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Input–output analysis of virtual water transfers: Case study of California and Illinois

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  • Mubako, Stanley
  • Lahiri, Sajal
  • Lant, Christopher

Abstract

Increasing pressures on water resources in the two economically important states of California (CA) and Illinois (IL) have created a need for critical information related to sustainable water use and management. This paper applies input–output (IO) analysis to evaluate water use and quantify virtual water transfers involving the two states. Results show that aquaculture requires the largest input of direct water per unit of economic output, followed by crops, power generation, livestock, mining, services, domestic, and industry. Low water use intensity industry and services sectors contributed the largest proportions of value added and employee compensation. In 2008, the two states were net virtual exporters, with CA exporting 1.3 times the net export volume of IL. More than 72% of virtual water exports for each state originated from the high total water use intensity but low value added crops sector, with irrigation and rainfall contributing 99% and 97% of the crop-related exports for CA and IL, respectively. Virtual water export volumes were 59% for CA and 71% for IL when compared to actual water use. These results highlight the need to consider water use efficiency and opportunity cost when managing water under scarcity conditions.

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  • Mubako, Stanley & Lahiri, Sajal & Lant, Christopher, 2013. "Input–output analysis of virtual water transfers: Case study of California and Illinois," Ecological Economics, Elsevier, vol. 93(C), pages 230-238.
  • Handle: RePEc:eee:ecolec:v:93:y:2013:i:c:p:230-238
    DOI: 10.1016/j.ecolecon.2013.06.005
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    1. Sporri, C. & Borsuk, M. & Peters, I. & Reichert, P., 2007. "The economic impacts of river rehabilitation: A regional Input-Output analysis," Ecological Economics, Elsevier, vol. 62(2), pages 341-351, April.
    2. Guan, Dabo & Hubacek, Klaus, 2007. "Assessment of regional trade and virtual water flows in China," Ecological Economics, Elsevier, vol. 61(1), pages 159-170, February.
    3. Aldaya, M.M. & Allan, J.A. & Hoekstra, A.Y., 2010. "Strategic importance of green water in international crop trade," Ecological Economics, Elsevier, vol. 69(4), pages 887-894, February.
    4. Zhang, Zhuoying & Yang, Hong & Shi, Minjun, 2011. "Analyses of water footprint of Beijing in an interregional input–output framework," Ecological Economics, Elsevier, vol. 70(12), pages 2494-2502.
    5. Novo, P. & Garrido, A. & Varela-Ortega, C., 2009. "Are virtual water "flows" in Spanish grain trade consistent with relative water scarcity?," Ecological Economics, Elsevier, vol. 68(5), pages 1454-1464, March.
    6. Chen, G.Q. & Chen, Z.M., 2011. "Greenhouse gas emissions and natural resources use by the world economy: Ecological input–output modeling," Ecological Modelling, Elsevier, vol. 222(14), pages 2362-2376.
    7. Duarte, Rosa & Sanchez-Choliz, Julio & Bielsa, Jorge, 2002. "Water use in the Spanish economy: an input-output approach," Ecological Economics, Elsevier, vol. 43(1), pages 71-85, November.
    8. Ukidwe, Nandan U. & Bakshi, Bhavik R., 2007. "Industrial and ecological cumulative exergy consumption of the United States via the 1997 input–output benchmark model," Energy, Elsevier, vol. 32(9), pages 1560-1592.
    9. Kumiko Kondo, 2005. "Economic analysis of water resources in Japan: using factor decomposition analysis based on input-output tables," Environmental Economics and Policy Studies, Springer;Society for Environmental Economics and Policy Studies - SEEPS, vol. 7(2), pages 109-129, June.
    10. Ferng, Jiun-Jiun, 2001. "Using composition of land multiplier to estimate ecological footprints associated with production activity," Ecological Economics, Elsevier, vol. 37(2), pages 159-172, May.
    11. Hubacek, Klaus & Giljum, Stefan, 2003. "Applying physical input-output analysis to estimate land appropriation (ecological footprints) of international trade activities," Ecological Economics, Elsevier, vol. 44(1), pages 137-151, February.
    12. Jesper Munksgaard & Mette Wier & Manfred Lenzen & Christopher Dey, 2005. "Using Input‐Output Analysis to Measure the Environmental Pressure of Consumption at Different Spatial Levels," Journal of Industrial Ecology, Yale University, vol. 9(1‐2), pages 169-185, January.
    13. Erik Dietzenbacher & Esther Velazquez, 2007. "Analysing Andalusian Virtual Water Trade in an Input-Output Framework," Regional Studies, Taylor & Francis Journals, vol. 41(2), pages 185-196.
    14. Wiedmann, Thomas, 2009. "A review of recent multi-region input-output models used for consumption-based emission and resource accounting," Ecological Economics, Elsevier, vol. 69(2), pages 211-222, December.
    15. Wiedmann, Thomas & Lenzen, Manfred & Turner, Karen & Barrett, John, 2007. "Examining the global environmental impact of regional consumption activities -- Part 2: Review of input-output models for the assessment of environmental impacts embodied in trade," Ecological Economics, Elsevier, vol. 61(1), pages 15-26, February.
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    9. Sun, J.X. & Yin, Y.L. & Sun, S.K. & Wang, Y.B. & Yu, X. & Yan, K., 2021. "Review on research status of virtual water: The perspective of accounting methods, impact assessment and limitations," Agricultural Water Management, Elsevier, vol. 243(C).
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