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绿色生物表面活性剂从废物中可持续回收关键矿物质:综述

Sustainable Recovery of Critical Minerals from Wastes by Green Biosurfactants: A Review.

作者信息

Deravian Bita, Mulligan Catherine N

机构信息

Department of Building, Civil and Environmental Engineering, Concordia University, 1455 de Maisonneuve Blvd. W., Montreal, QC H3G 1M8, Canada.

出版信息

Molecules. 2025 Jun 4;30(11):2461. doi: 10.3390/molecules30112461.

Abstract

Biosurfactants have emerged as promising agents for environmental remediation due to their ability to complex, chelate, and remove heavy metals from contaminated environments. This review evaluates their potential for recovering critical minerals from waste materials to support renewable energy production, emphasizing the role of biosurfactant-metal interactions in advancing green recovery technologies and enhancing resource circularity. Among biosurfactants, rhamnolipids demonstrate a high affinity for metals such as lead, cadmium, and copper due to their strong stability constants and functional groups like carboxylates, with recovery efficiencies exceeding 75% under optimized conditions. Analytical techniques, including Inductively Coupled Plasma Mass Spectrometry (ICP-MS), Fourier-Transform Infrared spectroscopy (FTIR), and Scanning Electron Microscopy (SEM), are instrumental in assessing recovery efficiency and interaction mechanisms. The review introduces a Green Chemistry Metrics Framework for evaluating biosurfactant-based recovery processes, revealing 70-85% lower Environmental Factors compared to conventional methods. Significant research gaps exist in applying biosurfactants for extraction of metals like lithium and cobalt from batteries and other waste materials. Advancing biosurfactant-based technologies hold promise for efficient, sustainable metal recovery and resource circularity, addressing both resource scarcity and environmental protection challenges simultaneously.

摘要

生物表面活性剂因其能够络合、螯合和从受污染环境中去除重金属的能力,已成为环境修复的有前景的试剂。本综述评估了它们从废料中回收关键矿物质以支持可再生能源生产的潜力,强调了生物表面活性剂与金属相互作用在推进绿色回收技术和增强资源循环性方面的作用。在生物表面活性剂中,鼠李糖脂由于其强大的稳定性常数和羧酸盐等官能团,对铅、镉和铜等金属表现出高亲和力,在优化条件下回收效率超过75%。包括电感耦合等离子体质谱法(ICP-MS)、傅里叶变换红外光谱法(FTIR)和扫描电子显微镜(SEM)在内的分析技术有助于评估回收效率和相互作用机制。该综述引入了一个绿色化学指标框架来评估基于生物表面活性剂的回收过程,结果显示与传统方法相比,环境因子降低了70-85%。在将生物表面活性剂应用于从电池和其他废料中提取锂和钴等金属方面,存在重大研究差距。推进基于生物表面活性剂的技术有望实现高效、可持续的金属回收和资源循环,同时应对资源短缺和环境保护挑战。

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