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Measurement of Water Productivity in Seasonal Floodplain Beel Area

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  • Hossain, Istiaque
  • Alam, Md. Mahmudul

    (Universiti Utara Malaysia)

  • Siwar, Chamhuri
  • Bin Mokhtar, Mazlin

Abstract

Water scarcity is becoming a central issue in agricultural activities around the world. As agriculture is one of the major consumers of freshwater, more yield or output using same or less amount of water has become the global interest. Therefore water productivity (WP) is also considered as an indicator of agricultural productivity. Several research works have been conducted on WP values of different yields, tools and technologies to improve WP. Most of the studies on water productivity considered the crop productivity using limited water resource and searched for better technologies for improving crop water productivity. Researchers also concentrated on improving irrigation efficiency or water use efficiency at field level for irrigation through water management and for yielding more crops. But there is a research gap in assessing values of water productivity in aquatic ecosystems especially floodplain areas. A floodplain area remains dry and flooded in two different seasons. Thus, a combined valuation of aquatic resources and rice production in two different seasons are very important to measure the efficient usages of the lands. So, this study deals with how to measure annual aggregate water productivity for dry season and flood season in a floodplain beel area.

Suggested Citation

  • Hossain, Istiaque & Alam, Md. Mahmudul & Siwar, Chamhuri & Bin Mokhtar, Mazlin, 2019. "Measurement of Water Productivity in Seasonal Floodplain Beel Area," SocArXiv q3ayc, Center for Open Science.
  • Handle: RePEc:osf:socarx:q3ayc
    DOI: 10.31219/osf.io/q3ayc
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    References listed on IDEAS

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    1. Molden, D., 1997. "Accounting for water use and productivity," IWMI Books, Reports H021374, International Water Management Institute.
    2. Barker, Randolph & Dawe, D. & Inocencio, A., 2003. "Economics of water productivity in managing water for agriculture," Book Chapters,, International Water Management Institute.
    3. Guera, L.C. & Bhuiyan, S.I. & Tuong, T.P. & Barker, R., 1998. "Producing More Rice with Less Water from Irrigated Systems," IRRI Discussion Papers 287568, International Rice Research Institute (IRRI).
    4. Renwick, Mary. E., 2001. "Valuing water in irrigated agriculture and reservoir fisheries: A multiple-use irrigation system in Sri Lanka," IWMI Research Reports H028213, International Water Management Institute.
    5. Dugan, Patrick & Dey, Madan M. & Sugunan, V.V., 2006. "Fisheries and water productivity in tropical river basins: Enhancing food security and livelihoods by managing water for fish," Agricultural Water Management, Elsevier, vol. 80(1-3), pages 262-275, February.
    6. Pearce, David, 1993. "Natural resources, growth and development : Natural resources, growth and development: Economics, Ecology and Resource Scarcity. Clement Tisdell, Praeger, New York, 1990. 186 pp," Ecological Economics, Elsevier, vol. 7(1), pages 78-79, February.
    7. 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.
    8. Rijsberman, Frank R., 2006. "Water scarcity: Fact or fiction?," Agricultural Water Management, Elsevier, vol. 80(1-3), pages 5-22, February.
    9. Bessembinder, J.J.E. & Leffelaar, P.A. & Dhindwal, A.S. & Ponsioen, T.C., 2005. "Which crop and which drop, and the scope for improvement of water productivity," Agricultural Water Management, Elsevier, vol. 73(2), pages 113-130, May.
    10. Bowen, W. T., 2003. "Water productivity and potato cultivation," IWMI Books, Reports H032645, International Water Management Institute.
    11. Molden, David J., 1997. "Accounting for water use and productivity," IWMI Books, International Water Management Institute, number 113623.
    12. Ian J. Bateman & Richard T. Carson & Brett Day & Michael Hanemann & Nick Hanley & Tannis Hett & Michael Jones-Lee & Graham Loomes, 2002. "Economic Valuation with Stated Preference Techniques," Books, Edward Elgar Publishing, number 2639.
    13. Cai, X. & Rosegrant, M. W., 2003. "World water productivity: current situation and future options," Book Chapters,, International Water Management Institute.
    14. Bouman, B. A.M., 2007. "A conceptual framework for the improvement of crop water productivity at different spatial scales," Agricultural Systems, Elsevier, vol. 93(1-3), pages 43-60, March.
    15. Renwick, Mary E., 2001. "Valuing water in irrigated agriculture and reservoir fisheries: A multiple-use irrigation system in Sri Lanka," IWMI Research Reports 44569, International Water Management Institute.
    16. Guerra, L. C. & Bhuiyan, S. I. & Tuong, T. P. & Barker, R., 1998. "Producing more rice with less water from irrigated systems," IWMI Books, Reports H023175, International Water Management Institute.
    17. 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.
    18. Cai, X. & Rosegrant, M. W., 2003. "World water productivity: current situation and future options," IWMI Books, Reports H032641, International Water Management Institute.
    19. Vazifedoust, M. & van Dam, J.C. & Feddes, R.A. & Feizi, M., 2008. "Increasing water productivity of irrigated crops under limited water supply at field scale," Agricultural Water Management, Elsevier, vol. 95(2), pages 89-102, February.
    20. 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.
    21. Steven A. Block, 1994. "A New View of Agricultural Productivity in Sub-Saharan Africa," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 76(3), pages 619-624.
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