublicationByYear":597,"hindexLast5Year":102,"hindex":102},{"2014":73,"2015":74,"2016":75,"2017":76,"2018":77,"2019":78,"2020":79,"2021":80,"2022":81,"2023":82},{"2011":87,"2012":88,"2013":89,"2014":90,"2015":89,"2016":91,"2017":92,"2018":93,"2019":94,"2020":95,"2021":87,"2022":96,"2023":89,"2024":97},{"2013":100,"2014":101,"2015":102,"2016":103,"2017":104,"2018":105,"2019":106,"2020":84,"2021":92,"2022":92,"2023":90},{"2013":109,"2014":92,"2015":110,"2016":111,"2017":112,"2018":113,"2019":114,"2020":115,"2021":116,"2022":117,"2023":118},{"pages":599,"volume":601},{"VOID":600},"15-42",{"VOID":602},"10","2019-06-14",2019,[70],{"id":607,"createTime":608,"updateTime":609,"relativeEntities":610,"slug":611,"properties":612,"entityType":141,"verifyStatus":142,"verifyTime":609,"verifyNote":144,"languages":22,"translateLanguages":22,"viewCount":23,"primaryUrl":621,"fullTextUrl":22,"authors":622,"publicationType":180,"publisherRelationship":651,"citationCount":22,"citationInfo":22,"publishDate":694,"publishYear":226,"citationAnalyzeStatus":21,"lastCitationAnalyze":22,"indexDatabases":695,"openAccess":22,"references":22,"isForceReanalyzing":229},"a4be3ff1-6d5e-4fb1-b53b-2b4910415aa2","2023-12-12T07:31:01.368+00:00","2025-02-26T23:14:05.393+00:00",[],"Develop-a-cost-model-to-evaluate-the-economic-benefit-of-remanufacturing-based-on-specific-technique",{"abstract":613,"title":615,"references":617,"doi":619},{"EN":614},"Remanufacturing is a process of recovering used products to a like-new condition. It can potentially achieve considerable economic, environmental and social benefits in many applications. However, its economic benefit varies for different products and remanufacturing processes. This research aims to develop a framework and cost model to quantitatively evaluate the benefits of remanufacturing techniques to assist the decision making on end-of-life strategies. Additive manufacturing-based remanufacturing process has been modelled first, then cost breakdown structure for the process has been created, and the cost model has been developed. Validation of the cost model has been conducted based on expert judgement, and a case study has been carried out by using the developed cost model to compare the benefit of remanufacturing a specified component or making a new one.",{"EN":616},"Develop a cost model to evaluate the economic benefit of remanufacturing based on specific technique",{"VOID":618},"Lund RT: Remanufacturing: the experience of the United States and implications for developing countries. World Bank, Washington, D.C; 1984.\nDunmade I: PLETS model: a sustainability-concept-based approach to product end-of-life management. Proc. SPIE 5583 Environ. Conscious. Manufact. IV 2004., 118: doi:10.1117\u002F12.569629\nBufardi A, Sakara D, Gheorghe R, Kiritsis D, Xirouchakis P: Multiple criteria decision aid for selecting the best product end of life scenario. Int. J. Comp. Integr. 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Eng. 2011,4(1):2–15. 10.1080\u002F19397038.2010.528848\nJiang Z, Zhang H, Sutherland JW: Development of multi-criteria decision making model for remanufacturing technology portfolio selection. J. Clean. Prod. 2011,19(17):1939–1945.\nChen J-M, Chang CI: The economics of a closed-loop supply chain with remanufacturing. J. Operat. Res. Soc. 2011,63(10):1323–1335.\nSutherland JW, Jenkins TL, Haapala KR: Development of a cost model and its application in determining optimal size of a diesel engine remanufacturing facility. CIRP. Annals-Manufact. Technol. 2010,59(1):49–5. 10.1016\u002Fj.cirp.2010.03.050\nAzadivar F, Ordoobadi S: A simulation model to justify remanufacturing policies. Proceedings of the IEEE Simulation Conference 2010 Winter, Baltimore, MD; 1592–1600. doi:10.1109\u002FWSC.2010.5678909\nNational Aeronautics and Space Administration (NASA): NASA Cost Estimating Handbook. 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Prod. Econ. 2013,142(1):74–88. 10.1016\u002Fj.ijpe.2012.09.020\nJung JY: Manufacturing cost estimation for machined parts based on manufacturing features. J. Intell. Manuf. 2002,13(4):227–238. 10.1023\u002FA:1016092808320\nKiritsis D, Neuendorf KP, Xirouchakis P: Petri Net techniques for process planning cost estimation. Adv. Eng. Software. 1999, 30: 375–387. 10.1016\u002FS0965-9978(98)00126-4\nXu Y, Elgh F, Erkoyuncu JA, Bankole O, Goh Y, Cheung W, Baguley P, Wang Q, Arundachawat P, Shehab E, Newnes L, Roy R: Cost engineering for manufacturing: current and future research. Int. J. Comput. Integr. Manuf. 2011,25(4–5):300–314. iFirst article\nXu Y, Roy R, Cassaro G, Ramsden J: Development of a cost estimating framework for nanotechnology based products. Proceedings of the 16th ISPE International Conference on Concurrent Engineering, Taibei, Taiwan; 2009:193–201.\nXu Y, Wang J, Tan X, Curran R, Raghunathan S, Doherty J, Gore D: Manufacturing cost modeling for aircraft wing. Proceedings of Sixth International Conference on Manufacturing Research (ICMR08, Brunel University; 817–824.\nWei Y, Egbelu P: A framework for estimating manufacturing cost from geometric design data. Int. J. Comput. Integr. Manuf. 2000,13(1):50–63. 10.1080\u002F095119200130054\nWhat is MECE, and is it MECE?. . Accessed 12th August 2011 http:\u002F\u002Ftimvangelder.com\u002F2010\u002F06\u002F04\u002Fwhat-is-mece-and-is-it-mece\u002F\nFalvey T: A9 Dragonfly: composite leading edge slats designer and Cg, mass and inertia manager. Cranfield University, MSc thesis; 2010.",{"VOID":620},"10.1186\u002F2210-4690-4-4","http:\u002F\u002Flink.springer.com\u002F10.1186\u002F2210-4690-4-4",[623,638],{"id":624,"sortIndex":23,"researcher":22,"roles":625,"affiliations":626,"properties":635,"displayName":637,"givenName":22,"familyName":22},"48a7b2f9-7ff7-489a-beab-593e056005f7",[150],[627],{"id":628,"sortIndex":23,"affiliation":629,"properties":22},"33041345-3f07-4876-b548-4ffd739d2bc1",{"id":628,"createTime":22,"updateTime":22,"relativeEntities":630,"slug":22,"properties":631,"entityType":22,"verifyStatus":22,"verifyTime":22,"verifyNote":22,"languages":22,"translateLanguages":22,"viewCount":22,"url":22,"parentIds":634,"statistic":22},[],{"title":632},{"VI":633},"School of Applied Sciences, Cranfield University ,Cranfield, Bedford, UK",[],{"title":636},{"VI":637},"Yuchun Xu",{"id":639,"sortIndex":84,"researcher":22,"roles":640,"affiliations":641,"properties":648,"displayName":650,"givenName":22,"familyName":22},"8ca07db9-36d4-428b-becf-13fb0c783277",[150],[642],{"id":628,"sortIndex":23,"affiliation":643,"properties":22},{"id":628,"createTime":22,"updateTime":22,"relativeEntities":644,"slug":22,"properties":645,"entityType":22,"verifyStatus":22,"verifyTime":22,"verifyNote":22,"languages":22,"translateLanguages":22,"viewCount":22,"url":22,"parentIds":647,"statistic":22},[],{"title":646},{"VI":633},[],{"title":649},{"VI":650},"Wei