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钒的动力学和含钒钛磁铁矿尾矿中固有细菌群落对选矿剂、温度和光照的响应。

Dynamics of vanadium and response of inherent bacterial communities in vanadium-titanium magnetite tailings to beneficiation agents, temperature, and illumination.

机构信息

College of Architecture and Environment, Sichuan University, Chengdu, 610065, China; Yibin Institute of Industrial Technology, Sichuan University Yibin Park, Yibin, 644000, China.

College of Architecture and Environment, Sichuan University, Chengdu, 610065, China; State Key Laboratory of Vanadium and Titanium Resources Comprehensive Utilization, Panzhihua, 617000, Sichuan, China.

出版信息

Environ Pollut. 2023 Aug 1;330:121743. doi: 10.1016/j.envpol.2023.121743. Epub 2023 May 4.

Abstract

Vanadium-titanium (V-Ti) magnetite tailings contain toxic metals that could potentially pollute the surrounding environment. However, the impact of beneficiation agents, an integral part of mining activities, on the dynamics of V and the microbial community composition in tailings remains unclear. To fill this knowledge gap, we compared the physicochemical properties and microbial community structure of V-Ti magnetite tailings under different environmental conditions, including illumination, temperature, and residual beneficiation agents (salicylhydroxamic acid, sodium isobutyl xanthate, and benzyl arsonic acid) during a 28-day reaction. The results revealed that beneficiation agents exacerbated the acidification of the tailings and the release of V, among which benzyl arsonic acid had the greatest impact. The concentration of soluble V in the leachate of tailings with benzyl arsonic acid was 6.4 times higher than that with deionized water. Moreover, illumination, high temperatures, and beneficiation agents contributed to the reduction of V in V-containing tailings. High-throughput sequencing revealed that Thiobacillus and Limnohabitans adapted to the tailings environment. Proteobacteria was the most diverse phylum, and the relative abundance was 85.0%-99.1%. Desulfovibrio, Thiobacillus, and Limnohabitans survived in the V-Ti magnetite tailings with residual beneficiation agents. These microorganisms could contribute to the development of bioremediation technologies. The main factors affecting the diversity and composition of bacteria in the tailings were Fe, Mn, V, SO, total nitrogen, and pH of the tailings. Illumination inhibited microbial community abundance, while the high temperature (39.5 °C) stimulated microbial community abundance. Overall, this study strengthens the understanding of the geochemical cycling of V in tailings influenced by residual beneficiation agents and the application of inherent microbial techniques in the remediation of tailing-affected environments.

摘要

钒钛(V-Ti)磁铁矿尾矿中含有有毒金属,可能对周围环境造成污染。然而,选矿剂作为采矿活动的一个组成部分,其对尾矿中 V 的动态和微生物群落组成的影响尚不清楚。为了填补这一知识空白,我们比较了不同环境条件下(包括光照、温度和残留选矿剂(水杨羟肟酸、异丁基黄药和苯胂酸))钒钛磁铁矿尾矿的物理化学性质和微生物群落结构,在 28 天的反应过程中。结果表明,选矿剂加剧了尾矿的酸化和 V 的释放,其中苯胂酸的影响最大。含苯胂酸尾矿浸出液中可溶 V 的浓度是去离子水的 6.4 倍。此外,光照、高温和选矿剂促进了含 V 尾矿中 V 的还原。高通量测序结果表明,硫杆菌属和 Limnohabitans 适应了尾矿环境。变形菌门是最具多样性的门,相对丰度为 85.0%-99.1%。脱硫弧菌、硫杆菌属和 Limnohabitans 在含有残留选矿剂的 V-Ti 磁铁矿尾矿中存活下来。这些微生物可以为生物修复技术的发展做出贡献。影响尾矿中细菌多样性和组成的主要因素是尾矿中的 Fe、Mn、V、SO、总氮和 pH 值。光照抑制了微生物群落的丰度,而高温(39.5°C)刺激了微生物群落的丰度。总的来说,这项研究加强了对受残留选矿剂影响的尾矿中 V 地球化学循环以及内在微生物技术在尾矿污染环境修复中的应用的理解。

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