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Biohydrometallurgy as a remediation strategy for marine sediments contaminated by heavy metals

机译:生物hydomethurgy作为由重金属污染的海洋沉积物的修复策略

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This paper deals with biohydrometallurgy applied for the remediation of sediments contaminated by heavy metals. Both metal mobilization by bioleaching and metal stabilization by sulfate reducing bacteria stimulation have been investigated. In the first case, leaching experiments were performed with different microbial strains: i) autotrophic Fe/S-oxidizing bacteria, ii) heterotrophic Fe reducing bacteria, and iii) a mix of them. The highest extraction yields were 90% for Cu, Cd, Hg and Zn and were achieved with a consortium of the autotrophic and the heterotrophic strains. In the second case, anaerobic microcosm experiments were performed according to a full factorial experiment where the main factors were: i) acetate, ii) inoculum of alloctonous sulfate-reducing bacteria and iii) treatment time. Significant changes on metal partitioning were observed in all the investigated treatments: in particular, Cu, Pb and Zn concentrations in the mobile fraction were reduced and the ones in the oxidizable fraction significantly increased. Anaerobic processes where hypothesized to lead to the formation of metal sulfides, relatively stable and less bioavailable than mobile fractions. The obtained results open new perspectives for biohydrometallurgy applied in the context of remediation strategies for sediments contaminated by heavy metals.
机译:本文涉及生物疗法冶金,用于修复由重金属污染的沉积物。研究了通过硫酸盐降低细菌刺激的通过生物浸出和金属稳定化的金属稳定性。在第一种情况下,用不同的微生物菌株进行浸出实验:I)自营养的Fe / S氧化细菌,II)异养氟镍铬还原细菌,III)。 Cu,Cd,Hg和Zn的最高提取产率为90%,并用自营养和异养菌株的联盟实现。在第二种情况下,厌氧微观实验根据主要因子的完整因子,主要因素是:i)乙酸盐,II)含有硫酸盐还原细菌和III的含量。在所有研究的处理中观察到金属分配的显着变化:特别是在移动级分中Cu,Pb和Zn浓度降低,并且可氧化级分中的浓度显着增加。厌氧过程,其中假设导致形成金属硫化物的形成,比移动级分相对稳定且较少的生物可利用。所得成果开放了在重型金属污染的沉积物的修复策略中应用的生物氢素冶金的新观点。

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