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Effect of ammonium and nitrate nitrogen fertilizers on wheat yield in relation to accumulated nitrate at different depths of soil in drylands of China

机译:铵态氮和硝态氮肥料对中国旱地不同深度土壤氮素累积的影响

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Eleven field experiments were conducted in Yongshou County, Shanxi Province and seven in Luoyang, Henan Province, and five layers of soil were sampled in 20-cm increments to 100 cm depth for each experimental field to study the difference of wheat (Triticurn aestivum) responses to nitrate and ammonium nitrogen (N) and the relation of its responses to nitrate N cumulative amount in different soil layers. In Yongshou, each experimental site included seven treatments (control, two varieties of nitrate N, two varieties of ammonium N, and two combinations of ammonium to nitrate N in a ratio of 1:2) while in Luoyang, six treatments (only one variety of nitrate N). Total 150 kg ha(-1) N was added as basal for N fertilization treatments at wheat seeding time. Results showed that differences in two varieties of each N form or combinations were much less than those of N forms. As a whole, wheat responses to nitrate N were better in most cases and in few cases, there was no significant difference between nitrate N and ammonium N on wheat yield. Using averages of yield, yield increase amount (kg ha(-1)) and percentage (%) of different N forms for comparison, nitrate N was highest in yield and yield increase, followed by the combination, while the ammonium N was lowest. The lower the amount of accumulated nitrate N in the soil profile, the better the nitrate N superiority. Our finding was that the superiority of nitrate N over ammonium N on wheat yield depended on the accumulative nitrate amounts in soil, and only in soil having low cumulative nitrate N amount at the rooting depth, did the nitrate N show its superiority over the ammonium N. In contrast, if the accumulative nitrate N amount was high, the two N forms had no significant difference on wheat yield. (C) 2015 Elsevier B.V. All rights reserved.
机译:在山西省永寿县进行了11个田间试验,在河南洛阳进行了7个田间试验,每个试验田以20-cm的增量对100cm的深度取样了5层土壤,以研究小麦(Triticurn aestivum)响应的差异。硝态氮和铵态氮(N)及其对不同土壤层中硝态氮累积量的响应关系。在永寿,每个实验点包括七种处理方法(对照,两种硝酸盐氮,两种铵态氮和两种铵态氮与硝酸盐氮的比例为1:2的组合),而在洛阳,则采用六种处理方法(仅一种硝酸盐氮)。小麦播种时总共添加150 kg ha(-1)N作为基础施氮。结果显示,每种N形式或组合的两个品种的差异远小于N形式的差异。总体而言,在大多数情况下,小麦对硝态氮的响应更好,而在少数情况下,硝态氮和铵态氮对小麦产量的影响没有显着差异。使用平均产量,增产量(kg ha(-1))和不同N形式的百分比(%)进行比较,硝酸盐N的产量和增产最高,其次是组合,而铵态氮最低。土壤剖面中硝态氮的累积量越少,硝态氮的优势就越强。我们的发现是,硝态氮比铵态氮对小麦产量的优势取决于土壤中累积的硝酸盐含量,只有在生根深度累积硝态氮含量低的土壤中,硝态氮才显示出优于铵态氮的优势。相反,如果累积的硝酸盐氮含量高,则两种氮素形态对小麦产量无显着差异。 (C)2015 Elsevier B.V.保留所有权利。

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