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For decades, the positioning of the sites of the extraction of materials was based, on the economic profit, (existence and abundance of the deposit, proximity of the basins of consumption) and the social aspect (number of jobs created), the environmental dimension was little or not taken into account. However, because of the negative impacts of this industry, more and more felt by the population, and in addition to the awareness of the protection of the environment, decision-makers have been forced to rethink their decision-making policies. Thus, it has become necessary to adopt sustainable management of this sector, taking into account environmental, social and economic issues. In this context, the presented work proposed the mathematical method of decision-making MACBETH (Measuring Attractiveness by a Categorical Based Evaluation Technique). This approach is based on economic, social, and environmental criteria, which have been chosen concerning sustainable development issues. The selection of options reflects the geographical distribution as well as the typology of materials at the level of the study area. Then, the attractiveness of the options on each weighted criterion was evaluated following the preferences presented by the decision-makers and finally their aggregation by the MACBETH tool. The implementation of this tool made it possible to evaluate the exploitation of existing quarries at the study area level and to predict the optimization of future locations.
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Tom
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21--30
Opis fizyczny
Bibliogr. 19 poz., rys., tab.
Twórcy
autor
- Faculty of Science and Technology of Settat, Laboratory of Biochemistry, Neurosciences, Natural Resources and Environment, Hassan First University of Settat, Road to Casablanca Km 3.5, 26000, Settat, Morocco
autor
- Laboratory of Modeling, Optimization of Industrial and Logistics Systems, National School of Applied Sciences, Abdelmalek Essaadi University, Tetouan, Morocco
autor
- Faculty of Science and Technology of Settat, Laboratory of Biochemistry, Neurosciences, Natural Resources and Environment, Hassan First University of Settat, Road to Casablanca Km 3.5, 26000, Settat, Morocco
Bibliografia
- 1. Amellal I., Bouzidi, A. 2016. Industrial locationuse of a tool for multi-criteria decision and GIS: An application to the Chaouia-Ouardigha region in Morocco. International Journal of Innovation and Applied Studies, 14(1), 243.
- 2. Amellal, I., Bouzidi, A. 2016. Logistics and territorial development: use of a model of multi-criteria decision making for evaluating the relevance of industrial and logistics positioning case of ChaouiaOuardigha region Morocco.
- 3. Bana e Costa, C.A., Vansnick, J.C. 1999. Preference relations and MCDM. In Multicriteria Decision Making. Springer, Boston, MA, 99-121.
- 4. Bana e Costa, C.A., Chagas, M.P. 2004. A career choice problem: An example of how to use MACBETH to build a quantitative value model based on qualitative value judgments. European journal of operational research, 153(2), 323-331.
- 5. Bana e Costa, C.A., De Corte, J.M., Vansnick, J.C. 2016. On the mathematical foundations of MACBETH. In Multiple criteria decision analysis. Springer, New York, NY, 421-463.
- 6. Belton, V., Stewart, T. 2002. Multiple criteria decision analysis: an integrated approach. Springer Science & Business Media.
- 7. Darkaoui, A., Ouahman, B. 2019. Environmental impacts of quarrying in the oases of Ouarzazate. In Oasis ecosystems transformations and development prospects.
- 8. Dayo-Olupona, O., Genc, B., Onifade, M. 2020. Technology adoption in mining: A multi-criteria method to select emerging technology in surface mines. Resources Policy, 69, 101879.
- 9. El Hassani, A. 1994. Tectonics of the north-western Meseta. Bulletin de l’Institut Scientifique, Rabat, 18, 107–124.
- 10. Evrard, D. 2016. Integrated approach for a multicriteria evaluation of the best available techniques (Doctoral dissertation, University of Lyon).
- 11. Faria, P.A., Ferreira, F.A., Jalali, M.S., Bento, P., António, N.J. 2018. Combining cognitive mapping and MCDA for improving quality of life in urban areas. Cities, 78, 116-127.
- 12. Hamdadou, D., Labed, K., Benyettou, A. 2007. An interactive multi-criteria decision support system in spatial planning: Sorting approach, integral of CHOQUET and GIS. In Proceedings of the SETIT 2007 Colloquium, 1-10.
- 13. Hattabi, S., Amellal, I., Bouzidi, A. 2020. Analysis of sustainable development factors in quarrying: Case of the province of Settat, Morocco. International Journal of Innovation and Applied Studies, 29(3), 465-475.
- 14. Mena, S.B. 2000. Introduction to multi-criteria decision support methods. BASE.
- 15. Michard A., Sadiqi O., Chalouane A., et al. 2008. Continental Evolution: The Geology of Morocco. Structure, Stratigraphy, and Tectonics of the AfricaAtlantic-Mediterranean Triple Junction. Advances in geographic information science. Springer, 438.
- 16. Tavares, G., Zsigraiová, Z., Semiao, V. 2011. Multicriteria GIS-based siting of an incineration plant for municipal solid waste. Waste Management, 31(9-10), 1960-1972.
- 17. Von Winterfeldt, D., Edwards, W. 2007. Defining a decision-analytic structure.
- 18. Yelkouni, M., Ngo-Samnick, E.L. 2019. Environmental assessments of development policies and projects. Institut de la Francophonie pour le développement durable.
- 19. Younsi, F.Z., Hamdadou, D., Beldjilali, B. 2009. Proposal of an Interactive Spatial Decision Support System: Remote Sensing, GIS, and Multi-Criteria Analysis. In CIIA.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-8c693ea3-656b-4ea6-b331-faff38de8bc2