Quantifying economic-social-environmental trade-offs and synergies of water-supply constraints: An application to the capital region of China

被引:67
作者
Zhao, Dandan [1 ,2 ]
Liu, Junguo [2 ]
Sun, Laixiang [3 ,4 ,5 ]
Ye, Bin [2 ]
Hubacek, Klaus [6 ]
Feng, Kuishuang [3 ]
Varis, Olli [1 ]
机构
[1] Aalto Univ, Dept Built Environm, Water & Dev Res Grp, POB 15200, Espoo 00076, Finland
[2] Southern Univ Sci & Technol, Sch Environm Sci & Engn, Shenzhen 518055, Peoples R China
[3] Univ Maryland, Dept Geog Sci, College Pk, MD 20742 USA
[4] Univ London, Sch Finance & Management, SOAS, London, England
[5] Shandong Univ, Inst Blue & Green Dev, Weihai Inst Interdisciplinary Res, Weihai, Peoples R China
[6] Univ Groningen, Energy & Sustainabil Res Inst ESRIG, Integrated Res Energy Environm & Soc IREES, Groningen, Netherlands
基金
中国国家自然科学基金;
关键词
Industrial transition; trade-offs; synergy; supply-constrained multi-regional; input-output (mixed MRIO) model; multi-criteria decision analysis (MCDA); sustainable development goals; ECOLOGICAL NETWORK ANALYSIS; SUSTAINABILITY ASSESSMENT; ENERGY-WATER; SPATIOTEMPORAL ANALYSIS; URBAN AGGLOMERATION; DECISION-MAKING; FOOTPRINT; IMPACTS; NEXUS; SCARCITY;
D O I
10.1016/j.watres.2021.116986
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Sustainable water management is one of the sustainable development goals (SDGs) and is characterized by a high level of interdependencies with other SDGs from regional to global scales. Many water assessment studies are restricted to silo thinking, mostly focusing on water-related consequences, while lacking a quantification of trade-offs and synergies of economic, social, and environmental dimensions. To fill this knowledge gap, we propose a "nexus" approach that integrates a water supply constrained multi-regional input-output (mixed MRIO) model, scenario analysis, and multi-criteria decision analysis (MCDA) to quantify the trade-offs and synergies at the sectoral level for the capital region of China, i.e. the Beijing-Tianjin-Hebei urban agglomeration. A total of 120 industrial transition scenarios including nine major industries with high water-intensities and water consumption under current development pathways were developed to facilitate the trade-off and synergy analysis between economic loss, social goals (here, the number of jobs) and environmental protection (with grey water footprint representing water pollution) triggered by water conservation measures. Our simulation results show that an imposition of a tolerable water constraint (a necessary water consumption reduction for regional water stress level to move from severe to moderate) in the region would result in an average economic loss of 68.4 (+/- 16.0) billion Yuan (1 yuan approximate to 0.158 USD$ in 2012), or 1.3 % of regional GDP, a loss of 1.94 (+/- 0.18) million jobs (i.e. 3.5 % of the work force) and a reduction of 1.27 (+/- 0.40) billion m(3) or about 2.2% of the regional grey water footprint. A tolerable water rationing in water-intensive sectors such as Agriculture, Food and tobacco processing, Electricity and heating power production and Chemicals would result in the lowest economic and job losses and the largest environmental benefits. Based on MCDA, we selected the 10 best scenarios with regard to their economic, social and environmental performances as references for guiding future water management and suggested industrial transition policies. This integrated approach could be a powerful policy support tool for 1) assessing trade-offs and synergies among multiple criteria and across multiple region-sectors under resource constraints; 2) quantifying the short-term supply-chain effects of different containment measures, and 3) facilitating more insightful evaluation of SDGs at the regional level so as to determine priorities for local governments and practitioners to achieve SDGs. (C) 2021 The Authors. Published by Elsevier Ltd.
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页数:14
相关论文
共 94 条
[1]   Sustainability assessment of a hybrid energy system [J].
Afgan, Nain H. ;
Carvalho, Maria G. .
ENERGY POLICY, 2008, 36 (08) :2903-2910
[2]  
Allan J.A., 1996, REV EUR COMMUN INT E, V5, P107, DOI DOI 10.1111/J.1467-9388.1996.TB00258.X
[3]   GLOBAL IMPACTS OF THE AUTOMOTIVE SUPPLY CHAIN DISRUPTION FOLLOWING THE JAPANESE EARTHQUAKE OF 2011 [J].
Arto, Inaki ;
Andreoni, Valeria ;
Rueda Cantuche, Jose Manuel .
ECONOMIC SYSTEMS RESEARCH, 2015, 27 (03) :306-323
[4]   Sustainability assessment tool for the decision making in selection of energy system-Bosnian case [J].
Begic, Fajik ;
Afgan, Nalm H. .
ENERGY, 2007, 32 (10) :1979-1985
[5]  
Bizikova L., 2013, WATER ENERGY FOOD SE
[6]   Tension of Agricultural Land and Water Use in China's Trade: Tele-Connections, Hidden Drivers and Potential Solutions [J].
Cai, Beiming ;
Hubacek, Klaus ;
Feng, Kuishuang ;
Zhang, Wei ;
Wang, Feng ;
Liu, Yu .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2020, 54 (09) :5365-5375
[7]   Impacts of industrial transition on water use intensity and energy-related carbon intensity in China: A spatio-temporal analysis during 2003-2012 [J].
Cai, Jialiang ;
Yin, He ;
Varis, Olli .
APPLIED ENERGY, 2016, 183 :1112-1122
[8]   China's water resources vulnerability: A spatio-temporal analysis during 2003-2013 [J].
Cai, Jialiang ;
Varis, Li ;
Yin, He .
JOURNAL OF CLEANER PRODUCTION, 2017, 142 :2901-2910
[9]   The land-water nexus of biofuel production in Brazil: Analysis of synergies and trade-offs using a multiregional input-output model [J].
Castillo, Raul Munoz ;
Feng, Kuishuang ;
Sun, Laixiang ;
Guilhoto, Joaquim ;
Pfister, Stephan ;
Miralles-Wilhelm, Fernando ;
Hubacek, Klaus .
JOURNAL OF CLEANER PRODUCTION, 2019, 214 :52-61
[10]   Changing global cropping patterns to minimize national blue water scarcity [J].
Chouchane, Hatem ;
Krol, Maarten S. ;
Hoekstra, Arjen Y. .
HYDROLOGY AND EARTH SYSTEM SCIENCES, 2020, 24 (06) :3015-3031