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Distribution and seasonal dynamics of arsenic in a shallow lake in northwestern New Jersey, USA

机译:美国新泽西州西北部浅湖中砷的分布和季节动态

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摘要

Elevated concentrations of arsenic (As) occurred during warm months in water from the outlet of Lake Mohawk in northwestern New Jersey. The shallow manmade lake is surrounded by residential development and used for recreation. Eutrophic conditions are addressed by alum and copper sulfate applications and aerators operating in the summer. In September 2005, arsenite was dominant in hypoxic to anoxic bottom water. Filterable As concentrations were about 1.6-2 times higher than those in the upper water column (23-25 ug/L, mostly arsenate). Hypoxic/anoxic and near-neutral bottom conditions formed during the summer, but became more oxic and alkaline as winter approached. Acid-leachable As concentrations in lake-bed sediments ranged up to 694 mg/kg in highly organic material from the tops of sediment cores but were <15 mg/kg in geologic substrate. During warm months, reduced As from the sediment diffuses into the water column and is oxidized; mixing by aerators, wind, and boat traffic spreads arsenate and metals, some in particulate form, throughout the water column. Similar levels of As in sediments of lakes treated with arsenic pesticides indicate that most of the As in Lake Mohawk probably derives from past use of arsenical pesticides, although records of applications are lacking. The annual loss of As at the lake outlet is only about 0.01% of the As calculated to be in the sediments, indicating that elevated levels of As in the lake will persist for decades.
机译:在新泽西州西北部莫霍克湖出水口的温暖月份,水中砷的浓度升高。浅浅的人造湖被住宅开发所环绕,可用于娱乐。夏季可使用明矾和硫酸铜以及通气装置解决富营养化问题。 2005年9月,砷在缺氧至缺氧底水中占主导地位。可过滤的砷浓度比上层水柱(23-25 ug / L,主要是砷酸盐)高约1.6-2倍。夏季形成低氧/缺氧和接近中性的底部条件,但随着冬季临近,变得越来越富氧和碱性。在沉积物核心顶部的高度有机物质中,湖床沉积物中酸可溶的As浓度范围高达694 mg / kg,而在地质基质中则小于15 mg / kg。在温暖的月份,沉积物中还原的As扩散到水柱中并被氧化。曝气器,风和船的流量混合将砷和金属(有些呈颗粒状)散布到整个水柱中。砷农药处理过的湖泊沉积物中的砷含量相似,这表明莫霍克湖中的大多数砷可能源自过去使用的农药,尽管缺乏应用记录。湖泊出口处的砷年损失量仅为沉积物中所计算的砷的约0.01%,这表明湖泊中砷的升高水平将持续数十年。

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  • 来源
    《Environmental Geochemistry and Health》 |2011年第1期|p.1-22|共22页
  • 作者单位

    US Geological Survey, New Jersey Water Research Center, 810 Bear Tavern Road, West Trenton, NJ 08628, USA;

    US Geological Survey, New Jersey Water Research Center, 810 Bear Tavern Road, West Trenton, NJ 08628, USA;

    US Geological Survey, New Jersey Water Research Center, 810 Bear Tavern Road, West Trenton, NJ 08628, USA;

    US Geological Survey, New Jersey Water Research Center, 810 Bear Tavern Road, West Trenton, NJ 08628, USA;

    New Jersey Water Supply Authority, 74 East Main Street, Somerville, NJ 08876, USA;

    New Jersey Department of Environmental Protection, Box 418, Trenton, NJ 08625, USA;

    New Jersey Department of Environmental Protection, Box 418, Trenton, NJ 08625, USA;

    New Jersey Department of Environmental Protection, Box 418, Trenton, NJ 08625, USA;

    New Jersey Department of Environmental Protection, Box 418, Trenton, NJ 08625, USA;

  • 收录信息 美国《科学引文索引》(SCI);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; lake water; lake sediments; redox; metals;

    机译:砷;湖水湖底沉积物;氧化还原金属;
  • 入库时间 2022-08-17 13:28:18

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