首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >The characterization, mobility, and persistence of roaster-derived arsenic in soils at Giant Mine, NWT
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The characterization, mobility, and persistence of roaster-derived arsenic in soils at Giant Mine, NWT

机译:NWT巨型矿区焙烧器衍生的砷的特征,流动性和持续性

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Approximately 20,000 tonnes of arsenic (As)-bearing emissions from roasting gold (Au)-bearing arsenopyrite ore were aerially released from 1949 to 1999 at Giant Mine, near Yellowknife, Canada. Soil samples collected within 4 km of the former roaster from sites undisturbed by mining or other human activity contain up to 7700 mg/kg total As. Total As concentrations are highest within a few cm of the surface, and particularly enriched in soil pockets on rock outcrops. Scanning electron microscopy and synchrotron microanalysis show that roaster-derived arsenic trioxide (As2O3) has persisted in shallow soils in the area. Roaster-generated maghemite and hematite are also present. These anthropogenic forms of As are much more common in near-surface soils than natural As-bearing minerals. Comparison of the proportions of As, Sb, and Au concentrations in outcrop soil samples and historic As2O3-rich dust captured by emission controls suggest most of the roaster-derived As in soils at Giant was likely deposited before 1964. Topographic restriction by rock outcrops and a dry, cold climate likely contribute to the persistence of As2O3 in outcrop soils. Limited post-depositional mobility of roaster-generated As is evident from textural relationships in thin section, the presence of As in weathering products, the variation of As:Sb with depth, and the elevated As concentrations in soil pore waters sampled by suction lysimeters. Synthetic gastric and lung fluids extracted an average of 34% and 18% of the total As in three adjacent soil samples. Given that As2O3 is one of the most toxic and bioaccessible forms of As, the persistence of roaster-generated As in shallow soils may be a human health risk at this site. (C) 2017 Elsevier Ltd. All rights reserved.
机译:从1949年到1999年,在加拿大伊黄王,1999年,大约20,000吨砷(Au) - Bearing Arsenopyrite Oree的排放量是从1949年到1999年起。在前所未受采矿或其他人类活动的地点的前烘焙网站内收集的土壤样品含有高达7700毫克/千克的总数。作为浓度的少数厘米的浓度,特别是在岩石露头的土壤口袋中特别富集。扫描电子显微镜和同步辐射微透视表明,焙烧炉衍生的三氧化砷(AS2O3)仍然存在于该地区的浅层土壤中。还存在焙烧炉生成的磁性和赤铁矿。这些人为形式的近表面含有比天然矿物更常见。露出土壤样品中的比例和排放控制捕获的历史性富含AS2O3的灰尘的比较表明,在1964年之前可能存入大部分土壤中的大部分焙烧剂衍生。岩石露头的地形限制干燥的冷酷气候可能有助于露出露出土壤的持久性。有限的沉积后流动性从薄截面中的纹理关系中显而易见的,在风化产品中存在,如下所示的变化,深度的变化,以及通过吸入式肌肉测定采样的土壤孔隙水中的浓度升高。合成胃和肺液平均提取34%和18%的总量,如三个相邻的土壤样品中。鉴于AS2O3是最有毒和生物的形式之一,因为在浅层土壤中焙烧生成的持续存在可能是本网站的人类健康风险。 (c)2017 Elsevier Ltd.保留所有权利。

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