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Metal and metalloid contaminants in atmospheric aerosols from mining operations.

机译:采矿作业中大气气溶胶中的金属和准金属污染物。

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摘要

Mining operations, including crushing, grinding, smelting, refining, and tailings management, are a significant source of airborne metal and metalloid contaminants such as As, Pb, Cd and other potentially toxic elements. Dust particles emitted from mining operations can accumulate in surrounding soils, natural waters and vegetation at relatively high concentrations through wind and water transport. Human exposure to the dust can occur through inhalation and, especially in the case of children, incidental dust ingestion, particularly during the early years when children are likely to exhibit pica. Furthermore, smelting operations release metals and metalloids in the form of fumes and ultra-fine particulate matter, which disperses more readily than coarser soil dusts. Of specific concern, these fine particulates can be transported to the lungs, allowing contaminants to be transferred into the blood stream. The main aim of this research is to assess the role of atmospheric aerosol and dust in the transport of metal and metalloid contaminants from mining operations to assess the deleterious impacts of these emissions to ecology and human health.;In a field campaign, ambient particulates from five mining sites and four reference sites were examined utilizing micro-orifice deposit impactors (MOUDI), total suspended particulate (TSP) collectors, a scanning mobility particle sizer (SMPS), and Dusttrak optical particle counters for an understanding of the fate and transport of atmospheric aerosols. One of the major findings from size-resolved chemical characterization at three mining sites showed that the majority of the contaminant concentrations were found in the fine size fraction (1 micrometer). Further, metal and metalloids (e.g. As, Cd, and Pb) around smelting activities are significantly enriched in both the coarse and fine size fraction when compared to reference sites. Additionally, with dust events being a growing concern because of predicted climate change and mine tailings being a significant source for dust, high wind conditions around mine tailings were studied for dust generation. Relative humidity was found to play an important predicting role in atmospheric dust concentration. More generally, findings indicate mining activities remain a serious threat to human health and ecology despite the regulations in place to protect from their pollution.
机译:采矿作业(包括压碎,研磨,冶炼,精炼和尾矿管理)是空气中的金属和准金属污染物(例如As,Pb,Cd和其他潜在有毒元素)的重要来源。采矿作业产生的粉尘颗粒可以通过风和水的运输以相对较高的浓度积聚在周围的土壤,天然水域和植被中。人体可能通过吸入接触粉尘,尤其是在儿童中,尤其是在儿童很容易表现出异食癖的早期,特别是在儿童中,会摄入粉尘。此外,冶炼操作会释放烟雾和超细颗粒物形式的金属和准金属,比较粗的土壤粉尘更容易分散。特别要注意的是,这些细颗粒可以被运送到肺部,从而使污染物被转移到血液中。这项研究的主要目的是评估大气中的气溶胶和粉尘在采矿作业的金属和类金属污染物的运输中的作用,以评估这些排放物对生态和人类健康的有害影响。利用微孔沉积物撞击器(MOUDI),总悬浮颗粒物(TSP)收集器,扫描淌度粒度仪(SMPS)和Dusttrak光学颗粒计数器对五个采矿站点和四个参考站点进行了检查,以了解其命运和运输大气气溶胶。在三个矿场中,通过大小分辨化学表征进行的主要发现之一表明,大多数污染物浓度都存在于细小粒度部分(<1微米)中。此外,与参考位置相比,冶炼活动周围的金属和准金属(例如As,Cd和Pb)在粗粒和细粒部分中均显着富集。此外,由于预计的气候变化以及尘埃尾矿是粉尘的重要来源,尘埃事件日益引起人们的关注,因此研究了尘埃尾矿周围的强风条件以产生粉尘。发现相对湿度在大气粉尘浓度中起重要的预测作用。更广泛地说,调查结果表明,尽管有保护其免受污染的法规,但采矿活动仍对人类健康和生态构成严重威胁。

著录项

  • 作者

    Csavina, Janae.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Engineering Mining.;Engineering Environmental.;Atmospheric Sciences.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 217 p.
  • 总页数 217
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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