废弃铅锌矿附近土壤和尾矿中铊和其他金属(类)s的环境影响和流动性(意大利阿尔卑斯山脉东北部赖布尔)。

IF 3.2 3区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL
Nicolò Barago, Elena Pavoni, Federico Floreani, Matteo Crosera, Gianpiero Adami, Davide Lenaz, Stefano Covelli
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引用次数: 0

摘要

停用矿区对环境质量的潜在影响是当地社区主要关切的问题,对水资源和人类健康构成风险。本研究旨在通过评价rabl矿区(意大利东北部)金属(类)元素的赋存情况,包括潜在毒性元素(pte,即As、Cd、Fe、Tl、Zn、Pb)和临界元素(As、Ge),探讨开采活动对地表环境的影响。矿渣堆附近金属(类)浓度升高(砷含量为1000 mg/kg,铅含量为> /kg,锌和铁含量为> /kg,锌和铁含量为> /kg),这些金属(类)由浮选尾矿和废石组成,分散在采矿村周围,储存在尾矿库中。相反,在矿山的上游,环境基本上没有受到污染。结果表明,总浸出浓度与可浸出金属(样金属)浓度呈正相关。尾矿(65.1-754 mg/kg Tl)被确定为可浸出Tl (11.4-255 mg/kg)的主要来源,而金属(样金属)在富有机质土壤中通常更具流动性,这表明由于土壤pH值低和潜在的可溶性有机金属络合物,金属(样金属)流动性随着土壤老化而增加。此外,研究结果表明,尾砂的再处理与残渣的回填可能是回收有价元素的潜在解决方案。最后,本研究的结果强调了采矿场地管理对于限制PTE扩散和减少对环境和公众健康的风险是多么重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Environmental impact and mobility of thallium and other metal(oid)s in soils and tailings near a decommissioned Zn-Pb mine (Raibl, NE Italian Alps).

The potential impact of decommissioned mining areas on environmental quality is of major concern for local communities, posing a risk to water resources and human health. This study aims to investigate the impact of extraction activities on the surface environment by evaluating the occurrence of metal(oid)s, including potentially toxic elements (PTEs, i.e. As, Cd, Fe, Tl, Zn, Pb) and critical elements (As, Ge), at the Zn-Pb Raibl mining area (northeastern Italy). Elevated concentrations of metal(oid)s are found near mine waste heaps (< 100 mg/kg for Tl, Sb, Cd, Ge; > 1,000 mg/kg for As; > 1% for Pb and > 10% for Zn and Fe), which are made up of flotation tailings and waste rocks scattered around the mining village and stored in the tailings impoundments. Conversely, upstream from the mine, the environment is largely uncontaminated. According to the results, total and leachable metal(oid) concentrations are positively correlated. Tailings (65.1-754 mg/kg of Tl) are identified as the primary source of leachable Tl (11.4-255 mg/kg) and metal(oid)s are generally more mobile in organic-rich soils, suggesting increased metal(oid) mobility with soil ageing due to low soil pH and potential soluble organometallic complexes. Furthermore, the findings suggest that reprocessing of mine tailings could be a potential solution to recover valuable elements together with residue backfilling. Lastly, results from this study highlight how crucial mining site management is to limit PTE dispersion and reducing risks to the environment and public health.

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来源期刊
Environmental Geochemistry and Health
Environmental Geochemistry and Health 环境科学-工程:环境
CiteScore
8.00
自引率
4.80%
发文量
279
审稿时长
4.2 months
期刊介绍: Environmental Geochemistry and Health publishes original research papers and review papers across the broad field of environmental geochemistry. Environmental geochemistry and health establishes and explains links between the natural or disturbed chemical composition of the earth’s surface and the health of plants, animals and people. Beneficial elements regulate or promote enzymatic and hormonal activity whereas other elements may be toxic. Bedrock geochemistry controls the composition of soil and hence that of water and vegetation. Environmental issues, such as pollution, arising from the extraction and use of mineral resources, are discussed. The effects of contaminants introduced into the earth’s geochemical systems are examined. Geochemical surveys of soil, water and plants show how major and trace elements are distributed geographically. Associated epidemiological studies reveal the possibility of causal links between the natural or disturbed geochemical environment and disease. Experimental research illuminates the nature or consequences of natural or disturbed geochemical processes. The journal particularly welcomes novel research linking environmental geochemistry and health issues on such topics as: heavy metals (including mercury), persistent organic pollutants (POPs), and mixed chemicals emitted through human activities, such as uncontrolled recycling of electronic-waste; waste recycling; surface-atmospheric interaction processes (natural and anthropogenic emissions, vertical transport, deposition, and physical-chemical interaction) of gases and aerosols; phytoremediation/restoration of contaminated sites; food contamination and safety; environmental effects of medicines; effects and toxicity of mixed pollutants; speciation of heavy metals/metalloids; effects of mining; disturbed geochemistry from human behavior, natural or man-made hazards; particle and nanoparticle toxicology; risk and the vulnerability of populations, etc.
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