Feng",{"url":621,"publisher":652,"properties":690},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":653,"slug":10,"properties":654,"entityType":20,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"languages":22,"translateLanguages":22,"viewCount":23,"subjectFields":658,"manageAffiliations":671,"indexDatabases":677,"url":22,"thumbnailPath":22,"statistic":685,"gsStatistic":22,"type":119,"analyzePriority":22},[],{"issn":655,"title":656,"eissn":657},{"VOID":15},{"EN":17},{"VOID":13},[659,663,667],{"id":26,"createTime":22,"updateTime":22,"relativeEntities":660,"label":661,"description":662,"parentId":22,"standard":22,"scholarHubFieldId":22},[],{"EN":29},{},{"id":32,"createTime":22,"updateTime":22,"relativeEntities":664,"label":665,"description":666,"parentId":22,"standard":22,"scholarHubFieldId":22},[],{"EN":35},{},{"id":38,"createTime":22,"updateTime":22,"relativeEntities":668,"label":669,"description":670,"parentId":22,"standard":22,"scholarHubFieldId":22},[],{"EN":41},{},[672],{"id":45,"createTime":22,"updateTime":22,"relativeEntities":673,"slug":22,"properties":674,"entityType":22,"verifyStatus":22,"verifyTime":22,"verifyNote":22,"languages":22,"translateLanguages":22,"viewCount":22,"url":22,"parentIds":676,"statistic":22},[],{"title":675},{"EN":49},[],[678],{"id":53,"indexDatabase":679,"url":64,"indexYears":65,"academicFieldIds":684,"indexDatabaseRanking":70},{"id":55,"createTime":22,"updateTime":22,"relativeEntities":680,"label":681,"description":682,"key":61,"publicationTags":683,"standard":22},[],{"EN":58,"VI":58},{"EN":58,"VI":60},[63],[67,68,69],{"impactFactor":23,"impactFactorByYear":686,"i10Index":83,"i10IndexLast5Year":84,"totalPublication":85,"totalPublicationByYear":687,"totalCitation":98,"totalCitationByYear":688,"totalCitationPerPublication":107,"totalCitationPerPublicationByYear":689,"hindexLast5Year":102,"hindex":102},{"2014":73,"2015":74,"2016":75,"2017":76,"2018":77,"2019":78,"2020":79,"2021":80,"2022":81,"2023":82},{"2011":87,"2012":88,"2013":89,"2014":90,"2015":89,"2016":91,"2017":92,"2018":93,"2019":94,"2020":95,"2021":87,"2022":96,"2023":89,"2024":97},{"2013":100,"2014":101,"2015":102,"2016":103,"2017":104,"2018":105,"2019":106,"2020":84,"2021":92,"2022":92,"2023":90},{"2013":109,"2014":92,"2015":110,"2016":111,"2017":112,"2018":113,"2019":114,"2020":115,"2021":116,"2022":117,"2023":118},{"pages":691,"volume":693},{"VOID":692},"1-12",{"VOID":224},"2014-06-02",[70],{"id":697,"createTime":698,"updateTime":699,"relativeEntities":700,"slug":701,"properties":702,"entityType":141,"verifyStatus":142,"verifyTime":699,"verifyNote":144,"languages":22,"translateLanguages":22,"viewCount":23,"primaryUrl":711,"fullTextUrl":22,"authors":712,"publicationType":180,"publisherRelationship":728,"citationCount":22,"citationInfo":22,"publishDate":772,"publishYear":773,"citationAnalyzeStatus":21,"lastCitationAnalyze":22,"indexDatabases":774,"openAccess":22,"references":22,"isForceReanalyzing":229},"673f5f90-add2-46a2-b498-3a2eb372f7ac","2024-01-26T18:16:27.348+00:00","2025-02-25T20:02:55.831+00:00",[],"An-examination-of-competitive-strategy-in-buyer-supplier-relationships-for-remanufacturing",{"abstract":703,"title":705,"references":707,"doi":709},{"EN":704},"This study aims to test a theoretical framework from relational rents (involving relational specific assets, knowledge sharing routines, complementary resources and capabilities and effective governance) that examines buyer-supplier relationships availability remanufacturing operations. Such characteristics are embedded in the Relational View perspective. Despite the economic, environmental and social benefits, remanufacturing is associated concomitantly with many challenges related to the cores remains under explored and add conflicting and dispute perspectives. Remanufacturing has multiple barriers that must be understood and addressed. In order to contribute to this discussion, this manuscript addresses how relational rents occur in remanufacturing within their competitive strategy in the buyer-supplier relationships. The findings showed no found evidence of obtaining competitive advantages clearly delineated by creating relational rents through the contributions of the specific alliance partners and collaborative relationships, but it was possible to highlight the incremental value that comes from individual efforts of each company. The results contribute to both the literature of remanufacturing, and closed-loop supply chains and relational view.",{"EN":706},"An examination of competitive strategy in buyer-supplier relationships for remanufacturing",{"VOID":708},"Abbey JD, Meloy MG, Guide VDR Jr, Atalay S (2015) Remanufactured products in closed-loop supply chains for consumer goods. Prod Oper Manag 24(3):488–503\nAbbey JD, Guide VDR Jr (2018) A typology of remanufacturing in closed-loop supply chains. Int J Prod Res 56(1–2):374–384\nAgrawal V, Atasu A, Van Ittersum K (2015) Remanufacturing, third-party competition, and consumers’ perceived value of new products. Manag Sci 61(1):6072\nAmit R, Schoemaker P (1993) Strategic assets and organizational rent. Strateg Manag J 14(1):33–46\nAuerbach CF, Silverstein LB (2003) Qualitative data: an introduction to coding and analysis. 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CIRP, Malaysia, pp 683–688\nGuidat T, Seidel J, Kohl H, Seliger G (2017) A comparison of best practices of public and private support incentives for the remanufacturing industry. Procedia CIRP 61:177–182\nGuide VDR Jr, Jayaraman V (2000) Product acquisition management: current industry practice and a proposed framework. Int J Prod Res 38(16):3779–3800\nGuide VDR Jr, Teunter RH, Van Wassenhove LN (2003) Matching demand and supply to maximize profits from remanufacturing. Manuf Serv Oper Manag 5(4):303–316\nGuide VDR Jr, Van Wassenhove LN (2001) Managing product returns for remanufacturing. Prod Oper Manag 10(2):142–155\nGuide VDR Jr, Van Wassenhove LN (2009) The evolution of closed-loop supply chain. Oper Res 57(1):10–18\nHandfield RB, Becthel C (2002) The role of trust and relationship structure in improving supply chain responsiveness. Ind Mark Manag 31(4):367–382\nHazen BT, Mollenkopf DA, Wang Y (2017) Remanufacturing for the circular economy: an examination of consumer switching behavior. Bus Strateg Environ 26(4):451–464\nHolcomb TR, Hitt MA (2007) Toward a model of strategic outsourcing. J Oper Manag 25(2):464–481\nIjomah WL, McMahon CA, Hammond GP, Newman ST (2007) Development of design for remanufacturing guidelines to support sustainable manufacturing. Robot Comput Integr Manuf 23(6):712–719\nJabbour CJC, Maria da Silva E, Paiva EL, Santos FCA (2012) Environmental management in Brazil: is it a completely competitive priority? J Clean Prod:21–22\nJiménez-Parra B, Rubio S, Vicente-Molina MA (2014) Key drivers in the behavior of potential consumers of remanufactured products: a study on laptops in Spain. J Clean Prod 85:488–496\nKafuku JM, Saman MZM, Yusof S’M, Sharif S, Zakuan N (2015) Investment decision issues from remanufacturing system perspective: literature review and further research. Procedia CIRP 26:589–594\nKale P, Singh H (2007) Building firm capabilities through learning: the role of the alliance learning process in alliance management capability and firm-level alliance success. Strateg Manag J 28(10):981–1000\nKin STM, Ong SK, Nee AYC (2014) Remanufacturing process planning. Procedia CIRP 15:189–194\nKing N (2004) Using template in thematic analysis of text. In: Cassell C, Symon G (eds) Essential guide to qualitative methods in organizational research. Sage, Thousand Oaks, pp 11–22\nKleindorfer P, Singhal K, Van Wassenhove LN (2005) Sustainable operations management. Prod Oper Manag 14:482–492\nKurilova-Palisaitiene J, Sundin E, Poksinska B (2018) Remanufacturing challenges and possible lean improvements. J Clean Prod 172:3225–3236\nLee H, Kim MS, Kim KK (2014) Interorganizational information systems visibility