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Dissolved Organic Matter Quality in a Shallow Aquifer of Bangladesh: Implications for Arsenic Mobility

机译:孟加拉国浅层含水层中溶解的有机物质质量:对砷迁移的影响

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摘要

In some high arsenic (As) groundwater systems, correlations are observed between dissolved organic matter (DOM) and As concentrations, but in other systems, such relationships are absent. The role of labile DOM as the main driver of microbial reductive dissolution is not sufficient to explain the variation in DOM-As relationships. Other processes that may also influence As mobility include complexation of As by dissolved humic substances, and competitive sorption and electron shuttling reactions mediated by humics. To evaluate such humic DOM influences, we characterized the optical properties of filtered surface water (n = 10) and groundwater (n = 24) samples spanning an age gradient in Araihazar, Bangladesh. Further, we analyzed large volume fulvic acid (FA) isolates (n = 6) for optical properties, C and N content, and ~(13)C NMR spectroscopic distribution. Old groundwater (>30 years old) contained primarily sediment-derived DOM and had significantly higher (p < 0.001) dissolved As concentration than groundwater that was younger than 5 years old. Younger groundwater had DOM spectroscopic signatures similar to surface water DOM and characteristic of a sewage pollution influence. Associations between dissolved As, iron (Fe), and FA concentration and fluorescence properties of isolated FA in this field study suggest that aromatic, terrestrially derived FAs promote As-Fe-FA complexation reactions that may enhance As mobility.
机译:在某些高砷(As)地下水系统中,观察到溶解有机物(DOM)与As浓度之间的相关性,但在其他系统中则没有这种关系。不稳定的DOM作为微生物还原溶解的主要驱动力,不足以解释DOM-As关系的变化。其他也可能影响As迁移率的过程包括溶解的腐殖质物质对As的络合以及腐殖质介导的竞争性吸附和电子穿梭反应。为了评估此类腐殖质DOM的影响,我们表征了孟加拉国阿拉伊哈扎尔(Araihazar)年龄梯度的经过滤的地表水(n = 10)和地下水(n = 24)的光学特性。此外,我们分析了大容量富里酸(FA)分离物(n = 6)的光学性质,C和N含量以及〜(13)C NMR光谱分布。老的地下水(> 30岁)主要含有沉积物来源的DOM,并且比5岁以下的地下水的溶解砷浓度高得多(p <0.001)。较年轻的地下水具有类似于地表水DOM的DOM光谱特征,并且具有污水污染影响的特征。在该田间研究中,溶解的As,铁(Fe)和FA浓度与分离的FA的荧光性质之间的关联表明,地面衍生的芳香族FA可以促进As-Fe-FA络合反应,从而增强As的迁移率。

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  • 来源
    《Environmental Science & Technology》 |2015年第18期|10815-10824|共10页
  • 作者单位

    INSTAAR, University of Colorado, Boulder, Colorado 80309-0450, United States,Department of Civil, Construction, and Environmental Engineering, San Diego State University, San Diego, California 92182, United States;

    School of Earth and Environmental Sciences, Queens College, City University of New York, Flushing, New York 11367, United States,Lamont-Doherry Earth Observatory, Columbia University, Palisades, New York 10964, United States;

    INSTAAR, University of Colorado, Boulder, Colorado 80309-0450, United States;

    School of Natural Sciences, St. Edward's University, 3001 S. Congress Ave, Austin, Texas 78704, United States;

    INSTAAR, University of Colorado, Boulder, Colorado 80309-0450, United States;

    INSTAAR, University of Colorado, Boulder, Colorado 80309-0450, United States,Department of Biology, Duke University, Durham, North Carolina 27708, United States;

    Lamont-Doherry Earth Observatory, Columbia University, Palisades, New York 10964, United States,Gradient, Cambridge, Massachusetts 02130, United States;

    School of Earth and Environmental Sciences, Queens College, City University of New York, Flushing, New York 11367, United States,Department of Environmental Science and Management, North South University, Bashundhara, Dhaka-1229, Bangladesh;

    Department of Geology, University of Dhaka, Dhaka-1000, Bangladesh;

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