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Determinants of cotton farmers’ irrigation water management in arid Northwestern China

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  • Feike, Til
  • Khor, Ling Yee
  • Mamitimin, Yusuyunjiang
  • Ha, Nan
  • Li, Lin
  • Abdusalih, Nurbay
  • Xiao, Haifeng
  • Doluschitz, Reiner

Abstract

To combat China’s water crisis tremendous research efforts are undertaken aiming at the improvement of water management in cotton production, which is the major consumer of the scarce water resources in arid Northwestern China. In recent years extensive field experiment based research strongly enhanced the theoretical knowledge of optimal water management in cotton production. However, farmers’ actual irrigation water productivity remains low. To fill the critical void the present study aims at increasing the understanding of Chinese cotton farmers’ actual irrigation water management. The northwestern Chinese Aksu-Tarim Region was selected as a hot-spot of water scarcity in China, where around 60% of total sown crop land are cultivated with cotton. The increasing overuse of scarce surface water resources for irrigation not only leads to severe ecological degradation, but also increases competition among water users triggering the expansion of groundwater exploitation. Based on primary survey data of 228 cotton producing farm households we firstly analyze the production factors determining farmers’ yield and irrigation water productivity (IWP). Apart from soil salinity and unbalanced fertilization, which negatively affect yield and IWP, especially the applied irrigation method (drip vs. flood irrigation) and installation of a groundwater well were identified as major determinants. Secondly, we apply logistic regression to evaluate which household and farm characteristics determine the irrigation method and installation of groundwater well. We find that farm size, crop types and cropping intensity determine the use of drip irrigation. We furthermore find that the installation of well is largely related to marginalization, with farm families of ethnic minorities, remote farms and lower educated families being more likely to install wells. The findings of our study can help policymakers in devising strategies for improving irrigation water productivity, while reducing groundwater degradation in the study region and similar arid production regions in the world.

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  • Feike, Til & Khor, Ling Yee & Mamitimin, Yusuyunjiang & Ha, Nan & Li, Lin & Abdusalih, Nurbay & Xiao, Haifeng & Doluschitz, Reiner, 2017. "Determinants of cotton farmers’ irrigation water management in arid Northwestern China," Agricultural Water Management, Elsevier, vol. 187(C), pages 1-10.
  • Handle: RePEc:eee:agiwat:v:187:y:2017:i:c:p:1-10
    DOI: 10.1016/j.agwat.2017.03.012
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    1. Niels Thevs, 2011. "Water Scarcity and Allocation in the Tarim Basin: Decision Structures and Adaptations on the Local Level," Journal of Current Chinese Affairs - China aktuell, Institute of Asian Studies, GIGA German Institute of Global and Area Studies, Hamburg, vol. 40(3), pages 113-137.
    2. Feike, Til & Henseler, Martin, 2017. "Multiple Policy Instruments for Sustainable Water Management in Crop Production - A Modeling Study for the Chinese Aksu-Tarim Region," Ecological Economics, Elsevier, vol. 135(C), pages 42-54.
    3. Wang, Ruoshui & Kang, Yaohu & Wan, Shuqin & Hu, Wei & Liu, Shiping & Jiang, Shufang & Liu, Shuhui, 2012. "Influence of different amounts of irrigation water on salt leaching and cotton growth under drip irrigation in an arid and saline area," Agricultural Water Management, Elsevier, vol. 110(C), pages 109-117.
    4. Shudong Zhou & Thomas Herzfeld & Thomas Glauben & Yunhua Zhang & Bingchuan Hu, 2008. "Factors Affecting Chinese Farmers' Decisions to Adopt a Water‐Saving Technology," Canadian Journal of Agricultural Economics/Revue canadienne d'agroeconomie, Canadian Agricultural Economics Society/Societe canadienne d'agroeconomie, vol. 56(1), pages 51-61, March.
    5. Hunsaker, D. J. & Clemmens, A. J. & Fangmeier, D. D., 1998. "Cotton response to high frequency surface irrigation," Agricultural Water Management, Elsevier, vol. 37(1), pages 55-74, June.
    6. Chapagain, A.K. & Hoekstra, A.Y. & Savenije, H.H.G. & Gautam, R., 2006. "The water footprint of cotton consumption: An assessment of the impact of worldwide consumption of cotton products on the water resources in the cotton producing countries," Ecological Economics, Elsevier, vol. 60(1), pages 186-203, November.
    7. Wang, Ruoshui & Wan, Shuqin & Kang, Yaohu & Dou, Chaoyin, 2014. "Assessment of secondary soil salinity prevention and economic benefit under different drip line placement and irrigation regime in northwest China," Agricultural Water Management, Elsevier, vol. 131(C), pages 41-49.
    8. Lohmar, Bryan & Wang, Jinxia & Rozelle, Scott & Huang, Jikun & Dawe, David, 2003. "China'S Agricultural Water Policy Reforms: Increasing Investment, Resolving Conflicts, And Revising Incentives," Agricultural Information Bulletins 33643, United States Department of Agriculture, Economic Research Service.
    9. Kang, Yaohu & Wang, Ruoshui & Wan, Shuqin & Hu, Wei & Jiang, Shufang & Liu, Shiping, 2012. "Effects of different water levels on cotton growth and water use through drip irrigation in an arid region with saline ground water of Northwest China," Agricultural Water Management, Elsevier, vol. 109(C), pages 117-126.
    10. Demirdöğen, Alper & Olhan, Emine & Chavas, Jean-Paul, 2016. "Food vs. fiber: An analysis of agricultural support policy in Turkey," Food Policy, Elsevier, vol. 61(C), pages 1-8.
    11. Khor, Ling Yee & Zeller, Manfred, 2014. "Inaccurate fertilizer content and its effect on the estimation of production functions," China Economic Review, Elsevier, vol. 30(C), pages 123-132.
    12. Blanke, Amelia & Rozelle, Scott & Lohmar, Bryan & Wang, Jinxia & Huang, Jikun, 2007. "Water saving technology and saving water in China," Agricultural Water Management, Elsevier, vol. 87(2), pages 139-150, January.
    13. ZELLNER, Arnold & KMENTA, Jan & DREZE, Jacques H., 1966. "Specification and estimation of Cobb-Douglas production function models," LIDAM Reprints CORE 12, Université catholique de Louvain, Center for Operations Research and Econometrics (CORE).
    14. Gustafsson, Björn Anders & Yang, Xiuna, 2015. "Are China's Ethnic Minorities Less Likely to Move?," IZA Discussion Papers 9018, Institute of Labor Economics (IZA).
    15. H. Holly Wang & Yanping Zhang & Laping Wu, 2011. "Is contract farming a risk management instrument for Chinese farmers?," China Agricultural Economic Review, Emerald Group Publishing Limited, vol. 3(4), pages 489-505, November.
    16. Ibragimov, Nazirbay & Evett, Steven R. & Esanbekov, Yusupbek & Kamilov, Bakhtiyor S. & Mirzaev, Lutfullo & Lamers, John P.A., 2007. "Water use efficiency of irrigated cotton in Uzbekistan under drip and furrow irrigation," Agricultural Water Management, Elsevier, vol. 90(1-2), pages 112-120, May.
    17. He, Xue-Feng & Cao, Huhua & Li, Feng-Min, 2007. "Econometric analysis of the determinants of adoption of rainwater harvesting and supplementary irrigation technology (RHSIT) in the semiarid Loess Plateau of China," Agricultural Water Management, Elsevier, vol. 89(3), pages 243-250, May.
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