and supply chain performance. Int J Inf Manag 34(2):285–295\nLind S, Olsson D, Sundin E (2014) Exploring inter-organizational relationships in automotive component remanufacturing. Journal of Remanufacturing 4:1–14\nLongoni A, Cagliano R (2015) Cross-functional executive involvement and worker involvement in lean manufacturing and sustainability alignment. Int J Oper Prod Manag 35:1332–1358\nLunnan R, Haugland SA (2008) Predicting and measuring alliance performance: a multidimensional analysis. Strateg Manag J 29(5):545–556\nLuo Y (2008) Structuring interorganizational cooperation: the role of economic integration in strategic alliances. Strateg Manag J 29(6):617–637\nMaguire M, Delahunt B (2017) Doing a thematic analysis: a practical, step-by-step guide for learning and teaching scholars. Aishe 8(3):335.1–335.14\nMartin P, Guide VDR Jr, Craighead CW (2010) Supply chain sourcing in remanufacturing operations: an empirical investigation of remake versus buy. Decis Sci 41(2):301–324\nMatos S, Hall J (2007) Integrating sustainable development in the supply chain: the case of life cycle assessment in oil and gas and agricultural biotechnology. J Oper Manag 25:1083–1102\nMiguel PLS (2012) Criação e apropriação de valor em relacionamentos entre empresas compradoras e fornecedoras. Tese de Doutorado. Escola de Administração de Empresas de São Paulo, São Paulo, Brasil\nMiguel PLS, Brito AL (2009) A gestão da cadeia de suprimentos e sua conexão com a visão relacional da estratégia. In: Anais do Encontro da Associação Nacional de Pós-Graduação e Pesquisa em Administração. Anpad, São Paulo, pp 1–14\nMiles MB, Huberman AM, Saldaña J (2014) Qualitative data analysis: a methods source book. Sage Publications, California\nMishra DP, Heide JB, Cort SG (1998) Information asymmetry and levels of agency relationships. J Mark Res 35(3):277–295\nNakaharada M (2018) Lei do Desmanche inaugura uma nova fase para o comércio de veículos. 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Eurasian Bus Rev 9:193–211",{"VOID":710},"10.1007\u002Fs13243-020-00097-5","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002Fs13243-020-00097-5",[713],{"id":714,"sortIndex":23,"researcher":22,"roles":715,"affiliations":716,"properties":725,"displayName":727,"givenName":22,"familyName":22},"0b0fbade-c80d-4f51-aaca-9fa50fb1d9aa",[150],[717],{"id":718,"sortIndex":23,"affiliation":719,"properties":22},"e2aec595-8881-4d38-b8ab-184ac3e24a76",{"id":718,"createTime":22,"updateTime":22,"relativeEntities":720,"slug":22,"properties":721,"entityType":22,"verifyStatus":22,"verifyTime":22,"verifyNote":22,"languages":22,"translateLanguages":22,"viewCount":22,"url":22,"parentIds":724,"statistic":22},[],{"title":722},{"VI":723},"Getulio Vargas Foundation (FGV), São Paulo School of Management, São Paulo, Brazil",[],{"title":726},{"VI":727},"Iara Tonissi Moroni-Cutovoi",{"url":711,"publisher":729,"properties":767},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":730,"slug":10,"properties":731,"entityType":20,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"languages":22,"translateLanguages":22,"viewCount":23,"subjectFields":735,"manageAffiliations":748,"indexDatabases":754,"url":22,"thumbnailPath":22,"statistic":762,"gsStatistic":22,"type":119,"analyzePriority":22},[],{"issn":732,"title":733,"eissn":734},{"VOID":15},{"EN":17},{"VOID":13},[736,740,744],{"id":26,"createTime":22,"updateTime":22,"relativeEntities":737,"label":738,"description":739,"parentId":22,"standard":22,"scholarHubFieldId":22},[],{"EN":29},{},{"id":32,"createTime":22,"updateTime":22,"relativeEntities":741,"label":742,"description":743,"parentId":22,"standard":22,"scholarHubFieldId":22},[],{"EN":35},{},{"id":38,"createTime":22,"updateTime":22,"relativeEntities":745,"label":746,"description":747,"parentId":22,"standard":22,"scholarHubFieldId":22},[],{"EN":41},{},[749],{"id":45,"createTime":22,"updateTime":22,"relativeEntities":750,"slug":22,"properties":751,"entityType":22,"verifyStatus":22,"verifyTime":22,"verifyNote":22,"languages":22,"translateLanguages":22,"viewCount":22,"url":22,"parentIds":753,"statistic":22},[],{"title":752},{"EN":49},[],[755],{"id":53,"indexDatabase":756,"url":64,"indexYears":65,"academicFieldIds":761,"indexDatabaseRanking":70},{"id":55,"createTime":22,"updateTime":22,"relativeEntities":757,"label":758,"description":759,"key":61,"publicationTags":760,"standard":22},[],{"EN":58,"VI":58},{"EN":58,"VI":60},[63],[67,68,69],{"impactFactor":23,"impactFactorByYear":763,"i10Index":83,"i10IndexLast5Year":84,"totalPublication":85,"totalPublicationByYear":764,"totalCitation":98,"totalCitationByYear":765,"totalCitationPerPublication":107,"totalCitationPerPublicationByYear":766,"hindexLast5Year":102,"hindex":102},{"2014":73,"2015":74,"2016":75,"2017":76,"2018":77,"2019":78,"2020":79,"2021":80,"2022":81,"2023":82},{"2011":87,"2012":88,"2013":89,"2014":90,"2015":89,"2016":91,"2017":92,"2018":93,"2019":94,"2020":95,"2021":87,"2022":96,"2023":89,"2024":97},{"2013":100,"2014":101,"2015":102,"2016":103,"2017":104,"2018":105,"2019":106,"2020":84,"2021":92,"2022":92,"2023":90},{"2013":109,"2014":92,"2015":110,"2016":111,"2017":112,"2018":113,"2019":114,"2020":115,"2021":116,"2022":117,"2023":118},{"pages":768,"volume":770},{"VOID":769},"147-174",{"VOID":771},"11","2021-01-04",2021,[70],{"id":776,"createTime":777,"updateTime":778,"relativeEntities":779,"slug":780,"properties":781,"entityType":141,"verifyStatus":142,"verifyTime":778,"verifyNote":144,"languages":22,"translateLanguages":22,"viewCount":23,"primaryUrl":790,"fullTextUrl":22,"authors":791,"publicationType":180,"publisherRelationship":820,"citationCount":22,"citationInfo":22,"publishDate":864,"publishYear":865,"citationAnalyzeStatus":21,"lastCitationAnalyze":22,"indexDatabases":866,"openAccess":22,"references":22,"isForceReanalyzing":229},"18da81ef-d474-4337-b38c-43e39eb6703d","2024-02-10T15:28:19.169+00:00","2025-02-24T06:01:21.271+00:00",[],"A-living-sphere-approach-for-locally-oriented-sustainable-design",{"abstract":782,"title":784,"references":786,"doi":788},{"EN":783},"Achieving a sustainable consumption and production pattern is one of the United Nation’s sustainable development goals for 2030. To achieve this, it is necessary to consider the environmental burden from a product life cycle and the quality of life of the consumer. In this study, a systematic approach for connecting basic human needs and the product development process, called the living-sphere approach, is proposed. This approach is intended to encompass the complete relationship between region-specific basic needs and durable products. In this approach, value graphs, which visualize the value system of products, are connected to satisfiers fulfilling the basic needs set out by Max-Neef. A value graph links satisfiers and the traditional product development process. The significance of the proposed approach is twofold. First, improving quality of daily life and traditional product development are combined in the same framework. Second, the design of single products and the total optimization of multi-products are supported at the requirement level.",{"EN":785},"A living-sphere approach for locally oriented sustainable design",{"VOID":787},"Arnould E, Wallendorf M (1994) Market-oriented Etnography: interpretation building and Marleting strategy formulation. J Mar Res XXXI:484–504\nAoe T, Yamamoto R, Ikaga