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Water productivity in context: the experiences of Taiwan and the Philippines over the past half-century

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  • Barker, Randolph
  • Levine, G.

Abstract

As we enter an era of increasing water scarcity, there is a growing interest to find ways to capture and put water to more productive uses. Substantial increases in the productivity of water in agriculture are needed to meet the demands for food and ensure environmental security, and to satisfy the demands for non-agricultural uses. However, increasing water productivity in rice-dominated agriculture is a function of the irrigation infrastructure, advances in rice-plant breeding, and the physical, institutional and socioeconomic environments. This paper first describes the potential ways in which increased water productivity can be achieved in the context of rice production in Asia. It then illustrates the ways in which the differences in the environmental context affect the ability to increase water productivity, the approaches used and the incentives to do so. This is explained using two ‘case studies’ reflecting the experiences of Taiwan and the Philippines over the past half-century.

Suggested Citation

  • Barker, Randolph & Levine, G., 2012. "Water productivity in context: the experiences of Taiwan and the Philippines over the past half-century," IWMI Research Reports 158343, International Water Management Institute.
  • Handle: RePEc:ags:iwmirr:158343
    DOI: 10.22004/ag.econ.158343
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    References listed on IDEAS

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    1. Lam, Wai Fung, 1996. "Institutional design of public agencies and coproduction: A study of irrigation associations in Taiwan," World Development, Elsevier, vol. 24(6), pages 1039-1054, June.
    2. Araral Jr., Eduardo, 2009. "What Explains Collective Action in the Commons? Theory and Evidence from the Philippines," World Development, Elsevier, vol. 37(3), pages 687-697, March.
    3. Masako Fujiie & Yujiro Hayami & Masao Kikuchi, 2005. "The conditions of collective action for local commons management: the case of irrigation in the Philippines," Agricultural Economics, International Association of Agricultural Economists, vol. 33(2), pages 179-189, September.
    4. Zwart, Sander J. & Bastiaanssen, Wim G. M., 2004. "Review of measured crop water productivity values for irrigated wheat, rice, cotton and maize," Agricultural Water Management, Elsevier, vol. 69(2), pages 115-133, September.
    5. Huang, Qiuqiong & Rozelle, Scott & Msangi, Siwa & Wang, Jinxia & Huang, Jikun, 2008. "Water management reform and the choice of contractual form in China," Environment and Development Economics, Cambridge University Press, vol. 13(2), pages 171-200, April.
    6. Mukherji, Aditi & Fuleki, Blanka & Shah, Tushaar & Suhardiman, Diana & Giordano, Mark & Weligamage, Parakrama, 2010. "Irrigation reform in Asia: a review of 108 cases of irrigation management transfer," IWMI Research Reports H042851, International Water Management Institute.
    7. Kijne, Jacob W. & Barker, Randolph & Molden, David J. (ed.), 2003. "Water productivity in agriculture: limits and opportunities for improvement," IWMI Books, International Water Management Institute, number 138054.
    8. Barker, Randolph & Molle, François, 2004. "Evolution of irrigation in South and Southeast Asia," IWMI Research Reports H035439, International Water Management Institute.
    9. Kikuchi, Masao & Hayami, Yujiro, 1978. "Agricultural Growth against a Land Resource Constraint: A Comparative History of Japan, Taiwan, Korea, and the Philippines," The Journal of Economic History, Cambridge University Press, vol. 38(4), pages 839-864, December.
    10. Kijne, J. W. & Barker, R. & Molden. D., 2003. "Water productivity in agriculture: limits and opportunities for improvement," IWMI Books, Reports H032631, International Water Management Institute.
    11. Barker, R. & Levine, G., 2012. "Water productivity in context: the experiences of Taiwan and the Philippines over the past half-century," IWMI Research Reports H045273, International Water Management Institute.
    12. Hayami, Yujiro & Kikuchi, Masao, 1978. "Investment Inducements to Public Infrastructure: Irrigation in the Philippines," The Review of Economics and Statistics, MIT Press, vol. 60(1), pages 70-77, February.
    13. Molden, D. & Murray-Rust, H. & Sakthivadivel, R. & Makin, I., 2003. "A water-productivity framework for understanding and action," IWMI Books, Reports H032632, International Water Management Institute.
    14. Yujiro Hayami & Cristina C. David & Piedad Flores‐Moya & Masao Kikuchi, 1978. "Agricultural Growth Against A Land Resource Constraint: The Philippine Experience: Reply," Australian Journal of Agricultural and Resource Economics, Australian Agricultural and Resource Economics Society, vol. 22(2-3), pages 210-210, 08-12.
    15. Boisvert, Richard N. & Chang, Hung-Hao, 2006. "Multifunctional agricultural policy, reduced domestic support and liberalized trade: An empirical assessment for Taiwanese rice," IWMI Research Reports 91820, International Water Management Institute.
    16. Arsenio M. Balisacan & Leocadio S. Sebastian, 2006. "Securing Rice, Reducing Poverty: Challenges and Policy Directions," Books on Agricultural Research and Development, Southeast Asian Regional Center for Graduate Study and Research in Agriculture (SEARCA), number 2006:38.
    17. Boisvert, R. N. & Chang, H. H., 2006. "Multifunctional agricultural policy, reduced domestic support and liberalized trade: an empirical assessment for Taiwanese rice," IWMI Research Reports H040020, International Water Management Institute.
    18. Huang, Qiuqiong & Rozelle, Scott & Msangi, Siwa & Huang, Jikun & Wang, Jinxia, 2003. "Water Management Reform And The Choice Of Contractual Form In Rural China," 2003 Annual meeting, July 27-30, Montreal, Canada 22131, American Agricultural Economics Association (New Name 2008: Agricultural and Applied Economics Association).
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    Cited by:

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    2. Alauddin, Mohammad & Sharma, Bharat R., 2013. "Inter-district rice water productivity differences in Bangladesh: An empirical exploration and implications," Ecological Economics, Elsevier, vol. 93(C), pages 210-218.
    3. Silva, João Vasco & Reidsma, Pytrik & Lourdes Velasco, Ma. & Laborte, Alice G. & van Ittersum, Martin K., 2018. "Intensification of rice-based farming systems in Central Luzon, Philippines: Constraints at field, farm and regional levels," Agricultural Systems, Elsevier, vol. 165(C), pages 55-70.

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