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首页> 外文期刊>Field Crops Research >Effects of supplemental irrigation with micro-sprinkling hoses on water distribution in soil and grain yield of winter wheat.
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Effects of supplemental irrigation with micro-sprinkling hoses on water distribution in soil and grain yield of winter wheat.

机译:辅助水管对冬小麦土壤水分布对水分布的补充灌溉对冬小麦的水分布。

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摘要

The development of water-saving irrigation techniques is required for future food and ecological security in the Huang-Huai-Hai Plain of China, which suffers from severe water shortage. Field experiments were performed over two years (2010/2012) with the high-yielding winter wheat cultivar Jimai22 to examine the effects of supplemental irrigation (SI) with micro-sprinkling hoses on water distribution in soil and grain yield of winter wheat. Five irrigation treatments were tested: rainfed (T0), and irrigated with micro-sprinkling hoses with minimum sprinkling angles (i.e. the angle between the tangent of the initial water jet and the horizontal) of 35 degrees (T1), 50 degrees (T2), 65 degrees (T3) and 80 degrees (T4). The SI brought soil water content in the 0-140 cm profile to 75% field capacity (FC) at jointing and 70% FC at anthesis in 2010/2011, and 70% FC at both jointing and anthesis in 2011/2012. The distribution uniformity of irrigation water (C micro ) in soil after irrigation at jointing and anthesis was increased by increasing sprinkling angle from 35 degrees to 80 degrees . The increase in the soil water content in the 0-40 cm soil layer of the inter-rows decreased significantly with increasing distance from the micro-sprinkling hose in T1, T2 and T3, but there was no significant difference between inter-rows in T4. As sprinkling angle was increased from 35 degrees to 80 degrees , the amount of SI required (CIR), soil water consumption ( Delta W) and crop evapotranspiration (ETc) decreased. The grain filling rate at the later filling stage, 1000-kernel weight, dry matter accumulation (DM), grain yield, and agronomic water use efficiency (AWUE) were significantly higher in T4 than in T1, T2 and T3. The CIR, Delta W and ETc had significant, negative, linear relationships with C micro . However, DM, grain yield, and AWUE had significant, positive, linear relationships with C micro with mean correlation coefficients of 0.60, 0.91 and 0.91, respectively. In this study, the optimum sprinkling angle of micro-sprinkling hoses for irrigating wheat after jointing was 80 degrees .
机译:中国黄淮海平原未来食品和生态安全所需的节水灌溉技术的发展,遭受严重的缺水。现场实验以两年(2010/2012)进行了高产冬小麦品种Jimai22,以研究补充灌溉(Si)对微洒水软管对冬小麦土壤和籽粒产量水分布的影响。测试了五种灌溉处理:雨量(T0),并用小洒水软管灌溉,具有最小喷洒的角度(即,初始水射流的切线与水平之间的角度)为35度(T1),50度(T2) ,65度(t3)和80度(t4)。 Si将0-140厘米谱的土壤含水量带到2010/2011年在第2010/2011年的开花和70%Fc处的75%的现场容量(Fc),以及2011/2012年的接头和波动的70%FC。通过将35度至80度的喷洒角增加,增加了灌溉灌溉后的土壤中的灌溉水(C micro )的分布均匀性。距离T1,T2和T3中的微喷水软管的距离增加,0-40厘米土壤层中的土壤水含量的增加显着降低,但T4中的行之间没有显着差异。由于洒水角从35度增加到80度,所需的Si量(CiR),土壤耗水量(Delta W)和作物蒸散量(ETC)减少。 T4的T4的后期填充阶段,1000-籽粒重量,干物质积累(DM),籽粒产量和农艺用水效率(AWUE)显着高于T1,T2和T3。 CIR,DELTA W和ET等与C MICRO 具有重要的,负线性关系。然而,DM,谷物产量和苏均具有与C 微小的阳性,阳性,线性关系分别具有0.60,0.91和0.91的平均相关系数。在这项研究中,在连接后灌溉小麦的微洒软管的最佳喷洒角为80度。

著录项

  • 来源
    《Field Crops Research》 |2014年第null期|共12页
  • 作者单位

    Cooperative Innovation Center of Shandong Wheat-Corn Crops Key Laboratory of Crop Ecophysiology and Farming System Ministry of Agriculture College of Agronomy Shandong Agricultural University Taian Shandong 271018 PR China;

    Shandong Agricultural University Library Taian Shandong 271018 PR China;

    The James Hutton Institute Invergowrie Dundee DD2 5DA UK;

    Cooperative Innovation Center of Shandong Wheat-Corn Crops Key Laboratory of Crop Ecophysiology and Farming System Ministry of Agriculture College of Agronomy Shandong Agricultural University Taian Shandong 271018 PR China;

    Cooperative Innovation Center of Shandong Wheat-Corn Crops Key Laboratory of Crop Ecophysiology and Farming System Ministry of Agriculture College of Agronomy Shandong Agricultural University Taian Shandong 271018 PR China;

    Cooperative Innovation Center of Shandong Wheat-Corn Crops Key Laboratory of Crop Ecophysiology and Farming System Ministry of Agriculture College of Agronomy Shandong Agricultural University Taian Shandong 271018 PR China;

    Cooperative Innovation Center of Shandong Wheat-Corn Crops Key Laboratory of Crop Ecophysiology and Farming System Ministry of Agriculture College of Agronomy Shandong Agricultural University Taian Shandong 271018 PR China;

    -Cooperative Innovation Center of Shandong Wheat-Corn Crops Key Laboratory of Crop Ecophysiology and Farming System Ministry of Agriculture College of Agronomy Shandong Agricultural University Taian Shandong 271018 PR China;

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

    Supplemental irrigation; Micro-sprinkling hose; Sprinkling angle; Irrigation water distribution; Grain yield; Winter wheat;

    机译:补充灌溉;微洒软管;洒角;灌溉水分布;籽粒产量;冬小麦;

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