Assessment of social aspects across Europe resulting from the insertion of technologies for nutrient recovery and recycling in agriculture
Tài liệu tham khảo
Abad-Segura, 2020, Industrial processes management for a sustainable society: global research analysis, Processes, 8, 10.3390/pr8050631
Albaum, 1997, The Likert scale revisited: an alternate version, Int. J. Mark. Res., 39, 331
Arcese, 2018, State of the art in S-LCA: integrating literature review and automatic text analysis, Int. J. Life Cycle Assess., 23, 394, 10.1007/s11367-016-1082-0
Arvidsson, 2019, On the use of ordinal scoring scales in social life cycle assessment, Int. J. Life Cycle Assess., 24, 604, 10.1007/s11367-018-1557-2
Basso, 2016, Variable rate nitrogen fertilizer response in wheat using remote sensing, Precis. Agric., 17, 168, 10.1007/s11119-015-9414-9
Benoit-Norris, 2013
Bittman, 2013, Air quality, health effects and management of ammonia emissions from fertilizers, Air Qual. Manag. Can. Perspect. Glob.
Boulay, 2018, The WULCA consensus characterization model for water scarcity footprints: assessing impacts of water consumption based on available water remaining (AWARE), Int. J. Life Cycle Assess., 23, 368, 10.1007/s11367-017-1333-8
Brundtland, 1987, The Brundtland report: ‘Our common future.’, Med. War, 4, 17
Bruno, 2020, Technology readiness revisited: a proposal for extending the scope of impact assessment of European public services, 369
Burchi, 2013, Social Life Cycle Assessment of a new technology: analysis of potential social performance, SETAC Eur. 19th LCA Case Study Symp. LCA Mark. Res. policy Harmon. beyond Stand.
2021
Ceicdata, 2021. Belgium number of employees: by industry. https://www.ceicdata.com/en/belgium/number-of-employees-by-industry (accessed 16 September 2021).
Chen, 2017, Social life cycle assessment of average Irish dairy farm, Int. J. Life Cycle Assess., 22, 1459, 10.1007/s11367-016-1250-2
Cordell, D., 2010. The story of phosphorus sustainability implications of global phosphorus scarcity for food security.
Country economy, 2021. National minimum wage. https://countryeconomy.com/national-minimum-wage (accessed 17 January 2022).
D'Amato, 2014, Climate change and respiratory diseases, Eur. Respir. Rev. Off. J. Eur. Respir. Soc., 23, 161, 10.1183/09059180.00001714
D-NOSES consortium (2019) Odour pollution - a growing societal concern. d-NOSES policy brief #1 https://dnoses.eu/wp-content/uploads/2019/03/Policy-Brief_-Digital-A4-Europe_EN.pdf (accessed in 23 July 2021).
Darnhofer, 2010, Assessing a farm's sustainability: insights from resilience thinking, Int. J. Agric. Sustain., 8, 186, 10.3763/ijas.2010.0480
Donham, 2007, Community health and socioeconomic issues surrounding concentrated animal feeding operations, Environ. Health Perspect., 115, 317, 10.1289/ehp.8836
Abbas Drebee, 2020, The Impact of Corruption on Agriculture Sector in Iraq: Econometrics Approach. IOP Conf. Ser, 553
2018, Environmental indicator report 2018
EEC, 1991. Council Directive 91/676/EEC of 12 December 1991 concerning the protection of waters against pollution caused by nitrates from agricultural sources.
Ejeta, 2009, Revitalizing agricultural research for global food security, Food Secur., 1, 391, 10.1007/s12571-009-0045-8
Eurostat, 2021. Database - health. https://ec.europa.eu/eurostat/web/health/data/database (accessed 24 September 2021).
European Commission (EC), 2021. Pig meat: statistics regarding live piglets as well as different categories and qualities of pork https://ec.europa.eu/commission/presscorner/detail/en/IP_21_4584 (accessed 02 April 2021).
FAO, 2018. More people, more food, worse water? A global review of water pollution from agriculture, FAO of the United Nations & IWMI. https://www.fao.org/3/ca0146en/ca0146en.pdf (accessed 24 July 2021).
FAO, 2021a. AQUASTAT. https://www.fao.org/aquastat/statistics/query/results.html. (accessed 24 October 2021).
FAO, 2016. The state of food and agriculture, 2016, The Eugenics review. https://www.fao.org/3/i6030e/i6030e.pdf (accessed 13 January 2022).
FAO, 2021b. The state of food security and nutrition in the world 2021. 10.4060/cb4474en (accessed 10 January 2022).
