PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
2018 | 27 | 1 |

Tytuł artykułu

Modelling an integrated fuzzy logic and multi-criteria approach for land capability assessment for optimized municipal solid waste landfill siting yeast

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The rapid growth of municipal solid waste (MSW) is considered one of the greatest environmental challenges in both developed and developing countries. Among the numerous approaches in solid waste management, the sanitary landfill is still the most common in many countries, including Iran. The multiplicity of factors affecting MSW landfill siting on the one hand, and the importance of applying an efficient method on the other, has led to conducting multi-criteria decision-making integrated with geographic information system (GIS) to evaluate Hassan-Abad land capability. Therefore, 20 criteria were categorized into ecological and socio-economic classes, and the analytical network process model was used to compute the weights. Statistics show that the most considerable items in landfill siting are distance from roads and built-up areas and soil with weights of 0.080466, 0.074147, and 0.062027, respectively. Moreover, the final capability map generated by the weighted linear combination method represents that 82% of the study area has no capability for landfill siting, while low, moderate, and high capability classes cover 12%, 5%, and 1% of Hasan-Abad, respectively. The results indicate the efficiency of the integrated method in land capability assessment for MSW landfill siting.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

27

Numer

1

Opis fizyczny

p.313-323,fig.,ref.

Twórcy

autor
  • Department of Environmental Science, Science and Research Branch, Islamic Azad University, Tehran, Iran
autor
  • Department of Environmental Science, Science and Research Branch, Islamic Azad University, Tehran, Iran
autor
  • Department of Environmental Science, Science and Research Branch, Islamic Azad University, Tehran, Iran
autor
  • Department of Environmental Science, North Tehran Branch, Islamic Azad University, Tehran, Iran

