首页> 外文期刊>Grassland Science >Performance of drip irrigation and nitrogen fertilizer in irrigation water saving and nitrogen use efficiency for waxy maize (Zea mays L.) and cucumber (Cucumis sativus L.) under solar greenhouse
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Performance of drip irrigation and nitrogen fertilizer in irrigation water saving and nitrogen use efficiency for waxy maize (Zea mays L.) and cucumber (Cucumis sativus L.) under solar greenhouse

机译:日光温室滴灌和氮肥在糯玉米和黄瓜上的灌溉节水和氮肥利用率。

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An experimental study was conducted to determine the optimum water amounts, irrigation water use efficiencies (IWUE) and irrigation water saving for waxy maize and cucumber, and the optimum nitrogen (N) quantity and nitrogen use efficiency (NUE) for maize under fertigation. The different irrigation treatments were estimated using the CROPWAT model based on the Penman-Monteith method, and the different N fertigation rates were determined based on the locally recommended dose. The results showed that the vegetative growth, yield and quality traits of maize and cucumber were significantly affected by different irrigation water amounts and N fertigation rates. The water application depths of 50% and 100% of the crop evapotranspiration inside the greenhouse (ETc,in) for maize and cucumber were found to be the optimum amounts that resulted in the highest yield of 26.8t ha(-1) for maize and 37.8t ha(-1) for cucumber. The 50% and 100% ETc,in for maize and cucumber resulted in water saving of 102.9mm and 29.0mm, respectively. The fertigation quantity of 125% N dose was the optimum N level that obtained highest maize yield of 26.2t ha(-1), and the NUE was 7.198t ha(-1)kg(-1). The vegetative growth and fruit quality reached the best at irrigation depth of 50% ETc,in and N dose of 125% for maize, and irrigation depth of 100% ETc,in for cucumber. The IWUE varied from 0.102 to 0.209t ha(-1)mm(-1) for maize and 0.152-0.340t ha(-1)mm(-1) for cucumber. Furthermore, the IWUE and NUE increased with the decreasing irrigation water amount and the N application dose. Findings from this research may provide technical guidance for reducing irrigation water use in agriculture in order to solve the water scarcity problem. There is water saving potential observed in this study.
机译:进行了一项实验研究,以确定蜡质玉米和黄瓜的最佳水量,灌溉用水效率(IWUE)和灌溉节水,以及施肥条件下玉米的最佳氮(N)量和氮利用效率(NUE)。使用基于Penman-Monteith方法的CROPWAT模型估算不同的灌溉处理方式,并根据当地推荐的剂量确定不同的氮肥施用量。结果表明,不同灌溉水量和施氮量对玉米和黄瓜的营养生长,产量和品质性状都有显着影响。玉米和黄瓜的温室内蒸腾量(ETc,in)的水分施用深度为50%和100%,这是最适量,玉米和黄瓜的最高产量为26.8t ha(-1)。黄瓜37.8t公顷(-1)。玉米和黄瓜中50%和100%的ETc分别节水102.9mm和29.0mm。施氮量为125%的施肥量是最适氮水平,玉米最高产量为26.2t ha(-1),NUE为7.198t ha(-1)kg(-1)。在玉米灌水深度为50%ETc,氮素为125%,黄瓜灌水深度为100%时,营养生长和果实品质达到最佳。玉米的IWUE从0.102到0.209t ha(-1)mm(-1)不等,黄瓜的IWUE从0.152-0.340t ha(-1)mm(-1)不等。此外,随着灌溉水量和施氮量的减少,IWUE和NUE增加。这项研究的结果可为减少农业灌溉用水量以解决缺水问题提供技术指导。在这项研究中有节水潜力。

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