期刊文献+

Effect of Deficit Irrigation on the Growth, Water Use Characteristics and Yield of Cotton in Arid Northwest China 被引量:19

Effect of Deficit Irrigation on the Growth, Water Use Characteristics and Yield of Cotton in Arid Northwest China
原文传递
导出
摘要 Water shortage is a key constraint to sustainable agricultural production in Xinjiang, Northwest China. To enhance the use efficiency of valuable irrigation water resources, a 2-year experiment(2010–2011) was conducted to quantify the response of cotton(Gossypium hirsutum L.) growth and yield to different degrees of deficit irrigation(DI) regimes; to determine the effects of DI on the characteristics of water use for cotton, seasonal water use, available soil water in the root zone, soil water depletion, evapotranspiration(ET)-based water use efficiency and irrigation-based water use efficiency, and to determine the best DI regime for optimal water-saving and yield output. The plots were irrigated at 100%(100ET), 85%(85ET), 70%(70ET), 55%(55ET) and 45%(45ET) of the regional ET of cotton in northern Xinjiang. The effect of DI irrigation on water use characteristics was evaluated by analyzing available soil water and soil water depletion in the root zone along with water use efficiencies of cotton. The study showed that the growth, water use characteristics and yield of cotton varied with irrigation regime. Seasonal ET and seed cotton yield were linearly correlated with irrigation amount. The second-order polynomial equation best approximated water-yield relationship of cotton in the study area.Cotton yield response factor was 0.65, suggesting limited water conditions were suitable for cotton cultivation. Economic evaluation of DI treatments confirmed that the yield loss was less than 10% under 70 ET and 85 ET, which was acceptable for greater sustainability.The results suggested that proper DI schemes were necessary for sustainable cotton production in the region. While irrigation at 85 ET was safe for high cotton yield, irrigation at 70 ET was a viable alternative under limited irrigation water availability. Water shortage is a key constraint to sustainable agricultural production in Xinjiang, Northwest China. To enhance the use efficiency of valuable irrigation water resources, a 2-year experiment (2010-2011) was conducted to quantify the response of cotton (Gossypium hirsutum L.) growth and yield to different degrees of deficit irrigation (DI) regimes; to determine the effects of DI on the characteristics of water use for cotton, seasonal water use, available soil water in the root zone, soil water depletion, evapotranspiration (ET)-based water use efficiency and irrigation-based water use efficiency, and to determine the best DI regime for optimal water-saving and yield output. The plots were irrigated at 100% (100ET), 85% (85ET), 70% (70ET), 55% (55ET) and 45% (45ET) of the regional ET of cotton in northern Xinjiang. The effect of DI irrigation on water use characteristics was evaluated by analyzing available soil water and soil water depletion in the root zone along with water use efficiencies of cotton. The study showed that the growth, water use characteristics and yield of cotton varied with irrigation regime. Seasonal ET and seed cotton yield were linearly correlated with irrigation amount. The second-order polynomial equation best approximated water-yield relationship of cotton in the study area. Cotton yield response factor was 0.65, suggesting limited water conditions were suitable for cotton cultivation. Economic evaluation of DI treatments confirmed that the yield loss was less than 10% under 70ET and 85ET, which was acceptable for greater sustainability. The results suggested that proper DI schemes were necessary for sustainable cotton production in the region. While irrigation at 85ET was safe for high cotton yield, irrigation at 70ET was a viable alternative under limited irrigation water availability.
出处 《Pedosphere》 SCIE CAS CSCD 2015年第6期910-924,共15页 土壤圈(英文版)
基金 supported by the National Natural Science Foundation of China (No. 41371115) the 100 Talents Program of Chinese Academy of Sciences (No. KZXC2-YW-BR-12)
关键词 available soil water EVAPOTRANSPIRATION soil water dynamics water use efficiencies water-yield relationship 水分利用效率 棉花生长 亏缺灌溉 棉花产量 利用特性 西北干旱区 土壤水分利用 灌溉水资源
  • 相关文献

参考文献45

  • 1Allen R G, Pereira L S, Raes D Smith M. 1998. Crop Eva- potranspiration: Guidelines for Computing Crop Water Re- quirements. FAO Irrigation and Drainage, Paper 56, FAO, Rome.
  • 2Aujla M S, Thind H S, Butter G S. 2005. Cotton yield and water use efficiency at various levels of water and N through drip irrigation under two methods of planting. Agr Water Manage. 71: 167-179.
  • 3Cerda A, Gimenez-Morera A, Bodi M B. 2009. Soil and water losses from new citrus orchards growing on sloped soils in the western Mediterranean basin. Earth Surf Proc Land. 34: 1822-1830.
  • 4Chen D, Xu H, Xu L, Cao B. 2001. A study on the ev~- potranspiration of cotton field under mulch drip irrigation in north Xinjiang. Desert Oasis Meteorol (in Chinese). 24(2): 16-17.
  • 5Cetin O, Bilgel L. 2002. Effects of different irrigation methods on shedding and yield of cotton. Agr Water Manage. 54: 1-15.
  • 6DaCosta M, Huang B. 2006. Deficit irrigation effects on water use characteristics of Bentgrass species. Crop Sci. 46: 1779- 1786.
  • 7Dagdelen N, Yilmaz E, Sezgin F, Gurbuz T. 2006. Water-yield relation and water use efficiency of cotton (Gossypium hir- sutum L.) and second crop corn (Zea mays L.) in western Turkey. Agr Water Manage. 82: 63-85.
  • 8Dagdelen N, Basal E, Yllmaz E, Gurbiiz T, Akcay K. 2009. Different drip irrigation regimes affect cotton yield, water use efficiency and fiber quality in western Turkey. Agr Water Manage. 96: 111-120.
  • 9Deng X P, Shan L, Zhang H P, Turner N C. 2006. Improving agricultural water use efficiency in arid and semiarid areas of China. Agr Water Manage. 80: 23-40.
  • 10DeTar W R. 2008. Yield and growth characteristics for cotton under various irrigation regimes in sandy soil. Agr Water Manage. 95: 69-76.

同被引文献346

引证文献19

二级引证文献109

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部