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Letting Wet Spots be Wet: Restoring Natural Bioreactors in the Dissected Glacial Landscape

机译:让湿点变湿:在解剖的冰川景观中恢复天然生物反应器

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In this paper, we argue that there is tremendous potential for nitrate-N reductions to occur throughout the Corn Belt region of the USA if we simply let naturally occurring wet spots on the landscape be wet. Geologic and hydrologic data gathered in the Walnut Creek watershed located in south-central Iowa provides compelling evidence that substantial nutrient-processing capacity exists in this dissected glacial landscape. Self-similarity of stratigraphy, sedimentology and hydrology observed at all spatial scales in the watershed suggests that Holocene alluvial fill deposits provide a natural bioreactor for denitrification of upland groundwater nitrate-N; the occurrence of such deposits can be mapped to identify potential nitrogen sinks across the landscape. This approach to identifying potential nitrogen sinks is geology focused and extends potential locations for nutrient processing upstream into the headwater catchments of individual fields.
机译:在本文中,我们认为,如果仅使自然景观中的自然湿点变湿,就可能在美国整个玉米带地区发生硝酸盐氮还原的巨大潜力。在位于爱荷华州中南部的核桃溪流域收集的地质和水文数据提供了令人信服的证据,表明在该解剖的冰川景观中存在大量的养分处理能力。在分水岭的所有空间尺度上观察到的地层学,沉积学和水文学的自相似性表明,全新世冲积物充填物为陆地地下水硝酸盐-N的反硝化提供了天然的生物反应器。可以绘制此类沉积物的分布图,以识别整个景观中潜在的氮汇。这种识别潜在氮汇的方法是地质关注的,并将上游进行养分加工的潜在位置扩展到各个田地的源头集水区。

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