Technical Papers
Apr 8, 2016

Assessment of the Water Market in the Xiying Irrigation District, Shiyang River Basin, China

Publication: Journal of Water Resources Planning and Management
Volume 142, Issue 8

Abstract

A water market is an effective way to increase water-use benefits. A preliminary market for irrigation water trading among villages has emerged in the arid area of northwestern China since 2008. This study conducts a quantitative evaluation of the water market at the Xiying irrigation district of the Shiyang River Basin in western China. Network analysis method is employed to assess trading activity and market centrality. The characters of case water market are compared with that of the United States and Australia to discuss the foundations and barriers for developing a mature water market in China. Results show that the case water market in China is undeveloped and is highly regulated by local government although water transactions continuously occur among villages for years. Insufficient incentives and high transaction cost are the key barriers in further developing the market. The indicators proposed in this study for market network analysis are useful for quantitatively evaluating the characters of a water rights market. The lessons derived from the assessment can guide water market development in China and other countries.

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Acknowledgments

This research is supported by National Natural Science Foundation of China (91125018), (51479089) and (51323014); Natural Science Foundation of China Grant (61303077) and (61561146398); National Key Technology Research and Development Program of the Ministry of Science and Technology of China (2013BAB05B03); and 2014 Chinese Ministry of Water Resource Program—Heihe Project (201401031).

