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Sea Level Rise Induced Arsenic Release from Historically Contaminated Coastal Soils

机译:海平面上升引起历史污染的沿海土壤中砷的释放

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摘要

Climate change-induced perturbations in the hydrologic regime are expected to impact biogeochemical processes, including contaminant mobility and cycling. Elevated levels of geogenic and anthropogenic arsenic are found along many coasts around the world, most notably in south and southeast Asia but also in the United States, particularly along the Mid-Atlantic coast. The mechanism by and the extent to which arsenic may be released in contaminated coastal soils due to sea level rise are unknown. Here we show a series of data from a coastal arsenic-contaminated soil exposed to sea and river waters in biogeochemical microcosm reactors across field-validated redox conditions. We find that reducing conditions lead to arsenic release from historically contaminated coastal soils through reductive dissolution of arsenic-bearing mineral oxides in both sea and river water inundations, with less arsenic release from seawater scenarios than river water due to inhibition of oxide dissolution. For the first time, we systematically display gradation of solid phase soil-arsenic speciation across defined redox windows from reducing to oxidizing conditions in natural waters by combining biogeochemical microcosm experiments and X-ray absorption spectroscopy. Our results demonstrate the threat of sea level rise stands to impact arsenic release from contaminated coastal soils by changing redox conditions.
机译:预计气候变化引起的水文扰动将影响生物地球化学过程,包括污染物的迁移和循环。在世界许多沿海地区发现了高水平的地质和人为砷,最显着的地区是南亚和东南亚,但在美国也是如此,特别是在中大西洋沿岸。由于海平面上升,砷在受污染的沿海土壤中释放的机理和程度尚不清楚。在这里,我们显示了一系列数据,这些数据来自经过现场验证的氧化还原条件的生物地球化学微观反应堆中暴露于海水和河水的沿海砷污染土壤。我们发现还原性条件通过在海水和河水淹没中还原含砷矿物氧化物而导致溶解度从历史上受污染的沿海土壤中释放出来,由于抑制了氧化物的溶解,因此从海水中释放的砷比从河水中释放的砷要少。首次,我们结合生物地球化学微观实验和X射线吸收光谱,系统地显示了在自然水域中从还原到氧化条件下,氧化还原窗口中固相土壤砷形态的分级。我们的结果表明,海平面上升的威胁会通过改变氧化还原条件来影响受污染的沿海土壤中砷的释放。

著录项

  • 来源
    《Environmental Science & Technology》 |2017年第11期|5913-5922|共10页
  • 作者单位

    Department of Plant and Soil Sciences, Delaware Environmental Institute, University of Delaware, Newark, Delaware 19711, United States,Photon Sciences Division, Brookhaven National Laboratory, Building 743, Upton, New York 11973, United States;

    Department of Plant and Soil Sciences, Delaware Environmental Institute, University of Delaware, Newark, Delaware 19711, United States;

    Department of Plant and Soil Sciences, Delaware Environmental Institute, University of Delaware, Newark, Delaware 19711, United States;

    Photon Sciences Division, Brookhaven National Laboratory, Building 743, Upton, New York 11973, United States;

    Institute of Foundation Engineering, Water- and Waste-Management, School of Architecture and Civil Engineering, University of Wuppertal, Wuppertal 42285, Germany;

    Department of Plant and Soil Sciences, Delaware Environmental Institute, University of Delaware, Newark, Delaware 19711, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-17 13:57:35

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