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Multiple Water Use Protocols in Integrated Farming System for Enhancing Productivity

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  • U. Behera
  • P. Panigrahi
  • A. Sarangi

Abstract

Agriculture is the largest consumer of water in world. Due to demand of water for industrial and drinking purposes, the share of available water resources in agriculture sector is reducing substantially in near future. However, the food, fodder, fuel, and fibre production for satisfying the demands of enhanced population requires more water. In this scenario, increasing water productivity through diversified farming system has been identified as one of the viable options. Diversified farming, otherwise also called integrated farming system (IFS), represents integration of various enterprises such as cropping systems, horticulture, animal husbandry, fishery, agro-forestry, apiary etc. for optimal utilization of farm resources besides water. Integrated farming, a judicious mix of cropping systems suited to given agro-climatic conditions and socio-economic status of the farmers, shall be able to generate additional employment and income for the small and marginal farmers under both rain-fed and irrigated environment. Although, IFS was mainly initiated in Asian agriculture, it is being introduced in almost all the countries of world. Such a system results in more rationale use of water with judicious distribution among different users. In this paper, different aspects of multiple uses of water for higher productivity and future strategies for enhancing water productivity are discussed. Copyright Springer Science+Business Media B.V. 2012

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  • U. Behera & P. Panigrahi & A. Sarangi, 2012. "Multiple Water Use Protocols in Integrated Farming System for Enhancing Productivity," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 26(9), pages 2605-2623, July.
  • Handle: RePEc:spr:waterr:v:26:y:2012:i:9:p:2605-2623
    DOI: 10.1007/s11269-012-0035-z
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    1. Pant, Jharendu & Demaine, Harvey & Edwards, Peter, 2005. "Bio-resource flow in integrated agriculture-aquaculture systems in a tropical monsoonal climate: a case study in Northeast Thailand," Agricultural Systems, Elsevier, vol. 83(2), pages 203-219, February.
    2. Molden, D., 1997. "Accounting for water use and productivity," IWMI Books, Reports H021374, International Water Management Institute.
    3. Bakker, M. & Barker, R. & Meinzen-Dick, R. & Konradsen, F., 1999. "Multiple uses of water in irrigated areas: a case study from Sri Lanka," IWMI Books, Reports H024568, International Water Management Institute.
    4. Prein, M., 2002. "Integration of aquaculture into crop-animal systems in Asia," Agricultural Systems, Elsevier, vol. 71(1-2), pages 127-146.
    5. 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).
    6. Abbas Amini Fasakhodi & Seyed Nouri & Manouchehr Amini, 2010. "Water Resources Sustainability and Optimal Cropping Pattern in Farming Systems; A Multi-Objective Fractional Goal Programming Approach," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 24(15), pages 4639-4657, December.
    7. Srivastava, R. C. & Singhandhupe, R. B. & Mohanty, R. K., 2004. "Integrated farming approach for runoff recycling systems in humid plateau areas of eastern India," Agricultural Water Management, Elsevier, vol. 64(3), pages 197-212, February.
    8. 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.
    9. Mishra, A. & Mohanty, R. K., 2004. "Productivity enhancement through rice-fish farming using a two-stage rainwater conservation technique," Agricultural Water Management, Elsevier, vol. 67(2), pages 119-131, June.
    10. 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.
    11. Guttman, H., 1999. "Rice field fisheries: a resource for Cambodia," Naga, The WorldFish Center, vol. 22(2), pages 11-15.
    12. R. Nayak & R. Panda, 2001. "Integrated Management of a Canal Command in a River Delta using Multi-Objective Techniques," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 15(6), pages 383-401, December.
    13. Laxmi Sethi & D. Kumar & Sudhindra Panda & Bimal Mal, 2002. "Optimal Crop Planning and Conjunctive Use of Water Resources in a Coastal River Basin," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 16(2), pages 145-169, April.
    14. 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.
    15. Frits Vries, 2007. "Learning Alliances for the broad implementation of an integrated approach to multiple sources, multiple uses and multiple users of water," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 21(1), pages 79-95, January.
    16. Molden, David J., 1997. "Accounting for water use and productivity," IWMI Books, International Water Management Institute, number 113623.
    17. Haileslassie, Amare & Peden, Don & Gebreselassie, Solomon & Amede, Tilahun & Descheemaeker, Katrien, 2009. "Livestock water productivity in mixed crop-livestock farming systems of the Blue Nile basin: Assessing variability and prospects for improvement," Agricultural Systems, Elsevier, vol. 102(1-3), pages 33-40, October.
    18. 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.
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