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Use of an Oxygen-regulated Ultrasonic Seepage Meter for Direct Measurement of the Physics and Chemistry of Submarine Groundwater Discharge

机译:使用氧气调节的超声波渗漏仪直接测量海底地下水排放的物理和化学

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摘要

An oxygen-and-light-regulated seepage meter (RSM) was developed to directly measure fluxes of redox-sensitive elements and compounds across the sediment-water interface in estuaries and other water bodies. Submarine groundwater discharge (SGD) is measured manually by the bag-method, or in high temporal (1 s) resolution by an ultrasonic flow sensor. Results from field tests in Guinea Creek, Rehoboth Bay, DE indicate the RSM can effectively maintain ambient estuarine redox and light conditions, and accurately measure chemical fluxes across the sediment-water interface. By calculating an endmember-based advective chemical flux from the aquifer, the biogeochemical flux of an element or compound to or from the estuarine sediments due to biogeochemical processing can be calculated. During three seepage meter deployments in June and August, simultaneous recharge of brackish surface water and discharge of fresh or nearly fresh groundwater was measured during higher stages of the tide against upward groundwater advection. Mechanisms including (sub)tidal pumping, convection, and bioirrigation could be possible explanations for the observed exchange.
机译:开发了一种氧气和光调节的渗透仪(RSM),以直接测量跨河口和其他水体中沉积物-水界面的氧化还原敏感元素和化合物的通量。水下地下水排放量(SGD)可以通过布袋方法手动测量,也可以通过超声波流量传感器以高时间(1 s)分辨率进行测量。得克萨斯州里霍博斯湾几内亚河的现场测试结果表明,RSM可以有效地维持河口的氧化还原和光照条件,并可以准确地测量沉积物-水界面的化学通量。通过计算来自含水层的基于端元的对流化学通量,可以计算出由于生物地球化学处理而流入或流出河口沉积物的元素或化合物的生物地球化学通量。在6月和8月的三个渗流计部署期间,在潮汐较高阶段对地下水向上平流的过程中,同时测量了微咸的地表水的同时补给和淡水或近乎新鲜的地下水的排放。潮汐泵,对流和生物灌溉等机制可能是观测到的交换的可能解释。

著录项

  • 作者单位

    University of Delaware.;

  • 授予单位 University of Delaware.;
  • 学科 Geochemistry.;Hydrologic sciences.;Environmental science.
  • 学位 M.S.
  • 年度 2018
  • 页码 58 p.
  • 总页数 58
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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