A decision-making framework for landfill site selection in Saudi Arabia using explainable artificial intelligence and multi-criteria analysis
Author:
Publisher
Elsevier BV
Subject
Plant Science,Soil Science,General Environmental Science
Reference61 articles.
1. Identification of the groundwater potential recharge zones using MCDM models: full consistency method (FUCOM), best worst method (BWM) and analytic hierarchy process (AHP);Akbari;Water Resour. Manag.,2021
2. Performance indicators for municipal solid waste management systems in Saudi Arabia: selection and ranking using fuzzy AHP and PROMETHEE II. Arab;AlHumid;J. Geosci.,2019
3. Suitability analysis for municipal landfill site selection using fuzzy analytic hierarchy process and geospatial technique;Ali;Environ. Earth Sci.,2020
4. A novel ensemble bivariate statistical evidential belief function with knowledge-based analytical hierarchy process and multivariate statistical logistic regression for landslide susceptibility mapping;Althuwaynee;CATENA,2014
5. Analysis of municipal solid waste collection using GIS and multi-criteria decision aid;Amal;Appl. Geomat.,2020
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