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Runoff Water Quality Impact of Variable Mate Sidedress Nitrogen Application

机译:配施氮肥对径流水质的影响。

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In recent years, precision agriculture has received attention from producers, agribusiness, and governmental agencies in an effort to increase profitability and protect the environment. Many aspects of precision agriculture, such as soil fertility, application technology, and economic factors, have received substantial research attention; however, other aspects of precision agriculture have not been well documented. One important Issue that warrants increased attention is water quality. Because of precision application technology, variable rate fertilizer application based on within-field heterogeneity has the potential to decrease negative water quality impacts. Therefore, the objective of this paired watershed study was to evaluate the impact of variable rate nitrogen (N) fertilizer application on surface water quality. The variable rate (VR) field was divided into management units designated as poor, moderate, and high based on measured yield potential and received 100-160 kg/ha of N fertilizer.A portion of the N application was uniformly applied pre-plant or at planting, and rest was sidedressed at variable rates. The uniform rate (UR) field received uniform N application at 135 kg/ha. Surface water runoff and water quality were monitored foreach field, and collected samples were analyzed for N and phosphorus (P) constituents. During the 2-year monitoring period with 22 storm sampling events, variable rate N application resulted in few water quality differences compared to uniform rate application, but overall median NO_3 + NO_2-N concentrations were significantly lower for the variable rate field in the second year of variable rate N application. Overall and event mean NO_3 + NO_2-N concentrations from the variable rate field tended to behigher, but median concentrations from the uniform rate field tended to be higher.
机译:近年来,精确农业受到生产者,农业综合企业和政府机构的关注,以提高利润率和保护环境。精确农业的许多方面,例如土壤肥力,应用技术和经济因素,都受到了广泛的研究关注;但是,精确农业的其他方面还没有得到很好的记录。需要引起更多关注的一个重要问题是水质。由于采用了精确的施用技术,基于田间非均质性的可变速率肥料施用有减少水质负面影响的潜力。因此,这项成对的分水岭研究的目的是评估可变速率施氮肥对地表水质量的影响。根据测得的产量潜力,将可变速率(VR)字段分为管理单位,分别指定为差,中和高三个管理单位,并接收100-160公斤/公顷的氮肥。在播种时,其余部分以可变的比率进行了修剪。匀速(UR)田以135千克/公顷的速度均匀施氮。监测每个场的地表水径流和水质,并分析收集的样品中的氮和磷(P)成分。在为期22年的暴风雨采样事件的2年监测期内,可变速率N施用与均匀速率施用相比几乎没有水质差异,但第二年可变速率领域的总体中位数NO_3 + NO_2-N浓度显着降低可变速率N的应用程序。可变速率场的总体和事件平均NO_3 + NO_2-N浓度趋于升高,但均匀速率场的中值浓度趋于较高。

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