T, Kondo Y, Matsuoka Y, Fukuda M (2010) Factor X (eco-efficiency) assessment on global warming a household in Japan. J Japan Inst Energy 89:1070–1087 in Japanese\nClosing D (1993) Total quality development. ASME, New York\nDaly H, Cobb J, Cobb C (1994) For the common good: redirecting the economy toward community, the environment, and a sustainable future. Beacon Press, Boston\nDean H (2010) Understanding Human Need. The Policy Press, Bristol\nDeutscher G (2010) Through the language glass: why the world looks different in other languages. Metropolitan Books and Henry Holt and Company, New York\nGeels F, McMeekin A, Mylan J, Southerton D (2015) A critical appraisal of sustainable consumption and production research: the reformist, revolutionary and reconfiguration positions. Glob Environ Chang 34:1–12\nGelbmann U, Hammerl B (2015) Integrative re-use systems as innovative business models for devising sustainable product-service-systems. J Clean Prod 97:50–60\nGuillen-Royo M, Guardiola J, Garcia-Quero F (2017) Sustainable development in times of economic crisis: a needs-based illustration from Granada (Spain). J Clean Prod 150:267–276\nHofstede G (1994) Cultural dimensions in management and planning. Asia Pac J Manag:81–99\nHofstede G, McCrae R (2004) Personality and culture revisited: linking traits and dimensions of culture. Cross-Cult Res 38(1):52–88\nHoltzclaw EV (2013) Laddering. Wiley, Hoboken\nHoornweg D, Bhada-Tata P, Kennedy C (2014) Peak waste – when is it likely to occur? J Ind Ecol 19(1):117–128\nIshii K (1998) Textbook of ME217 Design for Manufacture: product definition. Stanford University\nISO (2002) ISO\u002FTR 14062 environmental management - integrating environmental aspects into product design and development, Geneva\nJackson T (2005) Motivating Sustainable Consumption. Sustainable Development Research Network, pp 10. Available via DIALOG. http:\u002F\u002Fwww.sustainablelifestyles.ac.uk\u002Fsites\u002Fdefault\u002Ffiles\u002Fmotivating_sc_final.pdf\nKano N, Seraku N, Takahashi F, Tsuji S (1984) Attractive quality and must-be quality. J Japanese Soc Quality Control 14(2):39–48 in Japanese\nKimita K, Shimomura Y, Arai T (2009) Evaluation of customer satisfaction for PSS design. J Manuf Technol Manag 20(5):654–673\nKobayashi Y, Kobayashi H, Hongu A, Sanehira K (2005) A practical method for quantifying eco-efficiency using eco-design support tools. J Ind Ecol 9(4):131–144\nKobayashi H (2016) Perspectives on sustainable product design methodology focused on local communities. In: Matsumoto M, Masui K, Fukushige S, Kondoh S (eds) Sustainability through innovation in product life cycle design. Springer, eBook, pp 79–92\nKoren Y (2010) The global manufacturing revolution. John Wiley, Hoboken\nMax-Neef M (1991) Human scale Developmenmt. The Apex Press, New York\nNabavi E, Daniell K, Najafi H (2017) Boundary matters: the potential of system dynamics to support sustainability? J Clean Prod 140:312–323\nOECD (2008) Environmental Outlook to 2030\nOECD (2013) OECD Guidelines on Measuring Sujective Well-beeing\nOhmae K (1991) The mind of strategist: the art of Japanese business. McGraw-Hill, New York\nOsterwolder A, Pigneur Y, Smith A, Bernarda G, Papadakos T (2014) Value Proposition Design. Wiley, Hoboken\nSen A (1993) Capability and well-being. In: Nussbaum M, Sen A (eds) The quality of life. Oxford University Press, New York, pp 30–52\nSpencer J, Lilley D, Porter S (2015) The opportunities that different cultural contexts create for sustainable design: a laundry care example. J Clean Prod 107:279–290\nStiglitz JE, Sen A, Fitoussi J (2010) Mismeasuring our lives: why GDP Doesn’t add up. The New Press, New York\nSugita Y, Fukushige S, Kobayashi H (2017) A visualization system of design information for locally-oriented sustainable product. Procedia CIRP 61:617–622\nTukker A (2015) Product Services for a Resource-efficient and Circular Economy – a review. J Clean Prod 97:76–91\nUK Department for Business Innovation & Skills (2013) Low carbon environmental goods and services (LCGES), Report for 2011\u002F2012\nUmwelt Bundesamt (2018) Indicator: Environmentally friendly consumption, https:\u002F\u002Fwww.umweltbundesamt.de\u002Fen\u002Findicator-environmentally-friendly-consumption. Accessed 25 May 2018\nUN (2015) Sustainable Development Goals, https:\u002F\u002Fwww.un.org\u002Fsustainabledevelopment\u002Fsustainable-development-goals\u002F. Accessed 25 May 2018\nUNDP (2015) Human Development Report\nUNEP (1997) Ecodesign – a Promissing Apporach to sustainable production and consumption –, Hertfordshire\nUNEP (2010) ABC of SCP – Clarifying Concepts on Sustainable Consumption and Production\nUNEP (2012) Global outlook on sustainable consumption and production policies, Nairobi\nThe World Commission on Environment and Development (1987) Our Common Future",{"VOID":789},"10.1007\u002Fs13243-018-0048-8","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002Fs13243-018-0048-8",[792,807],{"id":793,"sortIndex":23,"researcher":22,"roles":794,"affiliations":795,"properties":804,"displayName":806,"givenName":22,"familyName":22},"37b3d3a6-e1f1-44bd-8886-29af1f563e08",[150],[796],{"id":797,"sortIndex":23,"affiliation":798,"properties":22},"adc27903-1281-4ccf-9ef8-0a46755266a1",{"id":797,"createTime":22,"updateTime":22,"relativeEntities":799,"slug":22,"properties":800,"entityType":22,"verifyStatus":22,"verifyTime":22,"verifyNote":22,"languages":22,"translateLanguages":22,"viewCount":22,"url":22,"parentIds":803,"statistic":22},[],{"title":801},{"VI":802},"Department of Mechanical Engineering, Graduate School of Engineering, Osaka University, Osaka, Japan",[],{"title":805},{"VI":806},"Hideki 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is recognized as a major circular economy option to recover and upgrade functions from post-use products. However, the inefficiencies associated with operations, mainly due to the uncertainty and variability of material flows and product conditions, undermine the growth of remanufacturing. With the objective of supporting the design and management of more proficient and robust remanufacturing processes, this paper proposes a generic and reconfigurable simulation model of remanufacturing systems. The developed model relies upon a modular framework that enables the user to handle multiple process settings and production control policies, among which token-based policies. Customizable to the characteristics of the process under analysis, this model can support logistics performance evaluation of different production control policies, thus enabling the selection of the optimal policy in specific business contexts. The proposed model is applied to a real remanufacturing environment in order to validate and demonstrate its applicability and benefits in the industrial settings.",{"EN":877},"Modularization in material flow simulation for managing production releases in remanufacturing",{"VOID":879},"Opresnik D, Taisch M (2015) The manufacturer's value chain as a service - the case of remanufacturing. J Remanuf 5(1):2. doi:10.1186\u002Fs13243-015-0011-x\nColledani M, Copani G, Tolio T (2014) De-manufacturing Systems. Variety Manag Manuf 17:14–19\nButzer S, Schötz S, Kruse A, Steinhilper R (2014) Managing complexity in remanufacturing focusing on production organisation. In: Zaeh M (ed) Enabling manufacturing competitiveness and economic sustainability: