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首页> 外文期刊>Journal of the Science of Food and Agriculture >Can drip irrigation under mulch be replaced with shallow-buried drip irrigation in spring maize production systems in semiarid areas of northern China?
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Can drip irrigation under mulch be replaced with shallow-buried drip irrigation in spring maize production systems in semiarid areas of northern China?

机译:在中国北方半干旱地区的春玉米生产系统中,在覆盖物下滴灌灌溉造成的浅埋滴灌吗?

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BACKGROUND In recent years, shallow-buried drip irrigation in spring maize production has gradually replaced drip irrigation under plastic films and has become a common irrigation method in semiarid areas of northern China. RESULT Two years of field experiments were carried out in the semiarid area of western Jilin province to compare the two drip irrigation methods in the spring maize production system. The treatments included MW1 (drip irrigation under mulch + moderate irrigation amount), MW2 (drip irrigation under mulch + high irrigation amount), SM1 (shallow-buried drip irrigation + moderate irrigation amount), and SM2 (shallow-buried drip irrigation + high irrigation amount). The maize yields were significantly higher under mulch than under shallow-buried drip irrigation, but there was no interaction between mulch and the irrigation amount. Drip irrigation under mulch greatly improved spring maize N, P and K uptake compared with that under shallow-buried drip irrigation. The agronomic-use efficiency, recovery-use efficiency, and partial factor productivity were ranked in the order of MW2 > MW1 > SW2 > SW1. The water-use efficiency of drip irrigation under mulch was 7.44% and 6.82% higher than that of shallow-buried drip irrigation under the moderate and high irrigation levels, respectively. However, considering the costs of the plastic mulch, there was no significant (P < 0.05) difference in economic benefits between the SW and MW treatments. CONCLUSION Drip irrigation under plastic film provides greater advantages for production, but shallow-buried drip irrigation may be a suitable method for farmers until fertigation technology is further optimized and the problem of plastic film pollution is solved. (c) 2020 Society of Chemical Industry
机译:背景近年来,春玉米生产中的浅埋滴灌已逐渐取代膜下滴灌,成为我国北方半干旱地区常见的灌溉方式。结果在吉林省西部半干旱地区进行了两年的田间试验,比较了两种滴灌方法在春玉米生产系统中的应用效果。处理包括MW1(膜下滴灌+中等灌溉量)、MW2(膜下滴灌+高灌溉量)、SM1(浅埋滴灌+中等灌溉量)和SM2(浅埋滴灌+高灌溉量)。覆盖条件下玉米产量显著高于浅埋滴灌,但覆盖与灌水量之间没有交互作用。与浅埋滴灌相比,膜下滴灌显著提高了春玉米对氮、磷、钾的吸收。农艺利用效率、恢复利用效率和部分要素生产率的排序为MW2>MW1>SW2>SW1。在中、高灌溉水平下,膜下滴灌的水分利用效率分别比浅埋滴灌高7.44%和6.82%。然而,考虑到地膜覆盖的成本,SW和MW处理之间的经济效益没有显著差异(P<0.05)。结论膜下滴灌具有较大的生产优势,但在施肥技术进一步优化和膜污染问题得到解决之前,浅埋滴灌可能是一种适合农民的灌溉方式。(c) 2020年化学工业学会

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