Bibliografia

  • 1. CHUNPING L., GUOXUE L., YIMING L., YANFU L., JIAN H. Environmental monitoring and fuzzy synthetic evaluation of municipal solid. waste transfer stations in Beijing in 2001-2006. Journal of environmental sciences, 20, 998, 2008.
  • 2. GUPTA N., YADAV K.K., KUMAR V. A review on current status of municipal solid waste management in India. Journal of environmental sciences, 37, 206, 2015.
  • 3. LAI K., LIM S., THE P., YEAP K. Characterizing a Novel Food Waste Recovery Process Using an Electrostatic Separator. Polish Journal of Environmental Studies, 25 (5), 2227, 2016.
  • 4. BRONJA H., BRONJA H. A multi-criteria approach to selecting a landfill site with the aim of protecting the environment. Polish Journal of Environmental Studies, 23 (5), 1499, 2014.
  • 5. KULCYZCKA J., LELEK L., LEWANDOWSKA A., ZAREBSKA J. Life Cycle Assessment of Municipal Solid Waste Management – Comparison of Results Using Different LCA Models. Polish Journal of Environmental Studies, 24, (1), 125, 2015.
  • 6. SAHERI S., AGHAJANI MIR M., BASRI N.E.A., MAHMOOD N.Z.B., BEGUM R.A. Life Cycle Assessment for solid waste disposal options in Malaysia. Polish Journal of Environmental Studies, 21 (5), 1377, 2012.
  • 7. ABDOLI M.A. Recycling of Municipal Solid Wastes. Publisher: Tehran University, Iran, 101, 2005. [In Persian]
  • 8. MALLAK K.SH., BAKRI ISHAK M., KASIM M.R.M., ABU SAMAH M.A. Assessing The Effectiveness of Waste Minimization Methods in Solid Waste Reduction at the Source by Manufacturing Firms in Malaysia. Polish Journal of Environmental Studies, 24 (5), 2063, 2015.
  • 9. MOEINADDINI M., KHORASANI N., DARVISHSEFAT A.A., ZIENALYAN M. Siting MSW landfill using weighted linear combination and analytical hierarchy process (AHP) methodology in GIS environment (case study: Karaj). Waste Management, 30, 912, 2010.
  • 10. KARIMZADEH- MOTLAGH Z., SAYADI M.H. Siting MSW landfills using MCE methodology in GIS environment (case study: Birjand plain, Iran). Waste Management, 46, 322, 2015.
  • 11. KONTOS T.D., KOMILIS D.P., HALVADAKIS C.P. Siting MSW landfills with a spatial multiple criteria analysis methodology. Waste Management, 25, 818, 2005.
  • 12. JAMSHIDI A., KAZEMI JAHANDIZI E., MOSHTAGHIE M., MONAVARI S.M., TAJZIEHCHI S., HASHEMI A., JAMSHIDI M., ALLAHGHOLI L. Landfill Site Selection: a Basis Toward Achieving Sustainable Waste Management. Polish Journal of environmental Studies, 24 (3), 1021, 2015.
  • 13. KIM K.R., OWENS, G. Potential for enhanced phytoremediation of landfills using bio-solids: a review. Journal of Environmental Management, 91 (4), 791, 2010.
  • 14. MAHMOOD KH., BATOOL S.A., CHAUDHRY M.N., DAUD A. Evaluating municipal solid waste dumps using geographic information system. Polish Journal of Environmental Studies, 24 (2), 879, 2015.
  • 15. MUTLUTURK M., KARAGUZEL R. The Landfill area quality (LAQ) classifi cation approach and its application in Isparta, Turkey. Environmental and Engineering Geoscience, 13, 229, 2007.
  • 16. SENER B., LUTFI SUZEN M., DOYURAN V. Landfill site selection by using geographic information systems. Environmental Geology, 49, 376, 2006.
  • 17. SENER S., SENER E., NAS B., KARAGUZEL R. Combining AHP with GIS for landfill site selection: A case study in the Lake Beysehir catchment area (Konya, Turkey). Waste Management, 30, 2037, 2010.
  • 18. SUMATHI V.R., NATESAN U., SARKAR C. GIS-based approach for optimized siting of municipal solid waste landfill. Waste Management, 28, 2146, 2008.
  • 19. BALL J.M., ROAD L. Landfill site selection. Tenth International Waste Management and Landfill symposiums, 1250, 2005.
  • 20. CHANG N., PARVATHINATHANB G., BREDEN J.B. Combining GIS with fuzzy multicriteria decision making for landfill siting in a fast-growing urban region. Journal of Environmental Management, 87, 139, 2008.
  • 21. KONTOS T.D., KOMILIS D.P., HALVADAKIS C.P. Siting MSW landfills on Lesvos Island with a GIS based methodology. Waste Management & Research, 21, 262, 2003.
  • 22. DELGADO O.B., MENDOZA M., GRANADOS E.L., GENELETTI D. Analysis of land suitability for the siting of inter-municipal landfills in the Cuitzeo Lake Basin, Mexico. Waste Management, 28, 1137, 2008.
  • 23. EASTMAN R.J. IDRISI 32, Release 2. Tutorial. Clark University, USA. 280, 2001.
  • 24. CHEN Y., YU J., KHAN S. Spatial sensitivity analysis of multi-criteria weights in GIS-based land suitability evaluation. Environmental Modeling & Software, 25 (12), 1582, 2010.
  • 25. ESKANDARI M., HOMAEE M., MAHMODI S. An integrated multi criteria approach for landfill siting in a conflicting environmental, economical and socio-cultural area. Waste Management, 32, 1528, 2012.
  • 26. GBANIE S.P., TENGBE P.B., MOMOH J.S., MEDO J., KABBA V.T.S. Modelling Landfill location using Geographic Information System (GIS) and Multi-Criteria Decision Analysis (MCDA): Case study Bo, Southern Sierra Leon. Applied Geography, 36, 3, 2013.