proceedings of the 5th international conference on changeable, agile, reconfigurable and virtual production (CARV 2013). Springer, Munich, pp 365–370\nGuide VDR (1996) Scheduling using drum-buffer-rope in a remanufacturing environment. Int J Prod Res 34(4):1081–1091\nGuide VDR, Kraus ME, Srivastava R (1997) Scheduling policies for remanufacturing. Int J Prod Econ 48(2):187–204\nSouza GC, Ketzenberg ME (2002) Two-stage make-to-order remanufacturing with service-level constraints. Int J Prod Res 40(2):477–493\nSouza GC, Ketzenberg ME, Guide VDR (2002) Capacited Remanufacturing with service level constraints. Prod Oper Manag 11(2):231–248\nZhang R, Ong SK, Nee AYC (2015) A simulation-based genetic algorithm approach for remanufacturing process planning and scheduling. Appl Soft Comput 37:521–532\nGershenson JK, Prasad GJ (1997) Modularity in product design for manufacturability. Int J Agil Manuf 1(1):99–110\nMiller TD, Elgard P (1998) Defining modules, modularity and modularisation, Design for Integration in Manufacturing, Proceedings of the 13th IPS Research Seminar, Fugsloe, Aalborg University\nSmith JS, Valenzuela JF Mukkamala PS (2003) Designing reusable simulation modules for electronics manufacturing systems Proceedings of the 2003 Winter Simulation Conference 2:1281–1289\nMartínez FM (2002) Bedia, Luis Miguel Arreche: Modular simulation tool for modelling JIT manufacturing. Int J Prod Res 40(7):1529–1547\nLee HY, Choi BK (2011) Using workflow for reconfigurable simulation-based planning and scheduling system. Int J Comput Integr Manuf 24(2):171–187\nTang O, Teunter R (2006) Economic lot scheduling problem with returns. Prod Oper Manag 15(4):488–497\nVeerakamolmal P, Gupta SM (1998) High-mix\u002Flow-volume batch of electronic equipment disassembly. Comput Ind Eng 35(1–2):65–68\nGupta SM, Al-Turki YAY (1997) An algorithm to dynamically adjust the number of kanbans in stochastic processing times and variable demand environment. Prod Plan Control 8(2):133–141\nKorugan A, Gupta SM (2014) An adaptive CONWIP mechanism for hybrid production systems. Int J Adv Manuf Technol 74(5–8):715–727\nTeunter R, Kaparis K, Tang O (2008) Multi-product economic lot scheduling problem with separate production lines for manufacturing and remanufacturing. Eur J Oper Res 191(3):1241–1253\nTeunter R, Tang O, Kaparis K (2009) Heuristics for the economic lot scheduling problem with returns. Int J Prod Econ 118(1):323–330\nGuide VDR Jr, Srivastava R (1997) Buffering from material recovery uncertainty in a recoverable manufacturing environment. J Oper Res Soc 48(5):519–529\nGuide V, Daniel R, Srivastava R (1997) An evaluation of order release strategies in a remanufacturing environment. Comput Oper Res 24(1):37–47\nGuide V, Daniel R, Souza GC, van der Laan E (2005) Performance of static priority rules for shared facilities in a remanufacturing shop with disassembly and reassembly. Eur J Oper Res 164(2):341–353\nBanks J, Carson II J, Nelson B, Nicol D (2010) Discrete-event system simulation, 5th edn. Pearson\nLiberopoulos, G. (2013) Production Release Control: Paced, WIP-Based or Demand-Driven? Revisiting the Push\u002FPull and Make-to-Order\u002FMake-to-Stock Distinctions. In: Smith J., Tan B. (eds) Handbook of Stochastic Models and Analysis of Manufacturing System Operations. International Series in Operations Research & Management Science, vol 192. Springer, New York, NY\nSteinhilper R (1998) Remanufacturing: the ultimate form of recycling. Fraunhofer IRB Verlag, Stuttgart\nHopp WJ, Spearman ML (2011) Factory physics. Waveland Press. GS link: https:\u002F\u002Fscholar.google.be\u002Fscholar?q=Hopp+WJ,+Spearman+ML+(2011)+Factory+physics&hl=it&as_sdt=0&as_vis=1&oi=scholart&sa=X&ved=0ahUKEwjmn7e-m6rVAhUQUlAKHfrLBccQgQMIJzAA\nHeidelberger P, Welch PD (1983) Simulation run length control in the presence of an initial transient. Oper Res 31(6):1109–1144\nRoss SM (2009) Introduction to Probability and Statistics for Engineers and Scientists, 4th edn. Elsevier Academic Press. GS link: https:\u002F\u002Fbooks.google.it\u002Fbooks?hl=it&lr=&id=BaPOv33uZCMC&oi=fnd&pg=PP1&dq=Introduction+to+Probability+and+Statistics+for+Engineers+and+Scientists&ots=C9NKuVtlwU&sig=vUSmqKEQyn4WevUBDkb2yefdKjE%23v=onepage&q=Introduction%20to%20Probability%20and%20Statistics%20for%20Engineers%20and%20Scientists&=false\nGraham I, Goodall P, Peng Y, Palmer C, West A, Conway P, Mascolo JE, Dettmer FU (2015) Performance measurement and KPIs for remanufacturing. J Remanuf 5(1):10",{"VOID":881},"10.1007\u002Fs13243-017-0037-3","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002Fs13243-017-0037-3",[884,899,912,927,940],{"id":885,"sortIndex":23,"researcher":22,"roles":886,"affiliations":887,"properties":896,"displayName":898,"givenName":22,"familyName":22},"9d58fb5e-a51e-40f6-860e-65830958a222",[150],[888],{"id":889,"sortIndex":23,"affiliation":890,"properties":22},"ab9ea6ff-b2e3-47f4-834e-c2491c4db743",{"id":889,"createTime":22,"updateTime":22,"relativeEntities":891,"slug":22,"properties":892,"entityType":22,"verifyStatus":22,"verifyTime":22,"verifyNote":22,"languages":22,"translateLanguages":22,"viewCount":22,"url":22,"parentIds":895,"statistic":22},[],{"title":893},{"VI":894},"Politecnico di Milano, Mechanical Engineering Department, Milan, Italy",[],{"title":897},{"VI":898},"Lorenzo 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to: Circular economy assessment tool for end of life product recovery strategies",{"VOID":1014},"10.1007\u002Fs13243-019-00069-4",[1016],"EN","http:\u002F\u002Flink.springer.com\u002F10.1007\u002Fs13243-019-00069-4",[1019,1038],{"id":1020,"sortIndex":23,"researcher":22,"roles":1021,"affiliations":1022,"properties":1031,"displayName":1035,"givenName":22,"familyName":22},"0a38ccb4-945e-4f1b-9129-d2604fc56575",[],[1023],{"id":1024,"sortIndex":23,"affiliation":1025,"properties":22},"4f3c8107-450d-4ea8-88e3-af8a85900e22",{"id":1024,"createTime":22,"updateTime":22,"relativeEntities":1026,"slug":22,"properties":1027,"entityType":22,"verifyStatus":22,"verifyTime":22,"verifyNote":22,"languages":22,"translateLanguages":22,"viewCount":22,"url":22,"parentIds":1030,"statistic":22},[],{"title":1028},{"VI":1029},"Univ. Grenoble Alpes, CNRS, G-SCOP, 38000 Grenoble, France",[],{"orcid":1032,"title":1034,"openalex":1036},{"VOID":1033},"https:\u002F\u002Forcid.org\u002F0000-0002-3857-4267",{"EN":1035},"Yohannes A. Alamerew",{"VOID":1037},"A5091739423",{"id":1039,"sortIndex":84,"researcher":22,"roles":1040,"affiliations":1041,"properties":1048,"displayName":1052,"givenName":22,"familyName":22},"ee3b721d-5b9b-4a1d-9aef-52d66cccf2a4",[],[1042],{"id":1024,"sortIndex":23,"affiliation":1043,"properties":22},{"id":1024,"createTime":22,"updateTime":22,"relativeEntities":1044,"slug":22,"properties":1045,"entityType":22,"verifyStatus":22,"verifyTime":22,"verifyNote":22,"languages":22,"translateLanguages":22,"viewCount":22,"url":22,"parentIds":1047,"statistic":22},[],{"title":1046},{"VI":1029},[],{"orcid":1049,"title":1051,"openalex":1053},{"VOID":1050},"https:\u002F\u002Forcid.org\u002F0000-0001-5480-837X",{"EN":1052},"Daniel