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Corn production with Instinct nitrification inhibitor applied with urea-ammonium nitrate solution and liquid swine manure

机译:尿素-硝酸铵溶液和猪粪肥配合本能硝化抑制剂的玉米生产

摘要

Improving N use efficiency of applied N by corn (Zea mays L.), in order to minimize N losses from agricultural fields, is of concern to both producers and environmentalists. Use of nitrification inhibitors is thought to slow the conversion of applied NH4 to NO3, which would reduce N losses from the soil while increasing corn plant N uptake. This thesis includes two, small plot field studies designed to evaluate the effect Instinct (Dow AgroSciences, Indianapolis, IN) nitrification inhibitor had on corn production. The first study evaluated the effect of Instinct spring preplant applied with urea-ammonium nitrate (UAN) solution on corn production, and optimum N rate across six N rates and two application methods. The second study evaluated the effect liquid swine (Sus scrofa) manure (LSM) applied with Instinct at, two rates, and without Instinct had on corn production at two application times in the fall. A comparison was also made in the second study with fall applied anhydrous ammonia (AA) without a nitrification inhibitor.At low to recommended N rates, early corn growth plant height, mid-vegetative (V10) canopy normalized difference vegetative index (NDVI), stalk lodging potential, and grain yield either had no response, or a negative response, to Instinct applied with spring preplant UAN solution. Above normal precipitation during one year of the study provided an opportunity for Instinct to improve N use efficiency by reducing the economic optimum N rate (EONR) and improving grain yield. Use of Instinct actually increased the EONR by 32 kg N ha-1 across the three year study.Improved spring inorganic-N and corn grain yield was found when Instinct was fall applied with LSM. Liquid swine manure with the low Instinct rate had significantly higher corn grain yields than LSM with the high Instinct rate and LSM without Instinct, while no difference was found between LSM with the high Instinct rate and LSM without Instinct. Fall applied AA typically had higher NH4-N concentrations within the injected N band, lower NO3-N concentrations in the fall and spring, and higher grain yield than fall applied LSM without Instinct, regardless of application timing. With the inclusion of Instinct with fall applied LSM, grain yields were still not comparable to fall applied AA.The studies in this thesis show that use of Instinct nitrification inhibitor with applied N does not guarantee a positive corn response. Inclusion of Instinct with spring preplant UAN solution would not be considered a suitable N management practice for improving corn N use efficiency. If LSM is to be applied in the fall, Instinct with fall applied LSM would be a suitable N management practice for improving corn N use efficiency and potentially decreasing environmentally detrimental N losses. However, deciding to apply AA, instead of LSM, in the fall would be a better N management decision.
机译:生产者和环保主义者都关注提高玉米(Zea mays L.)施用氮素的利用效率,以最大程度地减少农业领域的氮素损失。人们认为使用硝化抑制剂会减缓施用的NH4向NO3的转化,这将减少土壤中的氮损失,同时增加玉米植物对氮的吸收。本论文包括两个小规模的田间研究,旨在评估本能硝化抑制剂对玉米生产的影响(Dow AgroSciences,印第安纳州印第安纳州)。第一项研究评估了使用尿素-硝酸铵(UAN)溶液的本能春季预种植对玉米生产的影响,以及在六个氮肥施用量和两种施用方法下的最佳氮肥施用量。第二项研究评估了在秋季施用两次本能而没有本能的玉米猪粪(LSM)对玉米产量的影响。在第二项研究中也进行了比较,比较秋季施用无硝化抑制剂的无水氨(AA)。在低至建议的氮素施用率下,早期玉米生长株高,中营养(V10)冠层归一化差异营养指数(NDVI),春季预种植的UAN溶液对Instinct的秸秆倒伏潜力和籽粒产量无响应或为负响应。在一年的研究中,高于正常水平的降水为本能提供了机会,可以通过降低经济最佳氮含量(EONR)和提高谷物产量来提高氮的利用效率。在三年的研究中,使用本能实际上使EONR增加了32 kg N ha-1。当将本能与LSM一起施用时,发现春季无机氮和玉米籽粒的产量提高了。具有低本能的液态猪粪比具有高本能的LSM和没有本能的LSM的玉米产量要高得多,而具有高本能的LSM和没有本能的LSM之间没有差异。与无本能的秋季施用的LSM相比,秋季施用的AA通常在注入的N带内具有较高的NH4-N浓度,秋季和春季具有较低的NO3-N浓度,并且谷物产量更高,而与施用时间无关。由于在秋季施用LSM时加入了Instinct,谷物的产量仍不能与秋季施用AA相比。本论文的研究表明,将Instinct硝化抑制剂与氮肥配合使用不能保证玉米的阳性反应。在春季种植前的UAN解决方案中包含本能不被认为是提高玉米氮素利用效率的合适氮素管理实践。如果要在秋季使用LSM,则本能与秋季应用LSM相结合将是一种合适的氮素管理实践,可提高玉米氮素的利用效率并潜在地减少对环境有害的氮素损失。但是,在秋天决定使用AA而不是LSM是一个更好的N管理决策。

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    Sassman Aaron Michael;

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  • 年度 2014
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