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多层面生物固体/脱硫尾矿覆盖物在尾矿库上的微生物学特性。

Microbiology of a multi-layer biosolid/desulfurized tailings cover on a mill tailings impoundment.

机构信息

Department of Earth and Environmental Sciences, University of Waterloo, 200 University Ave W, Waterloo, ON, N2L 3G1, Canada; Centre for Sport, Exercise and Life Sciences, Faculty of Health and Wellbeing, Coventry University, Priory Street, Coventry, CV1 5FB, UK.

Department of Earth and Environmental Sciences, University of Waterloo, 200 University Ave W, Waterloo, ON, N2L 3G1, Canada.

出版信息

J Environ Manage. 2022 Jan 15;302(Pt A):114030. doi: 10.1016/j.jenvman.2021.114030. Epub 2021 Nov 5.

Abstract

The Strathcona Waste Water Treatment System (SWWTS; Sudbury, ON, Canada) has received mill tailings from Ni/Cu ore processing from 1970 to present. Demonstration-scale, multi-layer cover systems were installed on selected tailings deposition cells at the SWWTS. The cover systems are comprised of an upper layer of organic carbon-rich material, composed of a layer biosolids fertilizer along with composted municipal food and yard waste, then a layer of desulfurized, fine-grained tailings. Organic carbon components used in these covers promote microbial communities that consume O, thus decreasing sulfide oxidation rates in the underlying tailings. The aim of this study was to investigate the microbiology of the cover systems and the underlying tailings, using a combination of culture-dependent (most probable number) and culture-independent (16S rRNA gene amplicon sequencing) techniques, and assess the impact of the organic component of the cover system four to six years after implementation. Most tailings samples were characterized by circumneutral bulk pH and low concentrations of dissolved metals. The presence of the organic cover resulted in elevated counts of sulfate-reducers (by two orders of magnitude, compared to control samples) immediately below the organic cover, as well as an increased abundance of heterotrophic species (∼10 cells g) at greater depth (∼4 m) in the tailings profile. Mineral-oxidizing microorganisms were also present in the tailings, with neutrophilic sulfur-oxidizers dominating the samples (mean ∼10 cells g). Relative abundances of sulfur- and/or iron-oxidizers determined by sequencing ranged from 0.5 to 18.3% of total reads (mean ∼5.6% in amended tailings) and indicated the presence of local microenvironments with ongoing sulfide oxidation. This work provides a detailed characterization of the microbiology of a tailings impoundment with an organic cover, highlighting the opportunities associated with monitoring microbial processes in such remediation systems.

摘要

斯特拉斯科纳废水处理系统(SWWTS;安大略省萨德伯里)自 1970 年至今一直接收镍/铜矿石加工的尾矿。在 SWWTS 的选定尾矿沉积池上安装了示范规模的多层覆盖系统。这些覆盖系统由上层富含有机碳的材料组成,由一层生物固体肥料和堆肥的城市食物和庭院废物组成,然后是一层脱硫的细粒尾矿。这些覆盖物中使用的有机碳成分促进了消耗 O 的微生物群落的生长,从而降低了底层尾矿中的硫化物氧化速率。本研究旨在使用培养依赖(最可能数)和培养独立(16S rRNA 基因扩增子测序)技术相结合,调查覆盖系统和底层尾矿的微生物学,并评估覆盖系统有机成分在实施四到六年后的影响。大多数尾矿样品的特征是中性 bulk pH 和溶解金属浓度低。有机覆盖物的存在导致硫酸盐还原菌的计数立即升高(与对照样品相比,增加了两个数量级),并且在尾矿剖面的更大深度(约 4m)处,异养物种的丰度增加(约 10 个细胞 g)。尾矿中也存在矿物氧化微生物,其中嗜中性硫氧化菌占主导地位(平均约 10 个细胞 g)。通过测序确定的硫和/或铁氧化菌的相对丰度范围为总读数的 0.5 到 18.3%(在改性尾矿中平均约为 5.6%),表明存在持续进行硫化物氧化的局部微环境。这项工作详细描述了具有有机覆盖物的尾矿坝的微生物学特性,突出了监测此类修复系统中微生物过程的机会。

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