Landfill site selection using multi-criteria evaluation in the GIS interface: a case study from the Gaza Strip, Palestine

Arabian Journal of Geosciences - Tập 8 Số 9 - Trang 7499-7513 - 2015
Moustafa El Baba1,2, Prabin Kayastha1, Florimond De Smedt1
1Department of Hydrology and Hydraulic Engineering, Vrije Universiteit Brussel, Brussels, Belgium
2Institute of Water and Environment, Al Azhar University–Gaza, Gaza, Palestine

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Tài liệu tham khảo

Adeli Z, Khorshiddoust A (2011) Application of geomorphology in urban planning: case study in landfill site selection. Proc Soc Behav Sci 19:662–667

Alidi AS (1992) An integer goal programming model for hazardous waste treatment and disposal. Appl Math Mode 16:645–651

Al-Jarrah O, Abu-Qdais H (2006) Municipal solid waste landfill siting using intelligent system. Waste Manag 26:299–306

Almasri MN (2008) Assesment of intrinsic vulnerability to contamination for Gaza coastal aquifer, Palestine. J Environ Manage 88:577–593

Aragonés-Beltrán P, al Pastor-Ferrando JP, García-García F, Pascual-Agullό A (2010) An analytic network process approach for siting a municipal solid waste plant in the Metropolitan area of Valencia (Spain). J Environ Manage 91:1071–1086

Arkoc O (2014) Municipal solid waste landfill site selection using geographical information systems: a case study from Çorlu, Turkey. Arab J Geosci 7(11):4975–4985

Banar M, Kose BM, Ozkan A, Acar IP (2007) Choosing a municipal landfill site by analytic network process. Environ Geol 52:747–751

Bolton KF, Curtis FA (1990) An environmental assessment procedure for siting solid waste disposal sites. Environ Impact Asses 10:285–296

Cao L, Cheng Y, Zhang J, Zhou X, Lian C (2006) Application of grey situation decision-making theory in site selection of a waste sanitary landfill. J China Univ Mining Technol 16(4):393–398

Chang NB, Parvathinathan G, Breeden JB (2008) Combining GIS with fuzzy multicriteria decision-making for landfill siting in a fast-growing urban region. J Environ Manage 87:139–153

Daneshvar R, Fernandes L, Warith M, Daneshfar B (2003) Customizing ArcMap interface to generate a user-friendly landfill site selection GIS tool. Environ Inform Arch 1:428–437

de Lima BSLP, Alves MCM, Evsukoff AG, Vieira IN (2008) Municipal solid waste site location using a fuzzy logic approach. In: Lovrek I, Howlett RJ, Jain LC (eds) Knowledge based intelligent information and engineering systems, lecture notes in computer science, vol 5178. Springer, Berlin, pp 950–957

Delgado OB, Mendoza M, Granados EL, Geneletti D (2008) Analysis of land suitability for the siting of inter-municipal landfills in the Cuitzeo Lake Basin, Mexico. Waste Manag 28:1137–1146

Deng Y, Englehardt JD (2006) Treatment of landfill leachate by the Fenton process. Water Res 40(20):3683–3694

Donevska KR, Gorsevski PV, Jovanovski M, Pesévski I (2012) Regional non-hazardous landfill site selection by integrating fuzzy logic, AHP and geographic information systems. Environ Earth Sci 67(1):121–131. doi: 10.1007/s12665-011-1485-y

Eggen T, Moeder M, Arukwe A (2010) Municipal landfill leachates: a significant source for new and emerging pollutants. Sci Total Environ 408(21):5147–5157

Eskandari M, Homaee M, Mahmodi S (2012) An integrated multi criteria approach for landfill siting in a conflicting environmental, economical and socio-cultural area. Waste Manag 32:1528–1538

Ferretti V (2011) A multicriteria spatial decision support system development for siting a landfill in the Province of Torino (Italy). J Multi Crit Decis Analys 18:231–252

Frantzis I (1993) Methodology for municipal landfill sites selection. Waste Manag Res 11:441–451

Gemitzi A, Tsihrintzis VA, Petalas C (2010) Use of GIS and multi-criteria evaluation techniques in environmental problems. In: Tsihrintzis GA, Jain LC (eds) Multimedia services in intelligent environments, SIST 3. Springer, Berlin, pp 5–62

