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Importance of budgets for estimating the input of groundwater- derived nutrients to an eutrophic tidal river and estuary

机译:预算对估算富营养化潮汐河和河口地下水来源养分的投入的重要性

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摘要

Groundwater is often overlooked as a source of nutrients to estuaries and most previous groundwater-surface water exchange studies did not consider the input of dissolved organic nutrients. Here, we hypothesize that groundwater is contributing to high dissolved inorganic and organic nutrient concentrations in an eutrophic subtropical tidal river and estuary (Caboolture River, Queensland, Australia). Several spatial radon (~(222)Rn, a natural groundwater tracer) surveys indicated that the majority of groundwater discharge occurred in the tidal river just upstream of the estuary, and that the radon hotspot did not necessarily coincide with the nutrient hotspot A radon mass balance revealed that groundwater discharge into the tidal river was equivalent to about 50% of the gauged river flow in February 2012. Groundwater discharge apparently contributed 85% of ammonium and 35% of phosphate entering the estuary. In spite of significant correlations between radon and nitrate and dissolved organic nitrogen (DON) during spatial surveys, groundwater could account for only 7% of nitrate and 9% of DON inputs due to low groundwater concentrations and other sources (i.e., apparently a sewage treatment plant for nitrate and floodplain tributaries for DON). Because total dissolved nitrogen (TDN) was dominated by DON (69%) and nitrate (23%), the groundwater ammonium inputs were a minor source to the TDN pool within the tidal river and estuary. This study demonstrated that correlations between a groundwater tracer and nutrient concentrations do not necessarily illustrate causation. To assess how groundwater drives nutrient dynamics in estuaries, it may be important to include the tidal river (not only the estuarine salinity gradient) in field investigations, consider DON (not only ammonium and nitrate), and perform detailed budgets that include minor tributaries.
机译:地下水经常被忽略为河口的养分来源,并且以前的大多数地下水-地表水交换研究都没有考虑溶解有机养分的输入。在这里,我们假设地下水在富营养化的亚热带潮汐河和河口(澳大利亚昆士兰州的卡波罗河)中促进了无机和有机营养物的高浓度溶解。几次空间ra(〜(222)Rn,一种天然地下水示踪剂)调查表明,大部分地下水排放发生在河口上游的潮汐河中,hot热点不一定与养分热点一致。收支平衡表显示,2012年2月,流入潮汐河的地下水约占标定河流量的50%。显然,地下水排放贡献了85%的铵和35%的磷酸盐进入河口。尽管空间调查中ra与硝酸盐和溶解性有机氮(DON)之间存在显着相关性,但由于地下水浓度低和其他来源(例如,显然是污水处理),地下水可能仅占硝酸盐的7%和DON投入的9% DON硝酸盐和洪泛区支流的工厂)。由于总溶解氮(TDN)由DON(69%)和硝酸盐(23%)决定,因此,潮汐河口和河口TDN池中的地下水氨输入量很小。这项研究表明,地下水示踪剂与养分浓度之间的相关性并不一定说明因果关系。为了评估地下水如何驱动河口中的养分动态,将潮汐河(不仅是河口盐度梯度)包括在野外调查中,考虑DON(不仅是铵和硝酸盐),并执行包括次要支流的详细预算,可能很重要。

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  • 来源
    《Estuarine Coastal and Shelf Science》 |2014年第20期|65-76|共12页
  • 作者单位

    Centre for Coastal Biogeochemistry, School of Environment, Science and Engineering, Southern Cross University, Lismore, New South Wales, Australia;

    Centre for Coastal Biogeochemistry, School of Environment, Science and Engineering, Southern Cross University, Lismore, New South Wales, Australia;

    Centre for Coastal Biogeochemistry, School of Environment, Science and Engineering, Southern Cross University, Lismore, New South Wales, Australia;

    Centre for Coastal Biogeochemistry, School of Environment, Science and Engineering, Southern Cross University, Lismore, New South Wales, Australia;

    Centre for Coastal Biogeochemistry, School of Environment, Science and Engineering, Southern Cross University, Lismore, New South Wales, Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    submarine groundwater discharge; permeable sediments; nitrogen cycle; carbon cycle; subterranean estuaries;

    机译:海底地下水排放;渗透性沉积物;氮循环碳循环地下河口;

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