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首页> 外文期刊>The American mineralogist >A mineralogical, geochemical, and microbiogical assessment of the antimony- and arsenic-rich neutral mine drainage tailings near Pezinok, Slovakia
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A mineralogical, geochemical, and microbiogical assessment of the antimony- and arsenic-rich neutral mine drainage tailings near Pezinok, Slovakia

机译:斯洛伐克Pezinok附近富含锑和砷的中性矿山排水尾矿的矿物学,地球化学和微生物学评估

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摘要

The mineralogical composition of mining wastes deposited in voluminous tailing impoundments around the world is the key factor that controls retention and release of pollutants. Here we report a detailed mineralogical, geochemical, and microbiological investigation of two tailing impoundments near the town of Pezinok, Slovakia. The primary objective of this study was the mineralogy that formed in the impoundment after the deposition of the tailings (so-called tertiary minerals). Tertiary minerals include oxyhydroxides of Fe, Sb, As, Ca and are present as grains and as rims on primary ore minerals. X-ray microdiffraction data show that the iron oxyhydroxides with abundant As are X-ray amorphous. The limiting (lowest) Fe/As (wt/wt%) ratio in this material is 1.5; beyond this ratio, the hydrous ferric oxide does not retain arsenic. The grains with less As and little to moderate amounts of Sb are goethite; the grains where Sb dominates over Fe are poorly crystalline tripuhyite (FeSbO4). Even the most heavily contaminated samples (up to 29 wt% As2O5) are populated with diverse communities of microorganisms including typical arsenic-resistant heterotrophic species as well as iron reducers and sulfur oxidizers. Several recovered clones cluster within phylogenetic groups that are solely based on environmental sequences and do not contain a single cultivated species, thus calling for more work on such extreme environments.
机译:世界各地大量尾矿库中沉积的采矿废物的矿物学组成是控制污染物保留和释放的关键因素。在这里,我们报告了斯洛伐克Pezinok镇附近两个尾矿库的详细矿物学,地球化学和微生物学调查。这项研究的主要目的是在尾矿沉积后在蓄水池中形成的矿物学(所谓的第三矿物)。第三矿物包括Fe,Sb,As,Ca的羟基氧化物,并且以晶粒和边缘的形式存在于第一矿物矿物上。 X射线微衍射数据表明,具有丰富As的羟基氧化铁是X射线无定形的。该材料的极限(最低)Fe / As(wt / wt%)比率为1.5;超过该比例,含水三氧化二铁不会保留砷。砷含量低,锑含量低至中等的晶粒是针铁矿。 Sb在Fe上占主导地位的晶粒是不良的晶体三水铝石(FeSbO4)。即使是污染最严重的样品(高达29 wt%的As2O5)也充满了各种微生物群落,包括典型的抗砷异养物种以及铁还原剂和硫氧化剂。几个已恢复的克隆聚集在仅基于环境序列的系统发育组内,并且不包含单个栽培物种,因此需要在这种极端环境下进行更多工作。

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