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首页> 外文期刊>Journal of Environmental Management >Metal(loid)s remobilization and mineralogical transformations in smelter-polluted savanna soils under simulated wildfire conditions
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Metal(loid)s remobilization and mineralogical transformations in smelter-polluted savanna soils under simulated wildfire conditions

机译:在模拟野火条件下冶炼厂污染的大草原土壤中的金属(LOID)的重新化和矿物学变换

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摘要

The surroundings of mines and smelters may be exposed to wildfires, especially in semi-arid areas. The temperature-dependent releases of metal(loid)s (As, Cd, Cu, Pb, Zn) from biomass-rich savanna soils collected near a Cu smelter in Namibia have been studied under simulated wildfire conditions. Laboratory single-step combustion experiments (250-850 °C) and experiments with a continuous temperature increase (25-750 °C) were coupled with mineralogical investigations of the soils, ashes, and aerosols. Metals (Cd, Cu, Pb, Zn) were released at >550-600 °C, mostly at the highest temperatures, where complex aerosol particles, predominantly composed of slag-like aggregates, formed. In contrast, As exhibited several emission peaks at ~275 °C, ~370-410 °C, and ~580 °C, reflecting its complex speciation in the solid phase and indicating its remobilization, even during wildfires with moderate soil heating. At <500 °C, As was successively released via the transformation of As-bearing hydrous ferric oxides, arsenolite (As_2O_3) grains attached to the organic matter fragments, metal arsenates, and/or As-bearing apatite, followed by the thermal decomposition of enargite (Cu_3AsS_4) at >500 °C. The results indicate that the active and abandoned mining and smelting sites, especially those highly enriched in As, should be protected against wildfires, which can be responsible for substantial As re-emissions.
机译:矿山和冶炼厂的周围可能会暴露在野火上,特别是在半干旱地区。在模拟的野火条件下,研究了来自纳米比亚的Cu冶炼厂附近收集的生物质富含草苗土壤的金属(roid)s(如Cd,Cu,Pb,Zn)的温度依赖性释放。实验室单步燃烧实验(250-850℃)和连续温度升高(25-750℃)的实验与土壤,灰烬和气溶胶的矿物学研究相结合。金属(Cd,Cu,Pb,Zn)在> 550-600℃下释放,主要是在复杂的气溶胶颗粒的最高温度下,主要由炉渣状聚集体组成。相反,如在〜275℃,〜370-410℃,〜580℃下的几个发射峰,反映其在固相的复杂物质并表明它即使在具有中等土壤加热的野火期间也表明其重新化。在<500℃下,通过通过含有含量的含水铁氧化物的转化连续释放,砷沸石(AS_2O_3)晶粒附着在有机物质片段,金属制剂和/或承载磷灰石上,然后热分解enargite(Cu_3ass_4)> 500°C。结果表明,活性和废弃的采矿和冶炼部位,尤其是高度富有富裕的矿物,应免受野火的影响,这可能是重新排放的大量责任。

著录项

  • 来源
    《Journal of Environmental Management》 |2021年第1期|112899.1-112899.10|共10页
  • 作者单位

    Institute of Geochemistry Mineralogy and Mineral Resources Faculty of Science Charles University Albertov 6 128 00 Prague 2 Czech Republic;

    Institute of Geochemistry Mineralogy and Mineral Resources Faculty of Science Charles University Albertov 6 128 00 Prague 2 Czech Republic;

    Institute of Geology Academy of Sciences of the Czech Republic Rozvojova 269 165 00 Prague 6 Czech Republic;

    Institute of Geology Academy of Sciences of the Czech Republic Rozvojova 269 165 00 Prague 6 Czech Republic;

    Institute of Geochemistry Mineralogy and Mineral Resources Faculty of Science Charles University Albertov 6 128 00 Prague 2 Czech Republic;

    Czech Geological Survey Geologicka 6 152 00 Prague 5 Czech Republic;

    Department of Mining and Process Engineering Faculty of Engineering Namibia University of Science and Technology Private Bag 13388 Windhoek Namibia;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Wildfire; Soil; Metal(loid)s; Remobilization; Smelter pollution;

    机译:野火;土壤;金属(懒惰);重新化;冶炼厂污染;

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