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The global value of water in agriculture

Author

Listed:
  • D’Odorico, Paolo
  • Chiarelli, Davide Danilo
  • Rosa, Lorenzo
  • Bini, Alfredo
  • Zilberman, David
  • Rulli, Maria Cristina

Abstract

Major environmental functions and human needs critically depend on water. In regions of the world affected by water scarcity economic activities can be constrained by water availability, leading to competition both among sectors and between human uses and environmental needs. While the commodification of water remains a contentious political issue, the valuation of this natural resource is sometime viewed as a strategy to avoid water waste. Likewise, water markets have been invoked as a mechanism to allocate water to economically most efficient uses. The value of water, however, remains difficult to estimate because water markets and market prices exist only in few regions of the world. Despite numerous attempts at estimating the value of water in the absence of markets (i.e., the "shadow price"), a global spatially explicit assessment of the value of water in agriculture is still missing. Here we propose a data-parsimonious biophysical framework to determine the value generated by water in irrigated agriculture and highlight its global spatiotemporal patterns. We find that in much of the world the actual crop distribution does not maximize agricultural water value.

Suggested Citation

  • D’Odorico, Paolo & Chiarelli, Davide Danilo & Rosa, Lorenzo & Bini, Alfredo & Zilberman, David & Rulli, Maria Cristina, 2020. "The global value of water in agriculture," Department of Agricultural & Resource Economics, UC Berkeley, Working Paper Series qt2n50h0jq, Department of Agricultural & Resource Economics, UC Berkeley.
  • Handle: RePEc:cdl:agrebk:qt2n50h0jq
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    Cited by:

    1. Guangming Yang & Guofang Gong & Qingqing Gui, 2022. "Exploring the Spatial Network Structure of Agricultural Water Use Efficiency in China: A Social Network Perspective," Sustainability, MDPI, vol. 14(5), pages 1-22, February.
    2. Zihan Guo & Ni Wang & Xiaolian Mao & Xinyue Ke & Shaojiang Luo & Long Yu, 2022. "Benefit Analysis of Economic and Social Water Supply in Xi’an Based on the Emergy Method," Sustainability, MDPI, vol. 14(9), pages 1-20, April.
    3. Chenjun Zheng & Otto Spijkers, 2021. "Priority of Uses in International Water Law," Sustainability, MDPI, vol. 13(3), pages 1-15, February.
    4. Alcon, Francisco & Zabala, José A. & Martínez-García, Victor & Albaladejo, José A. & López-Becerra, Erasmo I. & de-Miguel, María D. & Martínez-Paz, José M., 2022. "The social wellbeing of irrigation water. A demand-side integrated valuation in a Mediterranean agroecosystem," Agricultural Water Management, Elsevier, vol. 262(C).
    5. Tatlhego, Mokganedi & Chiarelli, Davide Danilo & Rulli, Maria Cristina & D’Odorico, Paolo, 2022. "The value generated by irrigation in the command areas of new agricultural dams in Africa," Agricultural Water Management, Elsevier, vol. 264(C).
    6. Jiaxing Pang & Xue Li & Xiang Li & Ting Yang & Ya Li & Xingpeng Chen, 2022. "Analysis of Regional Differences and Factors Influencing the Intensity of Agricultural Water in China," Agriculture, MDPI, vol. 12(4), pages 1-20, April.
    7. Fanzo, Jessica & Haddad, Lawrence & Schneider, Kate R. & Béné, Christophe & Covic, Namukolo M. & Guarin, Alejandro & Herforth, Anna W. & Herrero, Mario & Sumaila, U. Rashid & Aburto, Nancy J. & Amuyun, 2021. "Viewpoint: Rigorous monitoring is necessary to guide food system transformation in the countdown to the 2030 global goals," Food Policy, Elsevier, vol. 104(C).
    8. repec:zib:zbesmy:v:3:y:2022:i:2:p:95-103 is not listed on IDEAS
    9. Mitter, Hermine & Schmid, Erwin, 2021. "Informing groundwater policies in semi-arid agricultural production regions under stochastic climate scenario impacts," Ecological Economics, Elsevier, vol. 180(C).
    10. Wei, Jun & Cui, Yuanlai & Luo, Yufeng, 2023. "Rice growth period detection and paddy field evapotranspiration estimation based on an improved SEBAL model: Considering the applicable conditions of the advection equation," Agricultural Water Management, Elsevier, vol. 278(C).

    More about this item

    Keywords

    Economics; Applied Economics; Clean Water and Sanitation; Zero Hunger; Agricultural Irrigation; Conservation of Natural Resources; Crops; Agricultural; Water; Water Supply; water value; water productivity; irrigation;
    All these keywords.

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