  • 27. AJIT P., SINGH A., VIDYARTHI K. Optimal allocation of landfill disposal site: a fuzzy multi-criteria approach, Iran. Journal of Environmental Health science & Engineering, 5 (1), 25, 2008.
  • 28. AKBARI V., RAJABI M.A., CHAVOSHI S.H., SHAMS R. Landfill site selection by combining GIS and Fuzzy multi-criteria decision analysis, case study: Bandar Abbas, Iran. World Applied Sciences Journal, 3, 39, 2008.
  • 29. ALLEN A., BRITO G., CAETANO P., COSTA C., CUMMINS V., DONELLY J., FERNADES C., KUKUPAS S., O'DONELL V., ROBALO C., VENDAS D. Procedure for the location of landfill sites using a GIS model. In 9th Congress of the International Association of Engineering Geology and the Environment, Durban, South Africa, 100, 2002.
  • 30. GUIQIN W., LI Q., GUOXUE L., LIJUN C. Landfill site selection using spatial information Technologies and AHP: a case study in Beijing, China. Journal of Environmental Management, 90, 2414, 2009.
  • 31. JAVAHERI H., NASRABADI T., JAFARIAN M.H., ROWSHAN G.R., KHOSHNAM H. Site selection of municipal solid waste landfills using analytical hierarchy processes method in a geographical information technology environment in Giroft, Iran. Journal of Environmental Health Science Engineering, 3, 177, 2006.
  • 32. NAS B., CAY T., ISCAN F., BERKTAY A. Selection of MSW Landfill site for Konya, Turkey using GIS and multi-criteria evaluation. Environmental Monitoring & Assessment, 160, 491, 2010.
  • 33. PADMAJA V., ASADF S.S., ANJI M.R. Solid waste disposal site selection using analytical hierarchy process and GIS. Pollution Research, 25 (1), 73, 2006.
  • 34. THEMISTOKLIS D.K., DIMITROIS P.K. CONSTANTINOS P.H. Siting MSW landfills with a spatial multiple criteria analysis methodology. Waste management, 25, 818, 2005.
  • 35. WANG G., QIN L., LI G., CHEN L. Landfill site selection using spatial information technologies and AHP: a case study in Beijing, China. Journal of Environmental Management, 90, 2414, 2009.
  • 36. YAHAYA S., ILORI C., WHANDA S.J., EDICHA J. Landfill site selection for Municipal Solid Waste Using Geographic Information System and Multi-criteria Evaluation. American Journal of Scientific Research, 10, 34, 2010.
  • 37. AL-HANBALI A., ALSAAIDEH B., KONDOH A.Using GIS-Based Weighted Linear Combination Analysis and Remote Sensing Techniques to Select Optimum Solid Waste Disposal Sites within Mafraq City, Jordan. Journal of Geographic Information System, 3, 267, 2011.
  • 38. ISALOU A.A., ZAMANI V., SHAHMORADI B., ALIZADEH H. Landfill site selection using integrated fuzzy logic and analytic network process (F-ANP). Environmental Earth Science, 68, 1745, 2013.
  • 39. CHABUK A., AL-ANSARI N., HUSSAIN M.H., KNUTSSON S., PUSCH R. Landfill site selection using geographic imformation system and analytical hierarchy process: A case study Al-Hillah Qadhaa, Babylon, Iraq. Waste management and research, 34 (5), 427, 2016.
  • 40. HASAN-ABAD Municipality. Available online: http://hassanabadcity.ir/2016-06-01-07-34-22/2016-06-01-07-34-55/2016-06-01-07-35-37. (Accessed on 12 Aguste 2016).
  • 41. ALIANI H., BABAIE KAFAKI S., SAFFARI A. Determining an appropriate method for the purpose of land allocation for ecotourism development (case study: Taleghan County, Iran. Environmental Monitoring & Assessment. Doi:10.1007/s10661-016-5651-2, 2016.
  • 42. OZKAN A., BANAR M. Refuse derive fuel (RDF) utilization in cement industry by using analytical network process (ANP). Chemical Engineering Transactions, 21, 747, 2010.
  • 43. YANG CH.L., YUAN B.J.C., HUANG CH.Y. Key Determinant Derivations for Information Technology Disaster Recovery Site Selection by the Multi-Criterion Decision Making Method. Sustainability , 7, 6149, 2015.
  • 44. BARZEKAR G., AZIZ A., MARIAPAN M., ISMAIL M. H., HOSSENI S. M. Delphi technique for generating criteria and indicators in monitoring ecotourism sustainability in Northern forests of Iran: case study on Dohezar and Sehezar Watersheds. Folia Forestalia Polonica Series, 53 (2), 130, 2011.
  • 45. GHODDOUSI J. Application of MCDM techniques in HSE and Environment management. Lecture note . IAU. Science and Research Branch, Tehran. College of Environment and Energy. 45, 2014. [In Persian]
  • 46. SAATY T.L., VARGAS L.G. Decision Making with the Analytic Network Process, Springer, Pittsburgh, USA, 108, 2006.
  • 47. WICHER P., ZAPLETAL F., LENORT R., STAS D. Measuring The Metallurgical Supply Chain Resilience Using Fuzzy Analytic Network Process. Journal Metalurgija, 55 (4), 783, 2016.
  • 48. MCBRATNEY A.B., ODEH O.A. Application of fuzzy sets in soil science: fuzzy logic, fuzzy measurements and fuzzy decisions. Geoderma, 77, 85, 1997.
  • 49. ZHANG Y. The Application of Fuzzy-ANP and SD Software in the Assessment of Organic Chemistry Teachers’ Bilingual Teaching Competency. Advance Journal of Food Science and Technology, 5 (6), 707, 2013.