References

Arnell, N. W. (2004). “Climate change and global water resources: Sres emissions and socio-economic scenarios.” Global Environ. change, 14(1), 31–52.
Barabasi, A.-L., and Oltvai, Z. N. (2004). “Network biology: Understanding the cell’s functional organization.” Nature Rev. Genet., 5(2), 101–113.
Barrat, A., Barthelemy, M., Pastor-Satorras, R., and Vespignani, A. (2004). “The architecture of complex weighted networks.” Proc. National Acad. Sci. U.S.A., 101(11), 3747–3752.
Bauer, C. J. (2004). “Results of Chilean water markets: Empirical research since 1990.” Water Resour. Res., 40(9), W09S06.
Bjornlund, H., and McKay, J. (1998). “Factors affecting water prices in a rural water market: A south Australian experience.” Water Resour. Res., 34(6), 1563–1570.
Bjornlund, H., and McKay, J. (2002). “Aspects of water markets for developing countries: Experiences from Australia, Chile, and the US.” Environ. Dev. Econ., 7(4), 769–795.
Bostock, M., Ogievetsky, V., and Heer, J. (2011). “D3 data-driven documents.” IEEE Trans. Visual. Comput. Graphics, 17(12), 2301–2309.
Brooks, R., and Harris, E. (2008). “Efficiency gains from water markets: Empirical analysis of watermove in Australia.” Agric. Water Manage., 95(4), 391–399.
Brookshire, D. S., Colby, B., Ewers, M., and Ganderton, P. T. (2004). “Market prices for water in the semiarid west of the united states.” Water Resour. Res., 40(9), W09S04.
Brozovic, N., Carey, J. M., and Sunding, D. L. (2011). “Trading activity in an informal agricultural water market: An example from California.” J. Contemp. Water Res. Educ., 121(1), 2.
Cai, X., McKinney, D. C., and Lasdon, L. S. (2003). “Integrated hydrologic-agronomic-economic model for river basin management.” J. Water Resour. Plann. Manage., 4–17.
Calatrava, J., and Garrido, A. (2006). “Difficulties in adopting formal water trading rules within users’ associations.” J. Econ. Issues, 40(1), 27–44.
Carey, J., Sunding, D. L., and Zilberman, D. (2002). “Transaction costs and trading behavior in an immature water market.” Environ. Dev. Econ., 7(4), 733–750.
Commonwealth Environmental Water Holder. (2013). “Water and natural resources and Victorian environmental water holder.” Dept. of the Environment, Canberra, Australia.
Costa, L. D. F., Rodrigues, F. A., Travieso, G., and Villas Boas, P. R. (2007). “Characterization of complex networks: A survey of measurements.” Adv. Phys., 56(1), 167–242.
Crase, L., OReilly, L., and Dollery, B. (2000). “Water markets as a vehicle for water reform: The case of New South Wales.” Aust. J. Agric. Resour. Econ., 44(2), 299–321.
Dalin, C., Suweis, S., Konar, M., Hanasaki, N., and Rodriguez-Iturbe, I. (2012). “Modeling past and future structure of the global virtual water trade network.” Geophys. Res. Lett., 39(24), L24402.
De Vries, T., and Weatherhead, E. (2005). “Adapting to irrigation water scarcity due to climate changes in eastern England. Impacts of global climate change.” World Water and Environmental Resources Congress 2005, ASCE, Reston, VA, 1–6.
Easter, K. W., Rosegrant, M. W., and Dinar, A. (1999). “Formal and informal markets for water: Institutions, performance, and constraints.” World Bank Res. Obs., 14(1), 99–116.
Etchells, T., Malano, H., McMahon, T. A., and James, B. (2004). “Calculating exchange rates for water trading in the Murray-Darling basin, Australia.” Water Resour. Res., 40(12), in press.
Freeman, L. C. (1977). “A set of measures of centrality based on betweenness.” Sociometry, 40(1), 35–41.
Gansu, D. R. C. (2005). “Restoration plan for the Shiyang River Basin in the near future.” Gansu Provincial Development and Reform Commission, Lanzhou, China (in Chinese).
Getches, D. H. (1997). Water law in a nutshell, West Publishing, St. Paul, MN.
Gohar, A. A., and Ward, F. A. (2010). “Gains from expanded irrigation water trading in Egypt: An integrated basin approach.” Ecol. Econ., 69(12), 2535–2548.
Grafton, R. Q., and Horne, J. (2014). “Water markets in the Murray-Darling basin.” Agric. Water Manage., 145, 61–71.
Grafton, R. Q., Libecap, G., McGlennon, S., Landry, C., and OBrien, B. (2011). “An integrated assessment of water markets: A cross-country comparison.” Rev. Environ. Econ. Policy, 5(2), 219–239.
Grafton, R. Q., Libecap, G. D., Edwards, E. C., O’Brien, R., and Landry, C. (2012). “Comparative assessment of water markets: Insights from the Murray-Darling basin of Australia and the western USA.” Water Policy, 14(2), 175–193.
Hadjigeorgalis, E., and Lillywhite, J. (2004). “The impact of institutional constraints on the Limari River Valley water market.” Water Resour. Res., 40(5), W05501.
Heaney, A., Dwyer, G., Beare, S., Peterson, D., and Pechey, L. (2006). “Third-party effects of water trading and potential policy responses*.” Aust. J. Agric. Resour. Econ., 50(3), 277–293.
Hearne, R. R., and Easter, K. W. (1997). “The economic and financial gains from water markets in chile.” Agric. Econ., 15(3), 187–199.
Holten, D. (2006). “Hierarchical edge bundles: Visualization of adjacency relations in hierarchical data.” IEEE Trans. Visual. Comput. Graphics, 12(5), 741–748.
Howe, C. W., Schurmeier, D. R., and Shaw, W. D. (1986). “Innovative approaches to water allocation: The potential for water markets.” Water Resour. Res., 22(4), 439–445.
Jiang, Y. (2009). “China’s water scarcity.” J. Environ. Manage., 90(11), 3185–3196.
Kanazawa, M. T. (1998). “Efficiency in western water law: The development of the California doctrine, 1850–1911.” J. Legal Stud., 27(1), 159–184.
Kilgour, D. M., and Dinar, A. (2001). “Flexible water sharing within an international river basin.” Environ. Resour. Econ., 18(1), 43–60.
Konar, M., Dalin, C., Suweis, S., Hanasaki, N., Rinaldo, A., and Rodriguez-Iturbe, I. (2011). “Water for food: The global virtual water trade network.” Water Resour. Res., 47(5), W05520.
Lund, J. R., and Israel, M. (1995). “Water transfers in water resource systems.” J. Water Resour. Plann. Manage., 193–204.
