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多金属基律纳矿工厂工艺水中微生物群落的初步研究。

First insights to the microbial communities in the plant process water of the multi-metal Kevitsa mine.

机构信息

VTT Technical Research Centre of Finland Ltd., Tietotie 2, FIN-02150, Espoo, Finland.

VTT Technical Research Centre of Finland Ltd., Tietotie 2, FIN-02150, Espoo, Finland.

出版信息

Res Microbiol. 2020 Oct-Nov;171(7):230-242. doi: 10.1016/j.resmic.2020.07.001. Epub 2020 Aug 13.

Abstract

Metallurgical processes demand large quantities of water. However, in many locations, water is becoming scarce and process water recycling is needed. Closing water loops can be challenging due to build-up of flotation chemicals, metal ions and microorganisms in the recycled water affecting the flotation performance. Here, we have characterized the microbial communities over a 2-month period in different locations of the multi-metal Kevitsa mine in Northern Finland, by microbiome sequencing, enumeration of bacteria, archaea and fungi by qPCR, and cultivation. The microbial communities showed high diversity, but were dominated by Alpha- and Gammaproteobacteria. In addition, various fungal taxa were detected, whereas the archaeal taxa were only sparsely detected from the sequence data. The number of bacterial 16S rRNA gene copies in Process water and Ni thickener overflow varied between 0.5-3.3 × 10 mL, whereas the Flotation tailings showed two orders of magnitude lower amounts. Fungi were present at 3.0 × 10-8.1 × 10 5.8S rRNA gene copies mL in all samples, while the number of archaea fluctuated between 8.8 × 10-3.2 × 10 16S rRNA gene copies mL. The number of all microbial groups were generally lower in September than in August. When tested on 8 different cultivation media, the microorganisms generally responded positively to organic carbon, and were also shown to oxidize thiosulfate, which may indicate that build-up of organic flotation chemicals and sulfur species from the ore may cause the microbial numbers to increase. This study is part of the H2020 ITERAMS project (Grant agreement# 730480), which strives to improve the recycling of water and minimize the environmental impact of mines.

摘要

冶金过程需要大量的水。然而,在许多地方,水变得稀缺,需要回收利用工艺水。由于浮选化学品、金属离子和微生物在循环水中的积累,闭路水回路可能难以闭合,从而影响浮选性能。在这里,我们通过宏基因组测序、qPCR 细菌、古菌和真菌计数以及培养,对芬兰北部多金属 Kevitsa 矿不同位置的微生物群落进行了为期 2 个月的特征描述。微生物群落表现出很高的多样性,但以α-和γ-变形菌为主。此外,还检测到各种真菌类群,而古菌类群仅从序列数据中稀疏检测到。过程水和镍浓缩溢流中的细菌 16S rRNA 基因拷贝数在 0.5-3.3×10 mL 之间变化,而浮选尾矿的数量则低两个数量级。真菌在所有样品中以 3.0×10-8.1×10 5.8S rRNA 基因拷贝 mL 的浓度存在,而古菌的数量在 8.8×10-3.2×10 16S rRNA 基因拷贝 mL 之间波动。与 8 种不同的培养介质进行测试时,微生物通常对有机碳反应积极,并且还被证明可以氧化硫代硫酸盐,这可能表明矿石中有机浮选化学品和硫物种的积累可能导致微生物数量增加。本研究是 H2020 ITERAMS 项目(协议号#730480)的一部分,该项目旨在提高水的循环利用率并最大程度地减少矿山的环境影响。

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