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Title Comprehensive evaluation and scenario simulation for the water resources carrying capacity in Xi'an city, China
ID_Doc 67028
Authors Yang, ZY; Song, JX; Cheng, DD; Xia, J; Li, Q; Ahamad, MI
Title Comprehensive evaluation and scenario simulation for the water resources carrying capacity in Xi'an city, China
Year 2019
Published
DOI 10.1016/j.jenvman.2018.09.085
Abstract The quantity and quality of water resources are of great importance in maintaining urban socio-economic development. Accordingly, substantial research has been conducted on the concept of the water resources carrying capacity (WRCC). In this study, analytic hierarchy process (AHP) and system dynamics (SD) models were combined to construct a multi-criteria evaluation system of the WRCC and a socio-economic/water resources SD model for Xi'an. The developmental trends of the society, economy, water supply/demand, and wastewater discharge were obtained from 2015 to 2020 using five scenarios designed for distinct purposes; these scenarios and trends were comprehensively evaluated using a combination of qualitative and quantitative analyses. The results indicated that the WRCC (0.32 in 2020) in Xi'an will shift from a normal to a poor state if the current social development pattern is maintained; therefore, we conclude that the socio-economic development of Xi'an is unsustainable. However, under a comprehensive scheme, the WRCC index (0.64 in 2020) will increase by 48% compared with the WRCC index under a business-as-usual scenario. Further, some practical suggestions, including the promotion of industrial reforms and the improvement of water-use efficiency and recycling policies, were provided for improving the regional WRCC.
Author Keywords Water resources carrying capacity; Analytic hierarchy process; SD model; Scenario analysis; Water management
Index Keywords Index Keywords
Document Type Other
Open Access Open Access
Source Science Citation Index Expanded (SCI-EXPANDED); Social Science Citation Index (SSCI)
EID WOS:000452582600022
WoS Category Environmental Sciences
Research Area Environmental Sciences & Ecology
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