Gorsevski PV, Donevska KR, Mitrovski CD, Frizado JP (2012) Integrating multi-criteria evaluation techniques with geographic information systems for landfill site selection: a case study using ordered weighted average. Waste Manag 32:287–296

Jankowski P, Nyerges T (2001) GIS-supported collaborative decision making: results of an experiment. Annal Ass Amer Geogr 91(1):48–70

JICA (Japan International Cooperation Agency) and EQA (Environmental Quality Authority) (2007) Assessment of solid waste dump sites in Gaza Strip. Report prepared by JICA, Palestine

Kachouri S, Achour H, Abida H, Bouaziz S (2014) Soil erosion hazard mapping using analytic hierarchy process and logistic regression: a case study of Haffouz watershed, central Tunisia. Arab J Geosci. doi: 10.1007/s12517-014-1464-1

Kao JJ, Lin H (1996) Multifactorial spatial analysis of landfill sitting. J Environ Eng 122:902–908

Kaliraj S, Chandrasekar N, Magesh NS (2014) Identification of potential groundwater recharge zones in Vaigai upper basin, Tamil Nadu, using GIS-based analytical hierarchical process (AHP) technique. Arab J Geosci 7(4):1385–1401

Kayastha P, Dhital MR, De Smedt F (2013) Application of the analytical hierarchy process (AHP) for landslide susceptibility mapping: a case study from the Tinau watershed, west Nepal. Comput Geosci 52:398–408

Khamehchiyan M, Nikoudel MR, Boroumandi M (2011) Identification of hazardous waste landfill site: a case study from Zanjan province, Iran. Environ Earth Sci 64:1763–1776

Koshy L, Paris E, Ling S, Jones T, Berube K (2007) Bioreactivity of leachate from municipal solid waste landfills—assessment of toxicity. Sci Total Environ 384(1–3):171–181

Kumar S, Hassan MI (2013) Selection of a landfill site for solid waste management: an application of AHP and spatial analyst tool. J Indian Soc Rem Sens 41(1):45–56

Long NT, De Smedt F (2012) Application of an analytical hierarchical process approach for landslide susceptibility mapping in A Luoi district, Thua Thien Hue Province, Vietnam. Environ Earth Sci 66(7):1739–1752

Mahamid I, Thawaba S (2010) Multi criteria and landfill site selection using GIS: a case study from Palestine. Open Environ Eng J 3:33–41

Mahiny AS, Gholamalifard M (2011) Linking SLEUTH urban growth modeling to multi criteria evaluation for a dynamic allocation of sites to landfill. In: Murgante B, Gervasi O, Iglesias A, Taniar D, Apduhan BO, (eds) ICCSA (2011), Part I, Lecture notes in computer science 6782. Springer, Berlin, pp 32–43

Marín LE, Torres V, Bolongaro A, Reyna JA, Pohle O, Hernández-Espriú A, Chavarría J, García-Barrios R, Tabla HFP (2012) Identifying suitable sanitary landfill locations in the state of Morelos, México, using a geographic information system. Phys Chem Earth Pts A/B/C 37–39:2–9

MEnA (2001) Palestinian environmental action plan. Ministry of Environmental Affairs, Gaza, Palestine, pp 63–69

Moeinaddini M, Khorasani N, Danehkar A, Darvishsefat AA, Zienalyan M (2010) Siting MSW landfill using weighted linear combination and analytical hierarchy process (AHP) methodology in GIS environment (case study: Karaj). Waste Manag 30:912–920

Moghaddas NH, Namaghi HH (2011) Hazardous waste landfill site selection in Khorasan Razavi Province, Northeastern Iran. Arab J Geosci 4(1–2):103–113

Nateshan U, Suresh ESM (2002) Site suitability evaluation for locating sanitary landfills using GIS. J Indian Soc Rem Sens 30(4):261–264

Nazari A, Salarirad MM, Bazzazi AA (2012) Landfill site selection by decision-making tools based on fuzzy multi-attribute decision-making method. Environ Earth Sci 65:1631–1642

Nixon WB, Murphy RJ, Stessel RI (1997) An empirical approach to the performance assessment of solid waste landfills. Waste Manag Res 15:607–626

Pandey PC, Sharma LK, Nathawat MS (2012) Geospatial strategy for sustainable management of municipal solid waste for growing urban environment. Environ Monit Assess 184:2419–243

PCBS (Palestinian Central Bureau of Statistics) (2009) Press conference about the results of local community survey in the Palestinian territory. Ramallah, Palestine.

