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用于从生物浸出液和液体废物流中选择性回收金属的生物基技术基础。

Fundamentals of bio-based technologies for selective metal recovery from bio-leachates and liquid waste streams.

作者信息

Sieber Anna, Spiess Sabine, Rassy Wadih Y, Schild Dominik, Rieß Thomas, Singh Shalini, Jain Rohan, Schönberger Nora, Lederer Franziska, Kremser Klemens, Guebitz Georg M

机构信息

K1-MET GmbH, Linz, Austria.

Department of Science and Technology, Institute of Biotechnology, IMC University of Applied Sciences, Krems, Austria.

出版信息

Front Bioeng Biotechnol. 2025 Jan 9;12:1528992. doi: 10.3389/fbioe.2024.1528992. eCollection 2024.

Abstract

The number of metal-containing waste streams resulting from electronic end-of life products, metallurgical by-products, and mine tailings to name but a few, is increasing worldwide. In recent decades, the potential to exploit these waste streams as valuable secondary resources to meet the high demand of critical and economically important raw materials has become more prominent. In this review, fundamental principles of bio-based metal recovery technologies are discussed focusing on microbial metabolism-dependent and metabolism-independent mechanisms as sustainable alternatives to conventional chemical metal recovery methods. In contrast to previous reviews which have partially addressed this topic, a special focus will be given on how fundamental principles of bio-based recovery technologies can influence the selectivity and specificity of metal recovery. While conventional methods for metal recovery show benefits in terms of economic affordability, bio-based recovery technologies offer advantages in terms of efficiency and environmentally friendliness. Modifications and adaptations in the processes of biosorption, bioaccumulation and bioelectrochemical systems are highlighted, further emphasizing the application of metal-binding peptides and siderophores to increase selectivity in the recovery of metals. Single metal solutions or mixtures with a low complexity have been the focus of previous studies and reviews, but this does not reflect the nature of complex industrial effluents. Therefore, key challenges that arise when dealing with complex polymetallic solutions are addressed and the focus is set on optimizing bio-based technologies to recover metals efficiently and selectively from bio-leachates or liquid waste streams.

摘要

电子报废产品、冶金副产品和矿山尾矿等产生的含金属废物流数量在全球范围内不断增加。近几十年来,将这些废物流作为宝贵的二次资源来满足关键和经济上重要的原材料的高需求的潜力变得更加突出。在这篇综述中,讨论了生物基金属回收技术的基本原理,重点是依赖微生物代谢和不依赖微生物代谢的机制,作为传统化学金属回收方法的可持续替代方案。与之前部分涉及该主题的综述不同,将特别关注生物基回收技术的基本原理如何影响金属回收的选择性和特异性。虽然传统的金属回收方法在经济可承受性方面具有优势,但生物基回收技术在效率和环境友好性方面具有优势。突出了生物吸附、生物积累和生物电化学系统过程中的改性和适应性,进一步强调了金属结合肽和铁载体在提高金属回收选择性方面的应用。单一金属溶液或低复杂性混合物一直是先前研究和综述的重点,但这并不能反映复杂工业废水的性质。因此,解决了处理复杂多金属溶液时出现的关键挑战,并将重点放在优化生物基技术以从生物浸出液或液体废物流中高效、选择性地回收金属上。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac4d/11755047/523223ed4169/fbioe-12-1528992-g001.jpg

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