首页> 外文会议>Annual International Meeting of The American Society of Agricultural and Biological Engineers >Evaluation of NEXEN~(TM) stabilized nitrogen applied to overhead irrigated cotton (Gossypium hirsutum L.)
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Evaluation of NEXEN~(TM) stabilized nitrogen applied to overhead irrigated cotton (Gossypium hirsutum L.)

机译:Nexen〜(TM)稳定氮的评价施加到架上灌溉棉花(Gossypium hirsutum L.)

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This study was conducted to determine the agronomic feasibility of using NEXEN~(TM) (urea treated with the urease inhibitor N-(N-butyl) thiophosphoric triamide) for surface of nitrogen (N) fertilizer in irrigated cotton, particularly, for in-crop season N applications. Field experiments were established on a cotton farm in southern Queensland (Australia) during the 2015-2016 season. Fertilizers were applied at N rates equivalent to 0 (control), and 140, 200 (farm practice) and 260 kg ha~(-1), respectively, to provide a ±30% range of the standard rate used for the commercial crop. The fertilizer was applied on the surface, incorporated or a combination of both pre-plant incorporation and surface application in-crop. Results showed that there was nofertilizer type or nitrogen rate effect above an application rate of 140 kg ha~(-1) N. This was consistent with analyses of cottonseed Nfrom fertilizer-treated crop, which suggested that the crop was over-supplied with N above that rate. Given these results, the use of NEXEN~(TM) appears to be a promising alternative for (overhead) irrigated cotton, for both pre-plant and in-crop season application of N. Although commonly used in the Australian cotton industry, techniques such as 'water-run' urea are considered as low efficiency because of the associated environmental losses of N. Surface application of nBTPT-treated urea with conventional twin discs fertilizer spreaders may enable for improvedfield operating efficiency and reduced cost offertilizer application compared with other methods or fertilizer types that require soil incorporation. Our estimates indicated that operating costs may be reduced from approximately AUD16 per ha to AUD5 per ha (AUDI ~ USD0.75) when fertilizer is surface-applied compared with soil incorporation, because of lower energy requirements (draft) and labor (operating width, forward speed), with further savings achieved through improved timeliness. This alternative requires investigation to determine the potential risk of Nlosses through gaseous evolution (volatilization, N2/N2O), particularly in furrow irrigated systems.
机译:进行该研究以确定使用Nexen〜(TM)(用脲酶抑制剂N-(正丁基)硫代磷TiaNide处理的尿素处理的尿素)的农艺可行性,用于灌溉棉中的氮(N)肥料的表面,特别是为 - 作物季节N应用。在2015-2016赛季,在昆士兰州南部(澳大利亚)的棉田农场建立了现场实验。施肥剂分别以氮气施用,相当于0(对照)和140,200(农场实践)和260kg HA〜(-1),以提供商业作物的标准率的±30%。将肥料施用于表面,掺入或植物前掺入和表面施用的组合。结果表明,高于140kg Ha〜(-1)N的施用率高的乳梭菌类型或氮速率效应。这与棉籽Nfroc肥料治疗的作物的分析一致,这表明该作物被N次过度供应以上的速度。鉴于这些结果,使用Nexen〜(TM)的使用似乎是(开销)灌溉棉的有希望的替代方案,适用于N的植物前和作物季节应用。虽然澳大利亚棉花工业常用,技术由于“水运行”尿素被认为是低效率,因为NBTP处理的尿素与常规双盘的表面施加肥料施肥,可以为改进的地面运行效率和降低的成本发电机施用,与其他方法相比,或者需要土壤融合的肥料类型。我们的估计表明,当施肥与土壤融合相比,肥料与土壤融合相比,可能会从每公顷的约26人(Audi〜USD0.75)减少运营成本。前进速度),通过改善的时间性来实现进一步的节省。这种替代方案需要调查以通过气态演化(挥发,N2 / N2O)来确定Nlosses的潜在风险,特别是在沟槽灌溉系统中。

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