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From submarine to lacustrine groundwater discharge

机译:从潜艇到湖泊地下水排放

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Submarine groundwater discharge (SGD) and its role in marine nutrient cycling are well known since the last decade. The freshwater equivalent, lacustrine groundwater discharge (LGD), is often still disregarded, although first reports of LGD are more than 50 years old. We identify nine different reasons why groundwater has long been disregarded in both freshwater and marine environments such as invisibility of groundwater discharge, the size of the interface and its difficult accessibility. Although there are some fundamental differences in the hydrology of SGD and LGD, caused primarily by seawater recirculation that occurs only in cases of SGD, there are also a lot of similarities such as a focusing of discharge to near-shore areas. Nutrient concentrations in groundwater near the groundwater-surface water interface might be anthropogenically enriched. Due to spatial heterogeneity of aquifer characteristics and biogeochemical processes, the quantification of groundwater-borne nutrient loads is challenging. Both nitrogen and phosphorus might be mobile in near-shore aquifers and in a lot of case studies large groundwater-borne nutrient loads have been reported.
机译:潜艇地下水排放(SGD)及其在海洋营养循环中的作用以来是自去年十年以来众所周知的。淡水当量,湖泊地下水排放(LGD)通常仍然忽略,尽管LGD的第一个报告超过50岁。我们确定九种不同的原因,为什么地下水在淡水和海洋环境中被忽视,如地下水排放的隐形,界面的大小及其困难的可访问性等。虽然在SGD和LGD的水文一些基本的分歧,只发生在SGD的情况下,海水循环造成的为主,也有很多相似的地方,如聚焦排放到近海地区。地下水位水界面附近地下水中的营养浓度可能是人为富集的。由于含水层特征和生物地球化学过程的空间异质性,地下水传播营养负荷的定量是具有挑战性的。氮和磷均可能是近岸含水层的移动,并且在很多情况下,已经报道了大型地下水的营养负荷。

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