  • 50. BORAN S., GOZTEPE K. Development of a fuzzy decision support system for commodity acquisition using fuzzy analytic network process. Expert Systems with Applications, 37, 1939, 2010.
  • 51. GOZTEPE K. A study on OS selection using ANP based Integral in Terms of cyber Threats. International Journal of Information Security Science, 1 (2), 67, 2012.
  • 52. SAATY T.L. Decision Making for Leaders: The Analytic Hierarchy Process for Decisions in a Complex World (3rd Ed.). Pittsburgh, PA: RWS Publications, 84, 1996.
  • 53. SAATY T.L. The Analytic Hierarchy Process, McGraw-Hill, Inc., New York, USA, 22, 1980.
  • 54. DAGDEVIREN M., YUKSEL I. A fuzzy analytic process (ANP) model for measurement of the sectoral competition level (SCL). Expert Systems with Applications, 37, 1005, 2010.
  • 55. KAHRAMAN C., ERTAY T., BUYUKOZKAN G. A fuzzy optimization model for QFD planning process using analytic network approach. European Journal of Operational Research, 171 (2), 390, 2006.
  • 56. DASHTI S., MONAVARI S.M., HOSEINI S.M., RIAZI B., MOMENI M. Application of GIS, AHP, Fuzzy and WLC in Island Ecotourism Development (Case study of Qeshm Island, Iran). Life Science Journal, 10 (1), 1274, 2013.
  • 57. MAHINI A.S., GHOLAMALIFARD M. Siting MSW landfills with a weighted linear combination methodology in a GIS environment. International Journal of Environmental Science Technology, 3 (4), 435, 2006.
  • 58. MAVI K.R., KAZEMI S., NAJAFABADI F.A., MOUSAABADI H.B. Identification and Assessment of Logistical Factors to Evaluate a Green Supplier Using the Fuzzy Logic DEMATEL Method. Polish Journal of Environmental Studies, 22 (2), 445, 2013.
  • 59. SHAHABI H., AHMAD A.B., AHMAD B.B., AMIRI M.J.T., KEIHANFARD S., EBRAHIMI S. Assessment of WLC and Fuzzy Logic Methods for Site Selection of Water Reservoirs in Malaysia. Polish Journal of Environmental Studies, 25 (3), 1223, 2016.
  • 60. EASTMAN R.J. IDRISI Andes guide to GIS and image processing. Clark University. 89, 2006.
  • 61. AFZALI A., SAMANI J.M.V., RASHID M. Municipal Landfill Site Selection for Isfahan city by use of Fuzzy Logic and AHP. Iran Journal of Environmental Health Science & Engineering, 8, 273, 2011.
  • 62. GEMITZI A., TSIHRINTZIS V.A., VOUDRIAS E., PETALAS C., STRAVODIMOS G. Combining geographic information system, multicriteria evaluation techniques and fuzzy logic in siting MSW landfills. Environmental Geology, 51, 797, 2007.
  • 63. DEMESOUKA O.E., VAVATSIKOS A.P., ANAGNOSTOPOULOS K.P. Suitability analysis for siting MSW landfills and its multi-criteria spatial decision support system: Method, implementation and case study. Waste Management, 33, 1190, 2013.
  • 64. BABALOLA A., BUSU I. Selection of landfill sites for solid waste treatment in Damaturu Town-using GIS techniques. Journal of Environmental Protection, 2, 1, 2011.
  • 65. KHAN SH., FAISAL M.N. An analytic network process model for municipal solid waste disposal options. Waste Management, 28, 1500, 2008.
  • 66. KHORRAM A., YOUSEFI M., ALAVI S.A., FARSI J. Convenient Landfill Site Selection by Using Fuzzy Logic and Geographic Information Systems: A Case Study in Bardaskan , East of Iran. Health Scope, 4 (1), e19383, 2015.
  • 67. CHYU C.C., FANG Y.C. A Hybrid Fuzzy Analytic Network Process Approach to the new product development selection problem.Mathematical Problems in Engineering, 2014, Hindavi.com. available on: http://dx.doi.org/10.1155/2014/485016.
  • 68. DAVAMI A.H., MOHARAMNEJAD N., MONAVARI S.M., SHARIAT M. An urban solid waste landfill site evaluation process incorporating GIS in local scale environment: a case of Ahvaz city, Iran. International Journal of Environmental Research, 8 (4), 1011, 2014.
  • 69. ERKUT E., MORAN S.R. Locating obnoxious facilities in the public sector: An application of the hierarchy process to municipal landfill siting decisions. Socio-Economic Planning Sciences, 25 (2), 89, 1991.
  • 70. GORSEVSKI P.V., DONEVSKA K.R., MITROVSKI C.D., FRIZADO J.P. Integrating multi-criteria evaluation techniques with geographic information systems for landfill site selection: a case study using ordered weighted average. Waste Management, 32, 287, 2012.
  • 71. RAHMAN M.M., SULTANA K.R., HOQUE M.A. Suitable sites for urban solid waste disposal using GIS approach in Khulna city, Bangladesh. Proceedings of Pakistan Academy of sciences, 45 (1), 11, 2008.
  • 72. SENER S., SENER E., KARAGUZEL R. Solid waste disposal site selection with GIS and AHP methodology: a case study in Senirkent-Uluborlu (Isparta) Basin, Turkey. Environmental Monitoring & Assessment, 173, 533, 2011.
  • 73. TORABI K.M., BABAZADEH R., MOHAMMADI S.D., ZARESEFAT M. Landfill site selection using combination of GIS and Fuzzy AHP , a case study: Iranshah, Iran. Waste management and research, 34 (5), 438, 2016.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-4744652c-14f2-402d-9b6a-159dfd32fb90
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.