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From submarine to lacustrine groundwater discharge

机译:从海底到湖水的地下水排放

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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:自最近十年以来,海底地下水排放(SGD)及其在海洋养分循环中的作用是众所周知的。尽管最初的LGD报告已有50多年的历史了,但仍经常忽略淡水当量,即湖泊地下水排放(LGD)。我们确定了长期以来在淡水和海洋环境中都忽视地下水的9个不同原因,例如地下水排放的隐蔽性,界面的大小及其难以接近。尽管SGD和LGD的水文学存在一些根本差异,主要是由仅在SGD情况下发生的海水再循环引起的,但也存在许多相似之处,例如将排放物集中到近岸地区。地下水-地表水界面附近的地下水中的营养物浓度可能是人为增加的。由于含水层特征和生物地球化学过程的空间异质性,对地下水中营养物负荷的量化具有挑战性。氮和磷都可能在近岸含水层中移动,在许多案例研究中,已经报道了大量的地下水养分。

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