Hydrometallurgy and Environment Laboratory, Robert M. Buchan Department of Mining, Queen's University, 25 Union Street, Kingston, Ontario K7L 3N6, Canada.
Department of Chemical Engineering, Queen's University, 19 Division Street, Kingston, Ontario K7L 3N6, Canada.
ACS Appl Bio Mater. 2021 Mar 15;4(3):2274-2292. doi: 10.1021/acsabm.0c01582. Epub 2021 Feb 11.
The significant increase in economic concern and environmental restrictions has resulted in increasing interest in biotechnological solutions. The application of acidophilic, sulfur-oxidizing microorganisms in biomining and in the treatment of waste matrices has been extensively explored. However, to surmount the current challenges encountered by the industrial use of acidophiles, there is an opportunity for neutrophilic and alkaliphilic microorganisms to be comprehensively considered for the biooxidation of refractory sulfide materials. This review, for the first time, provides a detailed study of neutrophiles and alkaliphiles that have potential for oxidizing sulfur-containing wastes and sulfide refractory ores to recover entrapped metals especially gold in a sustainable manner. The study illustrates the applicability of neutrophilic and alkaliphilic microorganisms to provide better and sustainable alternatives for the recovery of metals from wastes from various sources as well as refractory materials. The microorganisms summarized in this review have been successfully used in oxidizing different sulfide sources by achieving high oxidizing efficiencies (>80%) in numerous technologies. The fundamentals of biooxidation along with possible mechanisms involved in the biooxidation have been discussed in detail.
经济关注和环境限制的显著增加导致人们对生物技术解决方案的兴趣日益增加。嗜酸、硫氧化微生物在生物采矿和处理废基质中的应用已经得到了广泛的探索。然而,为了克服嗜酸微生物在工业应用中遇到的当前挑战,有机会全面考虑中性和碱性微生物来生物氧化难处理的硫化物材料。这篇综述首次对具有氧化含硫废物和硫化物难浸出矿石潜力的中性和碱性微生物进行了详细研究,以可持续的方式回收包裹的金属,特别是金。该研究说明了中性和碱性微生物在从各种来源的废物和难处理材料中回收金属方面提供更好和更可持续替代方案的适用性。本综述中总结的微生物已成功地用于氧化不同的硫化物源,在许多技术中实现了 80%以上的高氧化效率。详细讨论了生物氧化的基本原理以及生物氧化中涉及的可能机制。