Pourghasemi HR, Pradhan B, Gokceoglu C (2012) Application of fuzzy logic and analytical hierarchy process (AHP) to landslide susceptibility mapping at Haraz watershed, Iran. Nat Hazards 63(2):965–996

Rahmati O, Samani AN, Mahdavi M, Pourghasemi HR, Zeinivand H (2014) Groundwater potential mapping at Kurdistan region of Iran using analytic hierarchy process and GIS. Arab J Geosci. doi: 10.1007/s12517-014-1668-4

Saaty TL (1977) A scaling method for priorities in hierarchical structures. J Math Psychol 15:234–281

Saaty TL (1980) The analytic hierarchy process: planning, priority setting, resource allocation. McGraw-Hill, New York, 287 pp

Saaty TL (2000) The fundamentals of decision making and priority theory with the analytic hierarchy process, Vol VI, 2nd edn. RWS, Pittsburgh, 478 pp

Sawney BL, Kozoloski RP (1984) Organic pollutants in leachates from landfill sites. J Environ Qual 13:349–353

Scultz B, Kjeldsen P (1986) Screening of organic matter in leachate from sanitary landfills using gas chromatography combined with mass spectrophotometry. Waste Manag Res 20:965–972

Şener B, Süzen ML, Doyuran V (2006) Landfill site selection by using geographic information systems. Environ Geol 49:376–388

Şener Ş, Şener E, Karagüzel R (2011a) Solid waste disposal site selection with GIS and AHP methodology: a case study in Senirkent–Uluborlu (Isparta) Basin, Turkey. Environ Monit Assess 173:533–554

Şener Ş, Şener E, Nas B (2011b) Selection of landfill site using GIS and multicriteria decision analysis for Beyşehir Lake Catchment area (Konya, Turkey). J Eng Sci Des 1(3):134–144

Şener Ş, Şener E, Nas B, Karagüzel R (2010) Combining AHP with GIS for landfill site selection: a case study in the Lake Beyşehir catchment area (Konya, Turkey). Waste Manag 30:2037–2046

Sharifi M, Hadidi M, Vessali E, Mosstafakhani P, Taheri K, Shahoie S, Khodamoradpour M (2009) Integrating multi-criteria decision analysis for a GIS-based hazardous waste landfill sitting in Kurdistan Province, western Iran. Waste Manag 29:2740–2758

Sumathi VR, Natesan U, Sarkar C (2008) GIS-based approach for optimized siting of municipal solid waste landfill. Waste Manag 28:2146–2160

Todd D (1980) Groundwater hydrology, 2nd edn. Wiley, New York

Vasiljević TZ, Srdjević Z, Bajčetić R, Miloradov MV (2012) GIS and the analytic hierarchy process for regional landfill site selection in transitional countries: a case study from Serbia. Environ Manage 49:445–458

Wang G, Qin L, Li G, Chen L (2009) Landfill site selection using spatial information technologies and AHP: a case study in Beijing, China. J Environ Manage 90:2414–2421

Yasser M, Jahangir K, Mohmmad A (2013) Earth dam site selection using the analytic hierarchy process (AHP): a case study in the west of Iran. Arab J Geosci 6(9):3417–3426

Yesilnacar MI, Cetin H (2005) Site selection for hazardous wastes: a case study from the GAP area, Turkey. Eng Geol 81:371–388

Youssef MA, Pradhan B, Tarabees E (2011) Integrated evaluation of urban development suitability based on remote sensing and GIS techniques: contribution from the analytic hierarchy process. Arab J Geosci 4(3–4):463–473

Zamoranoa M, Molero E, Hurtado Á, Grindlay A, Ramos Á (2008) Evaluation of a municipal landfill site in Southern Spain with GIS-aided methodology. J Hazard Mater 160:473–481