Citation: | Qiao Li, Jin-long Zhou, Shun-jun Hu, et al. 2013: Evaluation on Groundwater Resources of Medium Salinity in Tarim Basin and Development and Demonstration of Under-mulch-drip Irrigation Technology for Cotton. Journal of Groundwater Science and Engineering, 1(3): 10-21. |
Yu Zhang, Li-hong Wang, Xiu-long Chen, et. al. Impact of Soil Salinity on Cotton Generate Rate and Seeding Growth. [J].China Cotton,2009, (12):13-16 (in Chinese)
|
Yi-ping Wang, Jin-long Zhou, Xiao-jing Guo. Experimental Research on the Effect of Saline Water Irrigation in China on Crop Growth and Yield [J].China Rural Water Conservancy and Hydropower,2009(9):4-7. (in Chinese)
|
Qiao Li, Jin-long Zhou, Xian-wen Li, et al. Leaching through Spring Drip Irrigation under Film in Cotton Field [J]. Arid Zone Research, 2012, 29 (1)167-172 (in Chinese)
|
Xiu-long Chen, Shun-jun Hu, Xiu-cang Li. Effects of Irrigation with Saline Water on Soil Water-salt Transport Features and Cotton Yield [J]. Agricultural Research in the Arid Areas, 2010, 28(3):7-12(in Chinese)
|
Yu Zhang, Li-hong Wang, San-min Sun, et al. Indexes of Salt Tolerance of Cotton in Akesu River Irrigation District [J]. Scientia Agricultura Sinica, 2011, 44(10): 2,051-2,059 (in Chinese)
|
Bing-guo Wang, Meng-gui Jin, Yu-jiang He, et al. Field Test Study on Saline Water Irrigation Systems by Drip Irrigation under Plastic Film[J]. Geological Science and Technology Information, 2010, 29 (5):96-101,111 (in Chinese)
|
Yu-jiang He, Bing-guo Wang, Zai-min Wang, et.- al. Study on Irrigation Scheduling of Cotton under Mulch Drip Irrigation with Brackish Water [J]. Transactions of the CSAE, 2010, 26(7):14-20 (in Chinese)
|
Jin-long Zhou, Bin Wu, Yi-ping Wang, et al. Distribution and Quality Assessment of Medium Salinity Groundwater in Plain Areas in Tarim Basin, Xinjiang [J]. China Rural Water Conservancy and Hydropower, 2009(9):32-36 (in Chinese)
|
Hong-guo Wei, Peng-nian Yang, Ju-song Zhang, et al. Influence Irrigation by Salt-water of and Fresh-water on Cotton Yield and Fiber Quality [J]. Xinjiang Agricultural Sciences, 2010,47 (12):2344-2349. (in Chinese)
|
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