FAO, 2017. Water for sustainable food and agriculture water for sustainable food and agriculture, a report produced for the G20 Presidency of Germany.
Fellmann, 2021, Greenhouse gas mitigation technologies in agriculture: regional circumstances and interactions determine cost-effectiveness, J. Clean. Prod., 317, 10.1016/j.jclepro.2021.128406
Franze, 2011, A comparison of cut roses from Ecuador and the Netherlands, Int. J. Life Cycle Assess., 16, 366, 10.1007/s11367-011-0266-x
Gallardo, 2018, Adoption of labor-saving technologies in agriculture, Annu. Rev. Resour. Econ., 10, 185, 10.1146/annurev-resource-100517-023018
Haines, 2009, Public health benefits of strategies to reduce greenhouse-gas emissions: overview and implications for policy makers, Lancet, 374, 2104, 10.1016/S0140-6736(09)61759-1
Hannouf, 2018, Subcategory assessment method for social life cycle assessment: a case study of high-density polyethylene production in Alberta, Canada, Int. J. Life Cycle Assess., 23, 116, 10.1007/s11367-017-1303-1
Hurst, P., Termine, P., Karl, M., 2005. Agricultural workers and their contribution to sustainable agriculture and rural development. https://www.ilo.org/wcmsp5/groups/public/—ed_dialogue/—actrav/documents/publication/wcms_113732.pdf (accessed in 20 August 2021).
ILO, 2021. Agriculture: a hazardous work. https://www.ilo.org/safework/areasofwork/hazardous-work/WCMS_110188/lang–en/index.htm. (accessed 16 September 2021).
ISO 14040, 2006. Environmental management – life cycle assessment – principles and framework.
Keeler, 2016, The social costs of nitrogen, Sci. Adv., 2, 10.1126/sciadv.1600219
Kim, 2018, Innovative technology in the agricultural sectors: opportunities for green jobs or exacerbation of rural youth unemployment?
Kono, 2018, Trade-off between the social and environmental performance of green concrete: the case of 6 countries, Sustainability, 10, 10.3390/su10072309
Kühnen, 2017, Indicators in social life cycle assessment: a review of frameworks, theories, and empirical experience, J. Ind. Ecol., 21, 1547, 10.1111/jiec.12663
Kumar, M., 2020. Social, economic, and environmental impacts of renewable energy resources. 10.5772/intechopen.89494.
Lee, 2010, The occupational diseases of agricultural workers, Hanyang Med. Rev., 30, 305, 10.7599/hmr.2010.30.4.305
Lenzen, 2013, Building eora: a global multi-region input-output database at high country and sector resolution, Econ. Syst. Res., 25, 20, 10.1080/09535314.2013.769938
Levy, 2003, Health effects of atmospheric nitrogen emissions, Environ. Sci. Policy Sustain. Dev., 45, 14, 10.1080/00139150309604554
Likert, 1932, A technique for the measurement of attitudes, Arch. Psychol., 22, 55
Maister, K., Di Noi, C., Ciroth, A., Srocka, M., 2020. PSILCA v.3.
Martin, 2021, Environmental and social performance of valorizing waste wool for sweater production, Sustain. Prod. Consum., 25, 425, 10.1016/j.spc.2020.11.023
Mielcarek-bocheńska, 2021, Greenhouse gas emissions from agriculture in EU countries—state and perspectives, Atmosphere (Basel), 12, 1
Navi, 2017, Developing Health-Related Indicators of Climate Change: Australian Stakeholder Perspectives, Int. J. Environ. Res. Public Heal., 10.3390/ijerph14050552
Nedelciu, 2020, Opening access to the black box: the need for reporting on the global phosphorus supply chain, Ambio, 49, 881, 10.1007/s13280-019-01240-8
Numbeo. 2019. Pollution index by country 2019. https://www.numbeo.com/pollution/rankings_by_country.jsp?title=2019 (accessed 05 October 2021).
OEC, 2021. Observatory of economic complexity. Mixed mineral or chemical fertilizers. https://oec.world/en/profile/hs92/mixed-mineral-or-chemical-fertilizers (accessed 24 September 2021).
