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首页> 外文期刊>Soil Systems >Influence of Soil and Manure Management Practices on Surface Runoff Phosphorus and Nitrogen Loss in a Corn Silage Production System: A Paired Watershed Approach
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Influence of Soil and Manure Management Practices on Surface Runoff Phosphorus and Nitrogen Loss in a Corn Silage Production System: A Paired Watershed Approach

机译:土壤和粪肥管理实践对玉米青贮生产系统表面径流磷和氮损失的影响:一种成对的流域方法

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Best management practices (BMPs) can mitigate erosion and nutrient runoff. We evaluated runoff losses for silage corn management systems using paired watershed fields in central Wisconsin. A two-year calibration period of fall-applied liquid dairy manure incorporated with chisel plow tillage (FMT) was followed by a three and a half-year treatment period. During the treatment period FMT was continued on one field, and three different systems on the others: (a) fall-applied manure and chisel tillage plus a vegetative buffer strip (BFMT); (b) a fall rye cover crop with spring manure application and chisel tillage (RSMT), both BMPs; a common system (c) fall manure application with spring chisel tillage (FMST). Year-round runoff monitoring included flow, suspended sediment (SS), total phosphorus (TP), dissolved reactive phosphorus (DRP), ammonium (NH4+-N), nitrate, and total nitrogen (TN). Results showed BFMT reduced runoff SS, TP, and TN concentration and load compared to FMT. The RSMT system reduced concentrations of SS, TP, and TN, but not load because of increased runoff. The FMST practice increased TP, DRP, and NH4+-N loads by 39, 376, and 197%, respectively. While BMPs showed mitigation potential for SS, TN, and TP, none controlled DRP, suggesting additional practices may be needed in manured corn silage fields with high runoff potential.
机译:最佳管理实践(BMPS)可以减轻侵蚀和营养径流。我们在威斯康星州中部使用配对的流域田地评估了Sialage玉米管理系统的径流损失。含有凿犁耕作(FMT)的秋天施加的液体乳制品粪肥(FMT)的两年校准时期均为三年半治疗期。在治疗期间,FMT在一个领域继续,以及其他三种不同的系统:(a)落下的粪便和凿子耕种加上植物性缓冲条(BFMT); (b)秋季黑麦覆盖作物,春季粪便应用和凿子耕作(RSMT),BMPS;具有弹簧凿耕(FMST)的共同系统(C)秋季粪便施用。全年径流监测包括流动,悬浮沉积物(SS),总磷(TP),溶解的反应性磷(DRP),铵(NH4 + -N),硝酸铵和总氮(TN)。结果表明,与FMT相比,BFMT降低了径流SS,TP和TN浓度和负荷。 RSMT系统减少了SS,TP和TN的浓度,但由于径流增加而不是负载。 FMST实践分别增加了TP,DRP和NH4 + -N载荷39,376和197%。虽然BMPS显示SS,TN和TP的缓解电位,但没有控制DRP,而是在具有高径流潜力的玉米青贮场中可能需要额外的实践。

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