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用于大规模评估地下水排放和非点源污染对沿海水域影响的耦合氡、甲烷和硝酸盐传感器。

Coupled radon, methane and nitrate sensors for large-scale assessment of groundwater discharge and non-point source pollution to coastal waters.

机构信息

Department of Marine Chemistry and Geochemistry, Woods Hole Oceanographic Institution, Woods Hole, MA 02543, USA.

出版信息

J Environ Radioact. 2010 Jul;101(7):553-63. doi: 10.1016/j.jenvrad.2009.12.004. Epub 2010 Jan 27.

Abstract

We constructed a survey system of radon/methane/nitrate/salinity to find sites of submarine groundwater discharge (SGD) and groundwater nitrate input. We deployed the system in Waquoit Bay and Boston Harbor, MA where we derived SGD rates using a mass balance of radon with methane serving as a fine resolution qualitative indicator of groundwater. In Waquoit Bay we identified several locations of enhanced groundwater discharge, out of which two (Childs and Quashnet Rivers) were studied in more detail. The Childs River was characterized by high nitrate input via groundwater discharge, while the Quashnet River SGD was notable but not a significant source of nitrate. Our radon survey of Boston Harbor revealed several sites with significant SGD, out of these Inner Harbor and parts of Dorchester Bay and Quincy Bay had groundwater fluxes accompanied by significant water column nitrogen concentrations. The survey system has proven effective in revealing areas of SGD and non-point source pollution.

摘要

我们构建了一个氡/甲烷/硝酸盐/盐度调查系统,以寻找海底地下水排放 (SGD) 和地下水硝酸盐输入的地点。我们在马萨诸塞州的 Waquoit 湾和波士顿港部署了该系统,在那里我们使用氡的质量平衡来推导 SGD 率,而甲烷则作为地下水的精细分辨率定性指标。在 Waquoit 湾,我们确定了几个地下水排放增强的地点,其中两个(Childs 和 Quashnet 河)进行了更详细的研究。Childs 河的特点是通过地下水排放输入高浓度硝酸盐,而 Quashnet 河的 SGD 虽然显著,但不是硝酸盐的重要来源。我们对波士顿港的氡调查显示,有几个地点存在大量的 SGD,其中 Inner 港以及 Dorchester 湾和 Quincy 湾的部分地区有伴随着显著水柱氮浓度的地下水通量。该调查系统已被证明可有效地揭示 SGD 和非点源污染的区域。

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