Pelletier, 2018, Social sustainability assessment of Canadian egg production facilities: methods, analysis, and recommendations, Sustainability, 10, 1, 10.3390/su10051601
Peters, 2014, Improving odour assessment in LCA—the odour footprint, Int. J. Life Cycle Assess., 19, 1891, 10.1007/s11367-014-0782-6
Prasad, 2020, Sustainable utilization of crop residues for energy generation: a Life Cycle Assessment (LCA) perspective, Bioresour. Technol., 303, 10.1016/j.biortech.2020.122964
Ramirez, 2016, Subcategory assessment method for social life cycle assessment. Part 2: application in Natura's cocoa soap, Int. J. Life Cycle Assess., 21, 106, 10.1007/s11367-015-0964-x
Ridder, M.De, Jong, S.De, Polchar, J., & Lingemann, S. (2012). Risks and opportunities in the global phosphate rock market: robust strategies in times of uncertainty. https://www.phosphorusplatform.eu/images/download/HCSS_17_12_12_Phosphate.pdf (accessed in 26 October 2021).
Rotz, 2019, Automated pastures and the digital divide: how agricultural technologies are shaping labour and rural communities, J. Rural Stud., 68, 112, 10.1016/j.jrurstud.2019.01.023
Rounsevell, 2010, Developing qualitative scenario storylines for environmental change assessment, Wiley Interdiscip. Rev. Clim. Chang., 1, 606, 10.1002/wcc.63
Sahoo, 2016, Managing groundwater nitrate contamination from livestock farms: implication for nitrate management guidelines, Curr. Pollut. Rep., 2, 178, 10.1007/s40726-016-0033-5
Salary Explorer, 2021. Salary and cost of living comparison. http://www.salaryexplorer.com/(accessed 29 September 2021).
Saritas, 2017, Global challenges and trends in agriculture: impacts on Russia and possible strategies for adaptation, Foresight, 19, 218, 10.1108/FS-09-2016-0045
Siebert, 2018, How not to compare apples and oranges: generate context-specific performance reference points for a social life cycle assessment model, J. Clean. Prod., 198, 587, 10.1016/j.jclepro.2018.06.298
Statista, 2021. Number of employees in agriculture, forestry and fishery in Germany from 1991 to 2020. https://www.statista.com/statistics/669298/employees-agriculture-forestry-fishery-germany/(accessed 16 September 2021).
Sutton, 2011
Switzer, Y., 2019. Dangerous fertilisers: Swiss traders and human rights violations in Morocco 1–8.
Thonemann, 2020, How to conduct prospective life cycle assessment for emerging technologies? A systematic review and methodological guidance, Sustainability, 12, 1, 10.3390/su12031192
Umstätter, 2016, Auswirkung des technischen fortschritts auf die arbeitszeit in der landwirtschaft, Agrar. Schweiz, 7, 204
2009, Guidelines for social life cycle assessment of products, Management, 15, 104
2020
United Nations, 2022. SDG indicators - metadata repository. https://unstats.un.org/sdgs/metadata/(accessed 12 January 2022).
Urbancová, 2018, Impact of employee development in agricultural companies on commitment, loyalty and performance, Acta Univ. Agric. Silvic. Mendelianae Brun., 66, 803, 10.11118/actaun201866030803
van Haaster, 2017, Development of a methodological framework for social life-cycle assessment of novel technologies, Int. J. Life Cycle Assess., 22, 423, 10.1007/s11367-016-1162-1
Vatsanidou, 2017, Nitrogen replenishment using variable rate application technique in a small hand-harvested pear orchard, Spanish J. Agric. Res., 15
Ward, 2018, Drinking water nitrate and human health: an updated review, Int. J. Environ. Res. Public Health, 15, 1, 10.3390/ijerph15071557
Werker, 2019, Social LCA for rare earth NdFeB permanent magnets, Sustain. Prod. Consum., 19, 257, 10.1016/j.spc.2019.07.006
Werker, 2019, Working conditions in hydrogen production: a social life cycle assessment, J. Ind. Ecol., 23, 10.1111/jiec.12840
WHO, 2016. Global health observatory data repository. https://apps.who.int/gho/data/view.main.BODAMBIENTAIRDALYS (accessed 16 September 2021).
Wilkinson, 2007, A global perspective on energy: health effects and injustices, Lancet, 370, 965, 10.1016/S0140-6736(07)61252-5
Wohlenberg, 2020, Sustainability indicators in the context of family farming: a systematic and bibliometric approach, Environ. Eng. Res., 27, 10.4491/eer.2020.545
World Bank, 2019. Worldwide governance indicators. https://info.worldbank.org/governance/wgi/#home (accessed 04 September 2021).
Xia, 2020, Recent advances in control technologies for non-point source pollution with nitrogen and phosphorous from agricultural runoff: current practices and future prospects, Appl. Biol. Chem., 63, 10.1186/s13765-020-0493-6