Brissaud",{"VOID":1054},"A5019549743",{"url":22,"publisher":1056,"properties":22},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":1057,"slug":10,"properties":1058,"entityType":20,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"languages":22,"translateLanguages":22,"viewCount":23,"subjectFields":1062,"manageAffiliations":1075,"indexDatabases":1081,"url":22,"thumbnailPath":22,"statistic":1089,"gsStatistic":22,"type":119,"analyzePriority":22},[],{"issn":1059,"title":1060,"eissn":1061},{"VOID":15},{"EN":17},{"VOID":13},[1063,1067,1071],{"id":26,"createTime":22,"updateTime":22,"relativeEntities":1064,"label":1065,"description":1066,"parentId":22,"standard":22,"scholarHubFieldId":22},[],{"EN":29},{},{"id":32,"createTime":22,"updateTime":22,"relativeEntities":1068,"label":1069,"description":1070,"parentId":22,"standard":22,"scholarHubFieldId":22},[],{"EN":35},{},{"id":38,"createTime":22,"updateTime":22,"relativeEntities":1072,"label":1073,"description":1074,"parentId":22,"standard":22,"scholarHubFieldId":22},[],{"EN":41},{},[1076],{"id":45,"createTime":22,"updateTime":22,"relativeEntities":1077,"slug":22,"properties":1078,"entityType":22,"verifyStatus":22,"verifyTime":22,"verifyNote":22,"languages":22,"translateLanguages":22,"viewCount":22,"url":22,"parentIds":1080,"statistic":22},[],{"title":1079},{"EN":49},[],[1082],{"id":53,"indexDatabase":1083,"url":64,"indexYears":65,"academicFieldIds":1088,"indexDatabaseRanking":70},{"id":55,"createTime":22,"updateTime":22,"relativeEntities":1084,"label":1085,"description":1086,"key":61,"publicationTags":1087,"standard":22},[],{"EN":58,"VI":58},{"EN":58,"VI":60},[63],[67,68,69],{"impactFactor":23,"impactFactorByYear":1090,"i10Index":83,"i10IndexLast5Year":84,"totalPublication":85,"totalPublicationByYear":1091,"totalCitation":98,"totalCitationByYear":1092,"totalCitationPerPublication":107,"totalCitationPerPublicationByYear":1093,"hindexLast5Year":102,"hindex":102},{"2014":73,"2015":74,"2016":75,"2017":76,"2018":77,"2019":78,"2020":79,"2021":80,"2022":81,"2023":82},{"2011":87,"2012":88,"2013":89,"2014":90,"2015":89,"2016":91,"2017":92,"2018":93,"2019":94,"2020":95,"2021":87,"2022":96,"2023":89,"2024":97},{"2013":100,"2014":101,"2015":102,"2016":103,"2017":104,"2018":105,"2019":106,"2020":84,"2021":92,"2022":92,"2023":90},{"2013":109,"2014":92,"2015":110,"2016":111,"2017":112,"2018":113,"2019":114,"2020":115,"2021":116,"2022":117,"2023":118},{"total":97,"publishYear":604,"statisticByYear":1095},{"2021":84,"2022":84},"2019-10-01","ERROR_IN_ANALYZE_CITATION","2024-04-11T19:48:37.303+00:00",[70],[],{"id":1102,"createTime":1103,"updateTime":1104,"relativeEntities":1105,"slug":1106,"properties":1107,"entityType":141,"verifyStatus":142,"verifyTime":1104,"verifyNote":144,"languages":22,"translateLanguages":22,"viewCount":23,"primaryUrl":1116,"fullTextUrl":22,"authors":1117,"publicationType":180,"publisherRelationship":1159,"citationCount":22,"citationInfo":22,"publishDate":1201,"publishYear":1202,"citationAnalyzeStatus":21,"lastCitationAnalyze":22,"indexDatabases":1203,"openAccess":22,"references":22,"isForceReanalyzing":229},"41a639e8-a29a-4b92-b291-995b85c3f03d","2023-12-14T08:03:36.661+00:00","2025-02-22T11:57:34.157+00:00",[],"Assessing-the-remanufacturability-of-office-furniture-a-multi-criteria-decision-making-approach",{"abstract":1108,"title":1110,"references":1112,"doi":1114},{"EN":1109},"While the average life cycle of consumer goods is continuously decreasing, the amounts of used products at their end-of-life (EOL) is accumulating proportionally fast. Remanufacturing is one of the EOL strategies which is highly environmentally friendly. The selling price of remanufactured products is usually about 50—80% of a new one depending on the quality, making remanufacturing a win—win solution. The goal of this exploratory research is to present the first framework of its kind that aims at assessing the remanufacturability of office furniture. The proposed evaluation model considers three aspects of the assessment problem: economic, social and environmental to obtain a holistic view of the remanufacturability of office furniture. We apply the fuzzy TOPSIS methodology to deal with incomplete and often subjective information during the evaluation process. Furthermore, we validate our evaluation model using published research data for a multi-criteria allocation decision making (MCDM) problem. Through the validation results, we show that the proposed evaluation model has the capability to solve MCDM problems. Lastly, a case study which involves three pieces of office furniture is used to illustrate the application of the proposed model.",{"EN":1111},"Assessing the remanufacturability of office furniture: a multi-criteria decision making approach",{"VOID":1113},"Amiri MP (2010) Project selection for oil-fields development by using the AHP and fuzzy TOPSIS methods. Expert Syst Appl 37(9):6218–6224\nBulmus, S. C., Zhu, S. X. and Teunter, R., (2014), “Competition for cores in remanufacturing,” Eur. J. Oper. Res., no. 1, pp. 105–113\nChapman A, Bartlett, C., and McGill, I., (2009), “Remanufacturing in the UK: a snapshot of the UK remanufacturing industry”\nChen C-T, Lin C-T, Huang S-F (2006) A fuzzy approach for supplier evaluation and selection in supply chain management. Int J Prod Econ 102(2):289–301\nCong, L., Zhao, F., and Sunderland, J.W., (2019), A design method to improve end-of-use product value recovery for circular economy, journal of mechanical design, Vol, 141, no. 4\nErtuǧrul I, Karakaşoǧlu N (2008) Comparison of fuzzy AHP and fuzzy TOPSIS methods for facility location selection. Int J Adv Manuf Technol 39(7–8):783–795\nGeissdoerfer, M., Morioka, S. N. and Carvalho, M. M., (2018), “ Business models and supply chains for the circular economy” J Clean Prod 712–721\nGonzález-García S, Gasol CM, Lozano RG, Moreira MT, Gabarrell X, Rieradevall J, Pons I, Feijoo G (2011) Assessing the global warming potential of wooden products from the furniture sector to improve their ecodesign. Sci Total Environ 410–411:16–25\nGoodall P, Rosamond E, Harding J (2014) A review of the state of the art in tools and techniques used to evaluate remanufacturing feasibility. J Clean Prod 81:1–15\nHwang, L. and Yoon, K., (1981), Multiple attributes decision making methods and applications\nIlgin MA, Gupta SM (2010) Environmentally conscious manufacturing and product recovery (ECMPRO): a review of the state of the art. J Environ Manag 91(3):563–591\nJun H-B, Cusin M, Kiritsis D, Xirouchakis P (2007) A multi-objective evolutionary algorithm for EOL product recovery optimization: turbocharger case study. Int J Prod Res 45:4573–4594\nKrystofik M, Liccitti A, Parnell K, Thurston M (2018) Adaptive remanufacturing for multiple life cycles: a case study in office furniture. J Resour, Conserv Recycl 135:14–35\nLindkvist, L., (2013), Exploring the use of product life- cycle information in two value chains including remanufacturing\nLund, R. T., (1985), “Remanufacturing: the experience of the United States and implications for developing countries,” World bank Tech. Pap. No.31, no. 31, pp. 1–126\nLuukka P (2011) Fuzzy similarity in multicriteria decision-making problem applied to supplier evaluation and selection in supply chain management. Adv Artif Intell 2011(353509):1–9\nÖstlin J, Sundin J, Björkman M (2009) Product life-cycle implications for remanufacturing strategies. J Clean Prod 17(11):999–1009\nPieroni MP, Blomsma F, McAloone TC, Pigossoa CA (2018) Enabling circular strategies with different types of product\u002Fservice-systems. Procedia CIRP, pp:179–184\nPrendeville, S. and Bocken, N., (2016), “Design for remanufacturing and circular business models”, In