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Exploring the nexus between water saving and energy conservation: Insights from industry sector during the 12th Five-Year Plan period in China

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  • Gu, Alun
  • Teng, Fei
  • Lv, Zhiqiang

Abstract

China׳s 12th Five-Year Plan, released in March 2011, specifies water management targets in addition to energy and carbon intensity targets. Energy and water resources are becoming the major bottlenecks restricting sustainable development in China. Energy and water are interconnected and complementary; however, macroenergy policies do not consider the impact on water resources, while water related policies do not consider the impact on energy consumption. In this paper, an energy-water evaluation methodology based on an input–output model was introduced, and correlation between energy and water supply sectors was established by this methodology. The correlation coefficients for the energy-water nexus, allowing the water savings associated with energy saving policies in China to be estimated, particularly for key industrial sectors during the 12th Five-Year Plan period were provided. These results indicate that by achieving the energy saving targets in the end of the 12th Five-Year Plan, progress will also be made toward achieving the water use targets. It is believed that targets for the synergies between energy savings and water conservation should be improved. The effect of water conservation resulting from energy savings varies greatly in different sectors, and to maximize the synergies, energy and water conservation technologies should be promoted in key industrial sectors.

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  • Gu, Alun & Teng, Fei & Lv, Zhiqiang, 2016. "Exploring the nexus between water saving and energy conservation: Insights from industry sector during the 12th Five-Year Plan period in China," Renewable and Sustainable Energy Reviews, Elsevier, vol. 59(C), pages 28-38.
  • Handle: RePEc:eee:rensus:v:59:y:2016:i:c:p:28-38
    DOI: 10.1016/j.rser.2015.12.285
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    as
    1. Elena, Galan-del-Castillo & Esther, Velazquez, 2010. "From water to energy: The virtual water content and water footprint of biofuel consumption in Spain," Energy Policy, Elsevier, vol. 38(3), pages 1345-1352, March.
    2. Mun-Heng Toh, 1998. "The RAS Approach in Updating Input-Output Matrices: An Instrumental Variable Interpretation and Analysis of Structural Change," Economic Systems Research, Taylor & Francis Journals, vol. 10(1), pages 63-78.
    3. Hafeez, Mohsin & Bundschuh, Jochen & Mushtaq, Shahbaz, 2014. "Exploring synergies and tradeoffs: Energy, water, and economic implications of water reuse in rice-based irrigation systems," Applied Energy, Elsevier, vol. 114(C), pages 889-900.
    4. Lars Gårn Hansen, 1996. "Water and Energy Price Impacts on Residential Water Demand in Copenhagen," Land Economics, University of Wisconsin Press, vol. 72(1), pages 66-79.
    5. Li, Xin & Feng, Kuishuang & Siu, Yim Ling & Hubacek, Klaus, 2012. "Energy-water nexus of wind power in China: The balancing act between CO2 emissions and water consumption," Energy Policy, Elsevier, vol. 45(C), pages 440-448.
    6. Dubreuil, Aurelie & Assoumou, Edi & Bouckaert, Stephanie & Selosse, Sandrine & Maı¨zi, Nadia, 2013. "Water modeling in an energy optimization framework – The water-scarce middle east context," Applied Energy, Elsevier, vol. 101(C), pages 268-279.
    7. Karen J. Horowitz & Mark A. Planting, 2006. "Concepts and Methods of the U.S. Input-Output Accounts," BEA Papers 0066, Bureau of Economic Analysis.
    8. Scott, Christopher A. & Pierce, Suzanne A. & Pasqualetti, Martin J. & Jones, Alice L. & Montz, Burrell E. & Hoover, Joseph H., 2011. "Policy and institutional dimensions of the water-energy nexus," Energy Policy, Elsevier, vol. 39(10), pages 6622-6630, October.
    9. Siddiqi, Afreen & Anadon, Laura Diaz, 2011. "The water-energy nexus in Middle East and North Africa," Energy Policy, Elsevier, vol. 39(8), pages 4529-4540, August.
    10. Rio Carrillo, Anna Mercè & Frei, Christoph, 2009. "Water: A key resource in energy production," Energy Policy, Elsevier, vol. 37(11), pages 4303-4312, November.
    11. Bazilian, Morgan & Rogner, Holger & Howells, Mark & Hermann, Sebastian & Arent, Douglas & Gielen, Dolf & Steduto, Pasquale & Mueller, Alexander & Komor, Paul & Tol, Richard S.J. & Yumkella, Kandeh K., 2011. "Considering the energy, water and food nexus: Towards an integrated modelling approach," Energy Policy, Elsevier, vol. 39(12), pages 7896-7906.
    12. Liang, Sai & Zhang, Tianzhu, 2011. "Interactions of energy technology development and new energy exploitation with water technology development in China," Energy, Elsevier, vol. 36(12), pages 6960-6966.
    13. Zhang, Chao & Anadon, Laura Diaz, 2014. "A multi-regional input–output analysis of domestic virtual water trade and provincial water footprint in China," Ecological Economics, Elsevier, vol. 100(C), pages 159-172.
    14. Ozkan, Burhan & Akcaoz, Handan & Fert, Cemal, 2004. "Energy input–output analysis in Turkish agriculture," Renewable Energy, Elsevier, vol. 29(1), pages 39-51.
    Full references (including those not matched with items on IDEAS)

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