Luo, B., Maqsood, I., and Gong, Y. (2010). “Modeling climate change impacts on water trading.” Sci. Total Environ., 408(9), 2034–2041.
Meinzen-Dick, R. S. (1998). “Groundwater markets in Pakistan: Institutional development and productivity impacts.” Markets for water, Springer, New York, 207–222.
Meza, F. J., Wilks, D. S., Gurovich, L., and Bambach, N. (2012). “Impacts of climate change on irrigated agriculture in the Maipo basin, Chile: Reliability of water rights and changes in the demand for irrigation.” J. Water Resour. Plann. Manage., 421–430.
Mi, J.-W., Huang, J.-K., Wang, J.-X., and Mukherji, A. (2008). “Participants in groundwater markets: Who are sellers?” J. Nat. Resour., 23(6), 1–12 (in Chinese).
Michelsen, A. M. (1994). “Administrative, institutional, and structural characteristics of an active water market.” J. Am. Water Resour. Assoc., 30(6), 971–982.
Monge, P. R., and Contractor, N. S. (2003). Theories of communication networks, Oxford University Press, Oxford, U.K.
National Water Commission. (2013a). “Australian water markets report 2012–13.” 〈http://www.nwc.gov.au/publications/topic/water-industry/australian-water-markets-report-2012-13〉.
National Water Commission. (2013b). “Australian water markets: Trends and drivers 2007–08 to 2011–12.” 〈http://www.nwc.gov.au/publications/topic/water-industry/australian-water-markets-trends-and-drivers-2007-08-to-2011-12〉.
Nieuwoudt, W., and Armitage, R. (2004). “Water market transfers in South Africa: Two case studies.” Water Resour. Res., 40(9), W09S05.
Qureshi, M. E., Shi, T., Qureshi, S. E., and Proctor, W. (2009). “Removing barriers to facilitate efficient water markets in the Murray-Darling basin of Australia.” Agric. Water Manage., 96(11), 1641–1651.
Rosegrant, M. W., and Binswanger, H. P. (1994). “Markets in tradable water rights: Potential for efficiency gains in developing country water resource allocation.” World Dev., 22(11), 1613–1625.
Rosegrant, M. W., Ringler, C., McKinney, D. C., Cai, X., Keller, A., and Donoso, G. (2000). “Integrated economic-hydrologic water modeling at the basin scale: The Maipo River basin.” Agric. Econ., 24(1), 33–46.
Rosegrant, M. W., Schleyer, R. G., and Yadav, S. N. (1995). “Water policy for efficient agricultural diversification: Market-based approaches.” Food Policy, 20(3), 203–223.
Saleth, R. M. (1998). “Water markets in India: Economic and institutional aspects.” Markets for Water, Springer, New York, 187–205.
Speed, R. (2009a). “A comparison of water rights systems in China and Australia.” Water Resour. Dev., 25(2), 389–405.
Speed, R. (2009b). “Transferring and trading water rights in the People’s Republic of China.” Water Resour. Dev., 25(2), 269–281.
Tisdell, J. (2001). “The environmental impact of water markets: An Australian case-study.” J. Environ. Manage., 62(1), 113–120.
Wang, L., Fang, L., and Hipel, K. W. (2007). “Mathematical programming approaches for modeling water rights allocation.” J. Water Resour. Plann. Manage., 50–59.
Wang, S. (2003). Resource-based water management—Human harmony with nature, China Water Power Press, Beijing.
Wasserman, S. (1994). Social network analysis: Methods and applications, Vol. 8, Cambridge University Press, Cambridge, U.K.
Wei, Y., Langford, J., Willett, I. R., Barlow, S., and Lyle, C. (2011). “Is irrigated agriculture in the Murray Darling basin well prepared to deal with reductions in water availability?” Global Environ. Change, 21(3), 906–916.
Whitten, S. M., Coggan, A., Reeson, A., and Gorddard, R. (2007). “Putting theory into practice: Market failure and market based instrument design.” 51st Annual Conf. of the Australian Agricultural and Resource Economics Society, Australian Agricultural and Resource Economics Society, Australian National Univ., Canberra, Australia.
Xu, X., Zhang, J., Qi, Y., and Nian, Y. (2005). “Research on 3s-based method for eco-functional regionalization in Shiyang River basin.” Arid Zone Res., 22(1), 41–44 (in Chinese).
Zaman, A., Malano, H. M., and Davidson, B. (2009). “An integrated water trading-allocation model, applied to a water market in Australia.” Agric. Water Manage., 96(1), 149–159.
Zekri, S., and Easter, W. (2005). “Estimating the potential gains from water markets: A case study from Tunisia.” Agric. Water Manage., 72(3), 161–175.
Zhang, J. (2007). “Barriers to water markets in the Heihe River basin in northwest China.” Agric. Water Manage., 87(1), 32–40.
Zhang, L., Wang, J., Huang, J., and Rozelle, S. (2008). “Development of groundwater markets in China: A glimpse into progress to date.” World Dev., 36(4), 706–726.
Zheng, H., Wang, Z., Hu, S., and Malano, H. (2013). “Seasonal water allocation: Dealing with hydrologic variability in the context of a water rights system.” J. Water Resour. Plann. Manage., 76–85.
Zhongjing, W., Hang, Z., and Xuefeng, W. (2009). “A harmonious water rights allocation model for Shiyang River basin, Gansu Province, China.” Water Resour. Dev., 25(2), 355–371.

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Go to Journal of Water Resources Planning and Management
Journal of Water Resources Planning and Management
Volume 142Issue 8August 2016

History

Received: Jun 11, 2015
Accepted: Jan 6, 2016
Published online: Apr 8, 2016
Published in print: Aug 1, 2016
Discussion open until: Sep 8, 2016

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Tingting Xu
State Key Lab of Hydroscience and Engineering, Dept. of Hydraulic Engineering, Tsinghua Univ., Beijing 100084, China.
State Key Lab of Hydroscience and Engineering, Dept. of Hydraulic Engineering, Tsinghua Univ., Beijing 100084, China (corresponding author). E-mail: [email protected]
Yicheng Liu
Institute for Interdisciplinary Information Sciences, Tsinghua Univ., Beijing 100084, China.
Zhongjing Wang
State Key Lab of Hydroscience and Engineering, Dept. of Hydraulic Engineering, Tsinghua Univ., Beijing 100084, China; Qinghai Univ., Xining 810016, China.

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