首页> 外文期刊>Journal of Soil and Water Conservation >Effect of cover crops established at time of corn planting on phosphorus runoff from soils before and after dairy manure application
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Effect of cover crops established at time of corn planting on phosphorus runoff from soils before and after dairy manure application

机译:玉米种植时覆盖的农作物对施用乳肥前后土壤磷流失的影响

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Phosphorus (P) runoff from agricultural soils is a concern due to eutrophication. The simultaneous corn and cover crop system was developed by U.S. Department of Agriculture's Natural Resources Conservation Service (USDA-NRCS) for dairy farms in the northeastern United States, where short growing seasons have limited fall seeding of cover crops. The simultaneous corn and cover crop system uses post-emergence imidazolinone herbicides to allow for simultaneous seeding of cover crops with silage corn. Trials were established at two locations in the Cannonsville Reservoir watershed, New York, part of New York City's drinking water supply system, to assess the effects of this cover cropping system on water quality. Rain simulations (60 mm hr~(-1)) were conducted to evaluate the initial 30 minutes of runoff from small (1 x 2 m; 3 ft x 7 ft) plots before and after surface application of dairy manure (50 or 100 kg total P ha~(-1); 45 or 89 lb P ac~(-1)). Corn yields from plots interseeded with red clover compared most favorably with the conventionally cropped controls, with no significant differences in yields noted between the two treatments at either location. Prior to dairy manure application, losses of P in runoff were primarily a function of erosion. Because all cover crops increased ground cover (up to 81 percent greater than the control), total P loads in runoff were significantly lower from cover cropped plots (averaging 10 mg per plot) than from conventionally cropped controls (averaging 39 mg per plot). At the same time, suspended solids loads averaged 25.3 g (1 oz) from the control plots and 5.9 g (0.2 oz) from the cover crop plots. Despite concern that release of soluble P from the cover crops could enrich dissolved reactive P in runoff, dissolved reactive P losses from the simultaneous corn and cover crop system were generally not different from conventionally-cropped silage corn losses. Application of manure obscured cover crop/conventional silage corn treatment differences with regard to P runoff, with dissolved reactive P becoming the dominant form of P in runoff due to contributions of readily soluble P in manure. Because runoff P losses were already high from unmanured conventional silage corn plots, application of manure did not significantly increase P losses from some of the conventional silage corn treatments. Results highlight the agronomic and water quality benefits of the simultaneous corn and cover crop system, particularly when implemented with red clover.
机译:由于富营养化,来自农业土壤的磷(P)径流令人担忧。美国农业部自然资源保护局(USDA-NRCS)为美国东北部的奶牛场开发了玉米和覆盖作物同时种植系统,那里的生长季节短,限制了覆盖作物的秋季播种。玉米和地被作物同时种植系统使用出苗后的咪唑啉酮除草剂,以使青贮玉米同时播种地被作物。在纽约坎农斯维尔水库集水区的两个地点建立了试验,这是纽约市饮用水供应系统的一部分,以评估该覆盖作物系统对水质的影响。进行了降雨模拟(60 mm hr〜(-1)),以评估小面积(1 x 2 m; 3 ft x 7 ft)样地在施用乳肥(50或100 kg)之前和之后的最初30分钟径流总P ha〜(-1); 45或89 lb P ac〜(-1))。与常规种植的对照相比,与红三叶草交织的地块的玉米单产最有利,两种处理在两个地点的单产之间均无显着差异。在施肥前,径流中磷的损失主要是侵蚀作用。由于所有覆盖作物都增加了地被覆盖(比对照增加了多达81%),因此,与常规种植的对照相比(平均每个耕地39毫克),覆盖耕地(平均每个耕地10毫克)的径流总P负荷显着降低。同时,对照地块的平均悬浮固体负荷为25.3 g(1 oz),而覆被作物地的平均悬浮固体负荷为5.9 g(0.2 oz)。尽管有人担心覆盖作物释放可溶性磷会丰富径流中的溶解性反应磷,但同时种植玉米和覆盖作物系统中的溶解性反应磷损失与常规作物青贮玉米损失通常没有区别。肥料的施用掩盖了作物对作物/常规青贮玉米的处理对磷径流的差异,由于易溶磷在粪便中的贡献,溶解性反应性磷成为径流中磷的主要形式。由于未处理的常规青贮玉米田的径流磷损失已经很高,因此施用肥料不会显着增加一些常规青贮玉米处理的磷损失。结果突出显示了同时种植玉米和地上作物系统的农艺和水质优势,特别是与红三叶草配合使用时。

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