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首页> 外文期刊>Journal of Geochemical Exploration: Journal of the Association of Exploration Geochemists >Pb-Sr isotopic and geochemical constraints on sources and processes of lead contamination in well waters and soil from former fruit orchards, Pennsylvania, USA: A legacy of anthropogenic activities
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Pb-Sr isotopic and geochemical constraints on sources and processes of lead contamination in well waters and soil from former fruit orchards, Pennsylvania, USA: A legacy of anthropogenic activities

机译:Pb-Sr同位素和地球化学对美国宾夕法尼亚州前果园井水和土壤中铅污染的来源和过程的限制:人类活动的遗产

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Isotopic discrimination can be an effective tool in establishing a direct link between sources of Pb contamination and the presence of anomalously high concentrations of Pb in waters, soils, and organisms. Residential wells supplying water containing up to 1600 ppb Pb to houses built on the former Mohr orchards commercial site, near Allentown, PA, were evaluated to discern anthropogenic from geogenic sources. Pb (n = 144) and Sr (n = 40) isotopic data and REE (n = 29) data were determined for waters from residential wells, test wells (drilled for this study), and surface waters from pond and creeks. Local soils, sediments, bedrock, Zn-Pb mineralization and coal were also analyzed (n = 94), together with locally used Pb-As pesticide (n = 5). Waters from residential and test wells show overlapping values of Pb-206/Pb-207, Pb-208/Pb-207 and Sr-87/Sr-86. Larger negative Ce anomalies (Ce/Ce*) distinguish residential wells from test wells. Results show that residential and test well waters, sediments from residential water filters in water tanks, and surface waters display broad linear trends in Pb isotope plots. Pb isotope data for soils, bedrock, and pesticides have contrasting ranges and overlapping trends. Contributions of Pb from soils to residential well waters are limited and implicated primarily in wells having shallow water-bearing zones and carrying high sediment contents. Pb isotope data for residential wells, test wells, and surface waters show substantial overlap with Pb data reflecting anthropogenic actions (e.g., burning fossil fuels, industrial and urban processing activities). Limited contributions of Pb from bedrock, soils, and pesticides are evident. High Pb concentrations in the residential waters are likely related to sediment build up in residential water tanks. Redox reactions, triggered by influx of groundwater via wells into the residential water systems and leading to subtle changes in pH, are implicated in precipitation of Fe oxyhydroxides, oxidative scavenging of Ce(IV), and desorption and release of Pb into the residential water systems. The Pb isotope features in the residences and the region are best interpreted as reflecting a legacy of industrial Pb present in underlying aquifers that currently supply the drinking water wells. Published by Elsevier B.V.
机译:同位素歧视可以成为在铅污染源与水,土壤和生物体中异常高浓度铅存在之间建立直接联系的有效工具。对居住在宾夕法尼亚州艾伦镇附近的原莫尔果园商业基地上的房屋供水高达1600 ppb Pb的住宅井进行了评估,以区分人为与地源。确定了居民井,测试井(本研究中已钻探)的水以及池塘和小溪的地表水的Pb(n = 144)和Sr(n = 40)同位素数据和REE(n = 29)数据。还分析了当地土壤,沉积物,基岩,Zn-Pb矿化和煤炭(n = 94),以及当地使用的Pb-As农药(n = 5)。居民和测试井中的水显示出Pb-206 / Pb-207,Pb-208 / Pb-207和Sr-87 / Sr-86的重叠值。较大的负Ce异常(Ce / Ce *)将住宅井与测试井区分开。结果表明,住宅和测试井水,水箱中住宅滤水器的沉积物以及地表水在Pb同位素图中显示出广泛的线性趋势。土壤,基岩和农药的铅同位素数据具有相反的范围和重叠的趋势。铅从土壤到居民井水的贡献是有限的,并且主要涉及具有浅水区和高沉积物含量的井。居民井,测试井和地表水的铅同位素数据与反映人为行为(例如燃烧化石燃料,工业和城市加工活动)的铅数据有很大的重叠。基岩,土壤和农药对Pb的贡献有限。居民水中铅的高浓度很可能与居民水箱中的沉积物堆积有关。氧化还原反应是由于地下水通过井流入住宅水系统而引起的,并导致pH值的细微变化,与氢氧化正铁的沉淀,Ce(IV)的氧化清除以及铅的解吸和释放进入住宅水系统有关。 。住宅和该地区的Pb同位素特征最好被解释为反映了目前为饮用水井提供水源的地下含水层中存在的工业Pb遗留物。由Elsevier B.V.发布

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