M. Matsumoto, M., Masui, K., Fukushige, S. and Kondoh, S. (Eds.), Sustainability through innovations in product life cycle, pp. 269–283\nSpitzley, V., Dietz, B. A. and Keoleian, G. A., (2006) “Life-Cycle Assessment of Office Furniture Products Life-Cycle Assessment of Office Furniture Products,” p. 77\nStewart, C., “5 Top Trends in the Furniture Industry,” MarketResearch.com, [Online]. Available: http:\u002F\u002Fwww.prnewswire.com\u002Fnews-releases\u002Fmarketresearchcom-5-top-trends-in-the-furniture-industry-300211661.html. [Accessed: 25-May-2016]\nSundin, E., and Lindahl, M., (2008), “Rethinking product design for remanufacturing to facilitate integrated product service offerings,” in IEEE International Symp. on Electro. and the Environ\nWang, X. and Chan, H. K., (2013), “An integrated fuzzy approach for evaluating remanufacturing alternatives of a product design,” J. Remanufacturing, vol. 3, no. 1, p. 10",{"VOID":1115},"10.1007\u002Fs13243-020-00079-7","http:\u002F\u002Flink.springer.com\u002F10.1007\u002Fs13243-020-00079-7",[1118,1133,1146],{"id":1119,"sortIndex":23,"researcher":22,"roles":1120,"affiliations":1121,"properties":1130,"displayName":1132,"givenName":22,"familyName":22},"e15306bb-a38d-49d8-852d-caa67be7359f",[150],[1122],{"id":1123,"sortIndex":23,"affiliation":1124,"properties":22},"26ab2137-0392-4a27-a78e-4613b2bf1c74",{"id":1123,"createTime":22,"updateTime":22,"relativeEntities":1125,"slug":22,"properties":1126,"entityType":22,"verifyStatus":22,"verifyTime":22,"verifyNote":22,"languages":22,"translateLanguages":22,"viewCount":22,"url":22,"parentIds":1129,"statistic":22},[],{"title":1127},{"VI":1128},"Department of Industrial and Manufacturing Engineering, University of Wisconsin-Milwaukee, Milwaukee, USA",[],{"title":1131},{"VI":1132},"Wilkistar Otieno",{"id":1134,"sortIndex":84,"researcher":22,"roles":1135,"affiliations":1136,"properties":1143,"displayName":1145,"givenName":22,"familyName":22},"52b86596-99b6-44e3-a3ac-ce220e03a59c",[150],[1137],{"id":1123,"sortIndex":23,"affiliation":1138,"properties":22},{"id":1123,"createTime":22,"updateTime":22,"relativeEntities":1139,"slug":22,"properties":1140,"entityType":22,"verifyStatus":22,"verifyTime":22,"verifyNote":22,"languages":22,"translateLanguages":22,"viewCount":22,"url":22,"parentIds":1142,"statistic":22},[],{"title":1141},{"VI":1128},[],{"title":1144},{"VI":1145},"Po-Hsun Chen",{"id":1147,"sortIndex":97,"researcher":22,"roles":1148,"affiliations":1149,"properties":1156,"displayName":1158,"givenName":22,"familyName":22},"e0d75697-df2a-4854-ad5d-c293eb4166bb",[150],[1150],{"id":1123,"sortIndex":23,"affiliation":1151,"properties":22},{"id":1123,"createTime":22,"updateTime":22,"relativeEntities":1152,"slug":22,"properties":1153,"entityType":22,"verifyStatus":22,"verifyTime":22,"verifyNote":22,"languages":22,"translateLanguages":22,"viewCount":22,"url":22,"parentIds":1155,"statistic":22},[],{"title":1154},{"VI":1128},[],{"title":1157},{"VI":1158},"Kuan-Jui Chen",{"url":1116,"publisher":1160,"properties":1198},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":1161,"slug":10,"properties":1162,"entityType":20,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"languages":22,"translateLanguages":22,"viewCount":23,"subjectFields":1166,"manageAffiliations":1179,"indexDatabases":1185,"url":22,"thumbnailPath":22,"statistic":1193,"gsStatistic":22,"type":119,"analyzePriority":22},[],{"issn":1163,"title":1164,"eissn":1165},{"VOID":15},{"EN":17},{"VOID":13},[1167,1171,1175],{"id":26,"createTime":22,"updateTime":22,"relativeEntities":1168,"label":1169,"description":1170,"parentId":22,"standard":22,"scholarHubFieldId":22},[],{"EN":29},{},{"id":32,"createTime":22,"updateTime":22,"relativeEntities":1172,"label":1173,"description":1174,"parentId":22,"standard":22,"scholarHubFieldId":22},[],{"EN":35},{},{"id":38,"createTime":22,"updateTime":22,"relativeEntities":1176,"label":1177,"description":1178,"parentId":22,"standard":22,"scholarHubFieldId":22},[],{"EN":41},{},[1180],{"id":45,"createTime":22,"updateTime":22,"relativeEntities":1181,"slug":22,"properties":1182,"entityType":22,"verifyStatus":22,"verifyTime":22,"verifyNote":22,"languages":22,"translateLanguages":22,"viewCount":22,"url":22,"parentIds":1184,"statistic":22},[],{"title":1183},{"EN":49},[],[1186],{"id":53,"indexDatabase":1187,"url":64,"indexYears":65,"academicFieldIds":1192,"indexDatabaseRanking":70},{"id":55,"createTime":22,"updateTime":22,"relativeEntities":1188,"label":1189,"description":1190,"key":61,"publicationTags":1191,"standard":22},[],{"EN":58,"VI":58},{"EN":58,"VI":60},[63],[67,68,69],{"impactFactor":23,"impactFactorByYear":1194,"i10Index":83,"i10IndexLast5Year":84,"totalPublication":85,"totalPublicationByYear":1195,"totalCitation":98,"totalCitationByYear":1196,"totalCitationPerPublication":107,"totalCitationPerPublicationByYear":1197,"hindexLast5Year":102,"hindex":102},{"2014":73,"2015":74,"2016":75,"2017":76,"2018":77,"2019":78,"2020":79,"2021":80,"2022":81,"2023":82},{"2011":87,"2012":88,"2013":89,"2014":90,"2015":89,"2016":91,"2017":92,"2018":93,"2019":94,"2020":95,"2021":87,"2022":96,"2023":89,"2024":97},{"2013":100,"2014":101,"2015":102,"2016":103,"2017":104,"2018":105,"2019":106,"2020":84,"2021":92,"2022":92,"2023":90},{"2013":109,"2014":92,"2015":110,"2016":111,"2017":112,"2018":113,"2019":114,"2020":115,"2021":116,"2022":117,"2023":118},{"pages":1199},{"VOID":1200},"1-16","2020-03-28",2020,[70],{"id":1205,"createTime":1206,"updateTime":1207,"relativeEntities":1208,"slug":1209,"properties":1210,"entityType":141,"verifyStatus":142,"verifyTime":1207,"verifyNote":144,"languages":22,"translateLanguages":22,"viewCount":23,"primaryUrl":1219,"fullTextUrl":22,"authors":1220,"publicationType":180,"publisherRelationship":1249,"citationCount":22,"citationInfo":22,"publishDate":1292,"publishYear":998,"citationAnalyzeStatus":21,"lastCitationAnalyze":22,"indexDatabases":1293,"openAccess":22,"references":22,"isForceReanalyzing":229},"013cc342-15b6-4920-b25c-d8a75316bb6a","2024-01-27T12:46:13.063+00:00","2025-02-22T01:36:52.557+00:00",[],"Characteristics-of-cellphones-reverse-logistics-in-Canada",{"abstract":1211,"title":1213,"references":1215,"doi":1217},{"EN":1212},"In reverse logistics (RL), the returned products are collected, and some recovery activities are performed. The major objective of this research is to identify the RL components of cellphones in Canada focusing on three provinces. There have been some studies in this sector. However, with the technological improvement of cellphones in addition to the evolution of smart phones in recent years, a rapidly growing secondary market has been developed. It is noticeable that the RL of cellphones is very complicated. In this paper, we try to draw a clear picture of the RL framework of cellphones in Canada, highlighting the practices and policies in three provinces including British Columbia in the west coast, Ontario in the middle, and Nova Scotia in the east coast. To this aim, we discuss the chemical, physical, and recoverable parts of cellphones as well as the recovery choices. We review the literature about cellphone RL, identify some relevance as well as differences comparing with the Canadian context, and address some questions pertinent to provincial contexts. We concentrate on the high paced growth of the cellphone secondary market, and the requirement for more research about this