优化的沙管灌溉结合施氮提高了中国西北干旱荒漠地区的红枣产量以及水和氮的利用效率

Youshuai Bai, Hengjia Zhang, Shenghai Jia, Dongyuan Sun, Jinxia Zhang, Xia Zhao, Xiangyi Fang, Xiaofeng Wang, Chunjuan Xu, Rui Cao
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摘要

高效节水灌溉技术和合理施氮是解决枣树缺水和不合理施肥问题的关键。本研究首先在枣园中通过原位渗透试验研究了沙管灌溉(STI)对地表和地下湿润特征的影响。与地表滴灌(SD)相比,沙管灌溉使地表湿润面积减少了 57.4%,地表湿润圈的湿润周长减少了 37.1%,地表下湿润前沿的最大渗透距离增加了 64.9%。在最佳砂管深度为 20 厘米时,与 SD 相比,地表润湿圈的表面润湿面积减少了 65.4%,润湿前沿的最大渗透距离增加了 70.9%。随后,在两年的田间试验中,研究了在相同灌溉量(45 毫米灌溉水量-1,共 8 次)下,STI 和 SD 对四种氮素水平(纯氮:N1,0;N2,286 千克/公顷;N3,381 千克/公顷;N4,476 千克/公顷)的土壤储水量、枣叶叶绿素、净光合速率、实际耗水量、果实产量以及水分(WUE)和氮素(NUE)利用效率的影响。与标肥相比,STI 在整个生长期分别增加了 18.0%(2021 年)和 15.6%(2022 年)的土壤储水量,同时也增加了叶绿素含量、氮平衡指数和净光合速率,两者均随氮的增加而增加,然后减少。STI 的氮利用效率是 SD 的 2.5 倍(2021 年)和 1.6 倍(2022 年)。STI 与 N3 组合的产量、WUE、NUE 和净收入最高,因此建议将其作为最佳水-氮组合。总之,在干旱地区的红枣种植中,STI 与适当的氮肥施用相结合是替代 SD 的有效节水灌溉技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimized sand tube irrigation combined with nitrogen application improves jujube yield as well as water and nitrogen use efficiencies in an arid desert region of Northwest China
Efficient water-saving irrigation techniques and appropriate nitrogen (N) application are keys to solving the problems of water scarcity and irrational fertilization in jujube cultivation. In this study, first, the effects of sand tube irrigation (STI) on surface and subsurface wetted characteristics were investigated using in-situ infiltration tests in a jujube garden. Compared with surface drip irrigation (SD), STI reduced surface wetted area by 57.4% and wetted perimeter of the surface wetted circle by 37.1% and increased subsurface maximum infiltration distance of wetting front by 64.9%. At the optimal sand tube depth of 20 cm, surface wetted area of the surface wetted circle decreased by 65.4% and maximum infiltration distance of the wetting front increased by 70.9%, compared with SD. Two-year field experiments then investigated the effects of STI and SD on soil water storage, jujube leaf chlorophyll, net photosynthetic rate, actual water consumption, fruit yield, and water (WUE) and N (NUE) use efficiencies at four levels of N (pure nitrogen: N1, 0; N2, 286 kg ha–1; N3, 381 kg ha–1; N4, 476 kg ha–1) at the same irrigation amount (45 mm irrigation–1, total of 8). Compared with SD, STI increased soil water storage 18.0% (2021) and 15.6% (2022) during the entire growth period and also chlorophyll content, nitrogen balance index, and net photosynthetic rate, with both increasing and then decreasing with increasing N. Compared with SD, STI increased yields by 39.1% and 36.5% and WUE by 44.3% and 39.7% in 2021 and 2022, respectively. Nitrogen use efficiency was 2.5 (2021) and 1.6 (2022) times higher with STI than with SD. STI combined with N3 had the highest yield, WUE, NUE, and net income and is thus recommended as the optimal water–N combination. In conclusion, STI combined with appropriate N application can be an effective water-saving irrigation technology alternative to SD in jujube cultivation in arid areas.
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