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首页> 外文期刊>Journal of Hazardous Materials >Occurrence of arsenite in surface and groundwater associated with a perennial stream located in Western Nebraska, USA
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Occurrence of arsenite in surface and groundwater associated with a perennial stream located in Western Nebraska, USA

机译:与位于美国西部内布拉斯加州的多年生溪流相关的表面和地下水中的砷酸盐发生

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摘要

Dissolved arsenic typically results from chemical weathering of arsenic rich sediments and is most often found in oxidized forms in surface water. The mobility of arsenic is controlled by its valence state and also by its association with iron oxides minerals, the forms of which are both influenced by abiotic and biotic processes in aqueous environment. In this study, speciation methods were used to measure and confirm the presence of reduced arsenic species in the surface water of Frenchman creek, a gaining stream that crosses the ColoradoNebraska border. Selective extraction analysis of aquifer and stream bed sediments shows that the bulk of the arsenic occurs with labile iron-rich oxy(hydroxide) minerals. Total dissolved arsenic in surface and groundwater ranged from similar to 3-18 mu g L-1, and reduced arsenic species comprise about 41% of the total dissolved arsenic (16.0 mu g L-1) in Frenchman creek. Leachable arsenic in the aquifer sediment samples ranged up to 1553 mu g kg(-1), while samples from Frenchman creek bed sediments contained 4218 mu g kg(-1). Dynamic surface and groundwater interaction sustains arsenite in iron-rich surface headwaters, and the implied toxicity of reduced arsenic in this hydrogeological setting, which can be important in surface water environments around the globe.
机译:溶解的砷通常由砷沉积物的化学风化来产生,并且最常在地表水中氧化形式发现。砷的迁移率由其价态控制,并且还通过其与氧化铁矿物质的关系,其形式既受非生物和生物环境在水性环境中受影响。在这项研究中,使用物种方法来测量并确认法国人Creek地表水中减少砷物种的存在,这是一种穿过Coloradysbraska边界的渐进流。含水层和流床沉积物的选择性提取分析表明,砷的大部分砷(氢氧化物)矿物质发生。表面和地下水中的总溶解砷远程不同于3-18μg1-1,并且还原的砷物种包含法国克里克的总溶解砷(16.0μmgl-1)的约41%。含水层沉积物样品中可浸出的砷可达1553μgkg(-1),而法国人溪床沉积物的样品含有4218μmg kg(-1)。动态表面和地下水相互作用在铁表面返波中维持砷酸盐,并且在该水文地理环境中减少砷的隐含毒性,这在全球的地表水环境中可能是重要的。

著录项

  • 来源
    《Journal of Hazardous Materials》 |2021年第3期|126170.1-126170.10|共10页
  • 作者单位

    Univ Nebraska Nebraska Water Ctr Robert B Daugherty Water Food Global Inst Water Sci Lab 109 Lincoln NE 68583 USA;

    Natl Inst Hydrol Environm Hydrol Div Roorkee 247667 Uttarakhand India;

    Univ Nebraska Sch Biol Sci 232 Manter Hall Lincoln NE 68588 USA|Univ Nebraska Robert B Daugherty Water Food Inst 232 Manter Hall Lincoln NE 68588 USA;

    Univ Nebraska Sch Biol Sci 232 Manter Hall Lincoln NE 68588 USA|Univ Nebraska Robert B Daugherty Water Food Inst 232 Manter Hall Lincoln NE 68588 USA|Univ Nebraska Dept Earth & Atmospher Sci 316 Bessey Hall Lincoln NE 68588 USA|Univ Nebraska Robert B Daugherty Water Food Global Inst 316 Bessey Hall Lincoln NE 68588 USA;

    Univ Nebraska Sch Biol Sci 232 Manter Hall Lincoln NE 68588 USA|Univ Nebraska Robert B Daugherty Water Food Inst 232 Manter Hall Lincoln NE 68588 USA;

    Indian Inst Technol Gandhinagar Discipline Earth Sci Gandhinagar 382355 Gujarat India;

    Univ Nebraska Sch Nat Resources Lincoln NE 68583 USA|Univ Nebraska Nebraska Water Ctr Robert B Daugherty Water Food Global Inst Water Sci Lab 202 Lincoln NE 68583 USA;

  • 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
  • 关键词

    Arsenic; Surface-groundwater interaction; Reducing environment; Headwaters; Sediment; Speciation;

    机译:砷;表面地下水相互作用;减少环境;返波;沉积物;物种;

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