Department of Biosystems Engineering, Shahid Chamran University of Ahvaz, Ahvaz, Iran.
Environmental Technologies Research Center, Ahvaz Jundishapur University of Medical Sciences, Ahvaz, Iran.
Environ Monit Assess. 2020 Jun 15;192(7):433. doi: 10.1007/s10661-020-08395-y.
The study was aimed to use fuzzy multi-criteria decision making integrated with GIS to select the optimum location for municipal solid waste (MSW) landfill sites that comply with standard landfill guidelines and environmental and socio-economic criteria. Fuzzy logic and, in particular, fuzzy sets were applied to create the criteria layers in GIS and to weigh and integrate these layers in GIS. Analytical Hierarchy Process (AHP) was also used to determine the land suitability for landfill. The method was used as a case study to determine the location of landfills in the suburbs of Ahvaz, Iran. According to the results, transportation networks and residential and commercial areas were the most influential factors on the placement of landfills, with a final weight of 0.163 and 0.131, respectively. Areas near roads and transportation networks but far from the sensitive environmental zones were most suitable for landfill. Finally, 11 sites that met the defined requirements were selected as suitable locations for MSW landfill. This technique and its results can provide a proper guideline to help decision makers choose the optimal landfill site in the future. Depending on their importance in each region, the methodology can incorporate other factors and criteria.
本研究旨在利用模糊多准则决策与 GIS 相结合,选择符合标准垃圾填埋场指南以及环境和社会经济标准的城市固体废物(MSW)垃圾填埋场的最佳位置。模糊逻辑,特别是模糊集,被应用于在 GIS 中创建标准层,并在 GIS 中衡量和整合这些层。层次分析法(AHP)也被用于确定土地的填埋适宜性。该方法被用作伊朗阿瓦兹郊区确定垃圾填埋场位置的案例研究。根据结果,交通网络以及住宅和商业区是对垃圾填埋场选址影响最大的因素,最终权重分别为 0.163 和 0.131。靠近道路和交通网络但远离敏感环境区域的地区最适合进行垃圾填埋。最后,选择了 11 个符合定义要求的场地作为 MSW 垃圾填埋的合适地点。该技术及其结果可为决策者在未来选择最佳垃圾填埋场提供适当的指导。根据每个地区的重要性,该方法可以纳入其他因素和标准。