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The evolution of symbiotic innovation, water, and agricultural supply chains

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  • David Zilberman
  • Alice Huang
  • Lanie Goldberg
  • Thomas Reardon

Abstract

The water literature has mainly investigated the diversion and distribution of water from the source to the end users or the utilization of water at the farm level in crop production. This paper presents a supply chain perspective that links the innovation supply chain of water delivery and irrigation with the complete water supply chain to the crop and the crop supply chains. These supply chains are symbiotic. Changes in the demand for crops, agronomic technology, and knowledge about water will modify the water infrastructure, irrigation technology, land‐use and crop production patterns, and the pricing of water and related commodities. The parameters that guide investment in water innovation and the design of the water supply chain depend on political, economic, and technological considerations that have coevolved over time with water and crop systems. Evidence from California and elsewhere supports the findings of the paper.

Suggested Citation

  • David Zilberman & Alice Huang & Lanie Goldberg & Thomas Reardon, 2023. "The evolution of symbiotic innovation, water, and agricultural supply chains," Applied Economic Perspectives and Policy, John Wiley & Sons, vol. 45(3), pages 1592-1603, September.
  • Handle: RePEc:wly:apecpp:v:45:y:2023:i:3:p:1592-1603
    DOI: 10.1002/aepp.13342
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    1. Tsur, Yacov & Dinar, Ariel, 1997. "The Relative Efficiency and Implementation Costs of Alternative Methods for Pricing Irrigation Water," The World Bank Economic Review, World Bank, vol. 11(2), pages 243-262, May.
    2. Sunding, David & Zilberman, David, 2001. "The agricultural innovation process: Research and technology adoption in a changing agricultural sector," Handbook of Agricultural Economics, in: B. L. Gardner & G. C. Rausser (ed.), Handbook of Agricultural Economics, edition 1, volume 1, chapter 4, pages 207-261, Elsevier.
    3. Schoengold, Karina & Zilberman, David, 2007. "The Economics of Water, Irrigation, and Development," Handbook of Agricultural Economics, in: Robert Evenson & Prabhu Pingali (ed.), Handbook of Agricultural Economics, edition 1, volume 3, chapter 58, pages 2933-2977, Elsevier.
    4. Rebecca Taylor & David Zilberman, 2017. "Diffusion of Drip Irrigation: The Case of California," Applied Economic Perspectives and Policy, Agricultural and Applied Economics Association, vol. 39(1), pages 16-40.
    5. Margriet F. Caswell & David Zilberman, 1986. "The Effects of Well Depth and Land Quality on the Choice of Irrigation Technology," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 68(4), pages 798-811.
    6. Xabadia, Angels & Goetz, Renan U. & Zilberman, David, 2006. "Control of accumulating stock pollution by heterogeneous producers," Journal of Economic Dynamics and Control, Elsevier, vol. 30(7), pages 1105-1130, July.
    7. Hanan G. Jacoby & Rinku Murgai & Saeed Ur Rehman, 2004. "Monopoly Power and Distribution in Fragmented Markets: The Case of Groundwater," The Review of Economic Studies, Review of Economic Studies Ltd, vol. 71(3), pages 783-808.
    8. D. Zilberman & L. Lipper, 1999. "The Economics of Water Use," Chapters, in: Jeroen C.J.M. van den Bergh (ed.), Handbook of Environmental and Resource Economics, chapter 10, Edward Elgar Publishing.
    9. Margarita Genius & Phoebe Koundouri & Céline Nauges & Vangelis Tzouvelekas, 2014. "Information Transmission in Irrigation Technology Adoption and Diffusion: Social Learning, Extension Services, and Spatial Effects," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 96(1), pages 328-344.
    10. Reardon, Thomas & Barrett, Christopher B. & Berdegué, Julio A. & Swinnen, Johan F.M., 2009. "Agrifood Industry Transformation and Small Farmers in Developing Countries," World Development, Elsevier, vol. 37(11), pages 1717-1727, November.
    11. Thomas Reardon & Spencer Henson & Julio Berdegué, 2007. "'Proactive fast-tracking' diffusion of supermarkets in developing countries: implications for market institutions and trade," Journal of Economic Geography, Oxford University Press, vol. 7(4), pages 399-431, July.
    12. Chakravorty, Ujjayant & Hochman, Eithan & Umetsu, Chieko & Zilberman, David, 2009. "Water allocation under distribution losses: Comparing alternative institutions," Journal of Economic Dynamics and Control, Elsevier, vol. 33(2), pages 463-476, February.
    13. Johansson, Robert C., 2000. "Pricing irrigation water : a literature survey," Policy Research Working Paper Series 2449, The World Bank.
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