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首页> 外文期刊>Journal of Science and Technology of Agriculture and Natural Resources >Evaluating the Effect of Different Levels of Deficit Irrigation and Partial Root-Zone Drying on the Yield and Water Productivity of Maize in Hajiabad
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Evaluating the Effect of Different Levels of Deficit Irrigation and Partial Root-Zone Drying on the Yield and Water Productivity of Maize in Hajiabad

机译:在哈加巴德,不同水平的亏缺灌溉和部分根区干燥对玉米产量和水分生产率的影响评估

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With the increase of population, the optimal use of water resources is necessary. This study was carried out to evaluate the impact of different levels of irrigation on the yield, yield components and water productivity of corn using single and double row drip irrigation systems (Tubes type). . The experiment was conducted in a split plot design based on the randomized complete block design (RCBD) with three replications in 2012 in Hajiabad, Hormozgan Province. The treatments were comprised of three levels of irrigation as the main plot (100, 80 and 60% water requirement) and two patterns of irrigating water pipe installation (normal and every other row) as a sub-plot of the design. The results showed that irrigating with the 80 percent water requirement, in comparison with full irrigation, increased the total yield by 1.4%, the seed weight by 1.8%, the number of seeds per row by 8.7%, and the number of seed row per maize by 13%. In spite of yield superiority in the pattern of normally irrigating water pipe installation (10055.56 kg ha-1), against every other row installation (9366.67 kg ha-1), water productivity was more in every other row installation (1.089 kg m-3). Therefore, partial root-zone drying was recommended by the irrigation of the 80% plant water requirement for the maize in the region.
机译:随着人口的增加,有必要对水资源进行优化利用。这项研究旨在评估使用单排和双排滴灌系统(Tubes型)的不同灌溉水平对玉米产量,产量构成和水分生产率的影响。 。这项实验是在2012年在Hormozgan省Hajiabad进行的基于随机完整区组设计(RCBD)的分裂地块设计中进行的,该设计有3次重复。处理包括三个灌溉水平作为主要区域(需水量分别为100%,80%和60%)和两个设计模式的子区域灌溉水管道安装方式(正常和隔行)。结果表明,与完全灌溉相比,使用80%需水量进行灌溉可使总产量增加1.4%,种子重量增加1.8%,每排种子数增加8.7%,每排种子数增加玉米占13%。尽管在正常灌溉水管安装方式(10055.56 kg ha-1)的模式下具有产量优势,但相对于其他每行安装方式(9366.67 kg ha-1)而言,其他每行安装方式(1.089 kg m-3)的水生产率更高)。因此,通过灌溉该地区玉米80%的植物需水量,建议进行部分根区干燥。

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