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首页> 外文期刊>Energy and Environment Research >Environmental Risk Due to Heavy Metal Contamination Caused by Old Copper Mining Activity at Lubietová Deposit, Slovakia
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Environmental Risk Due to Heavy Metal Contamination Caused by Old Copper Mining Activity at Lubietová Deposit, Slovakia

机译:斯洛伐克卢比托瓦矿床的旧铜矿开采活动引起的重金属污染导致的环境风险

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The more than 200 years old dump-fields at closed Cu (Ag) deposit ?ubietová are situated near the village settlement. Heavy metal space distribution is controlled by geochemical behaviour of the elements, depend on their content, solubility, migration and?sorption ability. The major sources of metals to the country components (soil, technogenous sediments, groundwater, surface water, plants…) may be classified according to expected solubility of primary minerals. The content of heavy metals in sediments and soils at the studied dump-field shows irregular distribution. Also the heavy metal contamination of the surface water and groundwater was studied both in the rainy as well as during the dry periods. The speciation of As and Sb proved in the water presence both of As 3+ and Sb 3+ as well as the less toxic As 5+ and Sb 5+ species. In the soil and sediments prevail As 5+ and Sb 5+ species while in?the water is often dominant the As 3+ and Sb 3+ form. The article also presents some results of the plant tissue degradation study under heavy metal contaminated conditions at dump-fields. The dump sediments and the primitive soil formed locally on the surface of the technogenous sediments show only limited acidification potential. The Fe 0 -barrier installation at bottom of the down part of the valley seems to be a good solution for the groundwater decontamination.
机译:封闭的铜(Ag)矿床?ubietová拥有200多年的垃圾场,位于村庄居民点附近。重金属的空间分布受元素的地球化学行为控制,取决于元素的含量,溶解度,迁移和吸收能力。国家成分的主要金属来源(土壤,技术沉积物,地下水,地表水,植物等)可根据主要矿物的预期溶解度进行分类。在研究的垃圾场,沉积物和土壤中的重金属含量呈不规则分布。此外,在雨季和干旱期间都研究了地表水和地下水的重金属污染。在水中存在As 3+和Sb 3+以及毒性较小的As 5+和Sb 5+物种时,证明了As和Sb的形态。在土壤和沉积物中,As 5+和Sb 5+占主导地位,而水中通常以As 3+和Sb 3+形式占优势。本文还介绍了在垃圾场重金属污染条件下植物组织降解研究的一些结果。在技​​术性沉积物表面局部形成的堆放沉积物和原始土壤仅显示出有限的酸化潜力。在山谷下部的底部安装Fe 0阻挡层似乎是解决地下水污染的好方法。

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