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首页> 外文期刊>Irrigation Science >Effects of regulated deficit irrigation on yield and water productivity of chili pepper (Capsicum annuum L.) in the arid environment of Northwest China
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Effects of regulated deficit irrigation on yield and water productivity of chili pepper (Capsicum annuum L.) in the arid environment of Northwest China

机译:赤字灌溉对西北干旱环境中辣椒(Capsicum Anumum L.)产量和水生产率的影响

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摘要

Due to the scarcity of water resources in Northwest China, the use of deficit irrigation scheduling is beneficial for sustainable agricultural development. Therefore, a 2-year field experiment was performed to investigate the effects of regulated deficit irrigation (RDI) on the yield and water productivity (WP) of drip-irrigated chili pepper plants in a typical arid environment of Northwest China. The results indicate that RDI strategies reduced actual crop evapotranspiration by 2-27%. Crop coefficients for chili pepper averaged 0.85, 1.09 and 0.84 for the development, middle and late stages, respectively. The highest yield occurred under full irrigation. The largest yield reduction (13-20%) was recorded when water deficit occurred during the middle stage. Fifty percent water deficit reduced yields more than 25% water deficit did. The highest irrigation water productivity and WP were achieved when water deficit occurred during the late stage. RDI may improve fruit quality by increasing the content of total soluble solids of the fresh fruit. In conclusion, full irrigation is recommended first for achieving the highest yield, and a water deficit of 25-50% during the late stage is also recommended if considering economic benefits and WP in the study region.
机译:由于中国西北部的水资源稀缺,使用赤字灌溉调度对可持续农业发展有利。因此,进行了2年的田间实验,探讨了调节缺陷灌溉(RDI)对西北地区典型干旱环境中滴灌的辣椒植物产量和水生产率(WP)的影响。结果表明,RDI策略将实际作物蒸发减少2-27%。辣椒的作物系数分别平均为0.85,1.09和0.84的开发,中期阶段。最高产量发生在全灌溉下。当中期水缺损时,记录最大的产量减少(13-20%)。 50%的水赤字减少产量超过25%的水赤字。当在晚期发生水缺损时,实现了最高的灌溉水生产率和WP。 RDI可以通过增加新鲜水果的总可溶性固体的含量来改善果实质量。总之,建议首先为实现最高收益率而建议全面灌溉,如果考虑在研究区域的经济效益和WP,也建议在晚期的25-50%的水资源赤字。

著录项

  • 来源
    《Irrigation Science》 |2018年第1期|共14页
  • 作者单位

    Beijing Normal Univ Coll Water Sci Beijing 100875 Peoples R China;

    Beijing Normal Univ Coll Water Sci Beijing 100875 Peoples R China;

    Chinese Acad Agr Mechanizat Sci Beijing 100083 Peoples R China;

    China Agr Univ Coll Water Resources &

    Civil Engn Beijing 100083 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农业科学;
  • 关键词

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