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首页> 外文期刊>Hydrological Processes >Cover crops and precipitation influence soluble reactive phosphorus losses via tile drain discharge in an agricultural watershed
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Cover crops and precipitation influence soluble reactive phosphorus losses via tile drain discharge in an agricultural watershed

机译:覆盖农作物和降水会通过瓷砖排水口放电在农业流域中脱落,影响可溶性反应性磷损失

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摘要

Subsurface tile drainage speeds water removal from agricultural fields that are historically prone to flooding. While managed drainage systems improve crop yields, they can also contribute tothe eutrophication of downstream ecosystems, as tile-drained systems are conduits for nutrients to adjacent waterways. The changing climate of the Midwestern US has already altered precipitation regimes which will likely continue into the future, with unknown effects on tile drain water and nutrient loss to waterways. Adding vegetative cover (i.e., as winter cover crops) is one approach that can retain water and nutrients on fields to minimize export via tile drains. In the current study, we evaluate the effect of cover crops on tile drain discharge and soluble reactive phosphorus (SRP) loads using bi-monthly measurements from 43 unique tile outlets draining fields with or without cover crops in two watersheds in northern Indiana. Using four water years of data (n = 844 measurements), we examined the role of short-term antecedent precipitation conditions and variation in soil biogeochemistry in mediating the effect of cover crops on tile drain flow and SRP loads. We observed significant effects of cover crops on both tile drain discharge and SRP loads, but these results were season and watershed specific. Cover crop effects were identified only in spring, where their presence reduced tile drain discharge in both watersheds and SRP loads in one watershed. Varying effects on SRP loads between watersheds were attributed to different soil biogeochemical characteristics, where soils with lower bioavailable P and higher P sorption capacity were less likely to have a cover crop effect. Antecedent precipitation was important in spring, and cover crop differences were still evident during periods of wet and dry antecedent precipitation conditions. Overall, we show that cover crops have the potential to significantly decrease spring tile drain P export, and these effects are resilient to a wide range of precipitation conditions.
机译:地下瓦片排水速度从历史上容易发生洪水的农业领域的含水。虽然管理排水系统改善了作物产量,但它们也可以促使下游生态系统的富营养化,因为瓷砖排水系统是营养成分的营养素。美国中西部的变化的气候已经改变了降水制度,这可能持续到未来,对瓷砖排水和养分对水道的营养损失而有不明的影响。添加植物覆盖物(即,作为冬季覆盖作物)是一种可以在田地中保留水和营养物的一种方法,以尽量减少通过瓷砖排水管的出口。在目前的研究中,我们使用来自印第安纳州的两个流域的43个独特的瓷砖出口排放场的双月测量来评估覆盖污水排放和可溶性反应性磷(SRP)载荷的效果。使用四个水位的数据(n = 844次测量),我们研究了短期前一种沉淀条件和土壤生物地球化学的变化在介导覆盖作物对瓷砖排水流量和SRP载荷的影响中的作用。我们观察到覆盖作物对瓷砖排出放电和SRP载荷的显着影响,但这些结果是季节和流域特异性。仅在春天鉴定覆盖作物效果,其中它们在一个流域中的流域和SRP载荷中降低了降低的瓷砖漏极放电。水域间对水域之间的SRP载荷的影响归因于不同的土壤生物地球化学特征,其中生物可利用的P和更高的P吸附能力较低的土壤不太可能具有覆盖作物效应。在潮湿和干燥的前沉淀条件的时期,伴随着春季的前沉淀在春季,覆盖作物差异仍然是显而易见的。总体而言,我们表明封面作物有可能显着降低弹簧瓷砖排出P导出,并且这些效果是各种降水条件的弹性。

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