subject. Finally, some suggestions and managerial insights are provided about how the cellphone RL can be managed more efficiently.",{"EN":1214},"Characteristics of cellphones reverse logistics in Canada",{"VOID":1216},"Agrawal S, Singh RK, Murtaza Q (2015) A literature review and perspectives in reverse logistics. Resour Conserv Recycl 97:76–92\nAkcali E, Cetinkaya S (2011) Quantitative models for inventory and production planning in closed-loop supply chains. Int J Prod Res 49(8):2373–2407\nAmin SH, Zhang G (2014) Closed-loop supply chain network configuration by a multi-objective mathematical model. Int J Bus Perform Supply Chain Model 6(1):1–15\nArgenta AB, Reis CM, Mello GP, Dotto GL, Tanabe EH, Bertuol DA (2017) Supercritical CO2extraction of indium present in liquid crystal displays from discarded cellphones using organic acids. J Supercrit Fluids 120:95–101\nBaldé CP, Wang F, Kuehr R, Huisman J (2015) The global e-waste monitor - 2014. United Nations University, IAS - SCYCLE, Bonn\nBonifacic I (2015) Due South: Orchard knows it’s all about the network. URL: http:\u002F\u002Fbetakit.com\u002Fdue-south-orchard-knows-its-all-about-the-network. Web accessed 13 Dec 2016\nChan FTS, Chan HK, Jain V (2012) A framework of reverse logistics for the automobile industry. Int J Prod Res 50(5):1318–1331\nChopra S, Meindl P (2015) Supply Chain Management: Strategy, Planning and Operation, 6th edn. Pearson, New York\nClift R (1997) The ECTEL trials. J Ind Ecol 1(2):3–5\nClift R, Wright L (2000) Relationship between environmental impacts added value along the supply chain. Technol Forecast Soc Chang 65:281–295\nDedrick J, Kenneth LK, Linden G (2011) The distribution of value in the mobile phone supply chain. Telecommun Policy 35:505–521\nEllen Macarthur Foundation Report (2012) In-depth - Mobile Phones. URL: https:\u002F\u002Fwww.ellenmacarthurfoundation.org\u002Fcircular-economy\u002Finteractive-diagram\u002Fin-depth-mobile-phones. Web accessed 11 Dec 2016\nFleischmann M, Bloemhof-Ruwarrd JM, Dekker R, Der Lann E, Nunen JAEE, Wassenhove LN (1997) Quantitative models for reverse logistics: a review. Eur J Oper Res 103(1):1–17\nFranke C, Basdere B, Ciupek M, Seliger S (2006) Remanufacturing of mobile phones - capacity, program and facility adaptation planning. Omega 34:562–570\nGeyer R, Doctori Blass V (2010) The economics of cellphone reuse and recycling. Int J Adv Manuf Technol 47(5):515–525\nGeyer R, Neira J, Favret L, Fuji M, Miller R, Mahdavi S, Doctori Blass V (2006). End-of-Life Management of Cellphones in the United States. Donald Bren School of Environmental Science and Management, University of California\nGovindan K, Soleimani H, Kannan D (2015) Reverse logistics and closed-loop supply chain: A comprehensive review to explore the future. Eur J Oper Res 240(3):603–626\nGuarnieri P, Silva LC, Levino NA (2016) Analysis of electronic waste reverse logistics decisions using Strategic Options Development Analysis methodology: A Brazilian case. J Clean Prod 133:1105–1117\nGuide VDR Jr, Van Wassenhove LN (2009) The Evolution of Closed-Loop Supply Chain Research. Oper Res 57(1):10–18\nGuide VDR, Neeraj K, Newman C, Van Wassenhove LN (2005) Cellular telephone reuse: The ReCellular Inc. case. In: Flappe SD, Van Nunnen JO, Van Wassenhove LN (eds) Managing closed-loop supply chains. Springer, Berlin\nHuisman J (2004) QWERTY and eco-efficiency analysis on cellular phone treatment in Sweden, TU Delft, The Netherlands. El-Krestsen, Stockholm\nIlgin MA, Gupta SM (2012) Remanufacturing Modeling and Analysis. CRC Press, Boca Raton\nInventory of recycling programs in Canada (2017) URL: http:\u002F\u002Fec.gc.ca\u002Fgdd-mw\u002Fdefault.asp?lang=En&n=8B5CFA4E-1. Web accessed 2 Oct 2017\nJayant A, Gupta P, Garg SK, Khan M (2014) TOPSIS-AHP based approach for selection of reverse logistics service provider: a case study of mobile phone industry. Procedia Eng 97:2147–2156\nJohn ST, Sridharan R, Kumar PR (2017) Reverse logistics network design: a case of mobile phones and digital cameras. Int J Adv Manuf Technol: 1–17 (in press)\nLife Cycle Environmental Issues of Mobile Phones (2005) Nokia Corporation. URL: http:\u002F\u002Fec.europa.eu\u002Fenvironment\u002Fipp\u002Fpdf\u002Fnokia_mobile_05_04.pdf. Web accessed 11 Dec 2016\nLindzon J (2014) Toronto startup sees billions in used iPhone marketplace. URL: https:\u002F\u002Fwww.thestar.com\u002Fpartner_content\u002Fstarbusinessclub\u002F2014\u002F07\u002F29\u002Ftoronto-startup-sees-billions-in-used-iphone-marketplace.html. Web accessed 13 Dec 2016\nLong E, Kokke S, Lundie D, Shaw N, Ijomah W, Kao CC (2016) Technical solutions to improve global sustainable management of waste electrical and electronic equipment (WEEE) in the EU and China. J Remanuf 6(1):1–27\nLund R (2012) The Database of Remanufacturers. Boston University, Boston\nMcLaren J, Wright L, Parkinson S, Jackson T (1999) A dynamic life-cycle energy model of mobile phone takeback and recycling. J Ind Ecol 2(1):77–91\nMobile Phone Partnership Initiative (2008) Guidance document on the environmentally sound management of used and end-of-life mobile phones. Mobile Phone Partner Initiative. Basel Convention, UNEP\nMoreira de Moraesa DGSV, Rochac TB, Ewaldd MR (2014) Life cycle assessment of cellphones in Brazil based on two reverse logistics scenarios. Production 24(4):735–741\nPandian GPRRS (2015) Performance Evaluation of a Reverse Logistics Enterprise - An Agent-Based Modelling Approach. Electronic Theses and Dissertations. Paper 5276, pp 82-97\nPonce-Cueto E, Manteca JÁG, Carrasco-Gallego R (2011) Reverse logistics practices for recovering mobile phones in Spain. Supply Chain Forum Int J 12(2):104–114\nQuraishi J (2010) URL: http:\u002F\u002Fwww.motherjones.com\u002Fblue-marble\u002F2010\u002F11\u002Fwhat-happens-your-phone-when-you-recycle-it. Web accessed 10 Nov 2016\nReverse Logistic Association (2016) http:\u002F\u002Fwww.reverselogisticstrends.com\u002Freverse-logistics.php. Web accessed 4 Nov 2016\nRogers DS, Tibben-Lembke R (2001) An examination of reverse logistics practices. J Bus Logist 22(2):129–148\nSarath P, Bonda S, Mohanty S, Nayak SK (2015) Mobile phone waste management and recycling: Views and trends. Waste Manag 46:536–545\nSingh S (2012) URL: http:\u002F\u002Fthegadgetsquare.com\u002F958\u002Fdifference-between-smartphones-and-feature-phones\u002F. Web accessed 14 Nov 2016\nSlade G (2007) iWaste. URL: http:\u002F\u002Fwww.motherjones.com\u002Fenvironment\u002F2007\u002F03\u002Fiwaste. Web accessed 4 Nov 2016\nTaylor B (2014) How the smartphone defeated the point-and-shoot digital camera. URL: http:\u002F\u002Fwww.pcworld.com\u002Farticle\u002F2466500\u002Fhow-the-smartphone-defeated-the-point-and-shoot-digital-camera.html. Web accessed 9 Dec 2016\nU.S. Environmental Protection Agency (2012) Wastes - Resource Conservation - Common Wastes & Materials - eCycling. Web accessed 4 Nov 2012\nU.S. Environmental Protection Agency (2016) Fact Sheet: MANAGEMENT OF ELECTRONIC WASTE IN THE UNITED STATES. Web accessed 4 Nov 2016\nVelmurugan MS (2016) Environmental and health aspects of mobile phone production and use: Suggestions for innovation and policy. Environ Innov Soc Trans 21:69–79\nVoss C, Tsikriktsis N, Frohlich M (2002) Case research in operations management. Int J Oper Prod Manag 22(2):195–219\nYeoman I (2012) Cannibalization. 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