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去除重金属:生物吸附技术的前沿策略与进展

Removing Heavy Metals: Cutting-Edge Strategies and Advancements in Biosorption Technology.

作者信息

Staszak Katarzyna, Regel-Rosocka Magdalena

机构信息

Institute of Chemical Technology and Engineering, Faculty of Chemical Technology, Poznan University of Technology, ul. Berdychowo 4, 60-965 Poznan, Poland.

出版信息

Materials (Basel). 2024 Mar 1;17(5):1155. doi: 10.3390/ma17051155.

Abstract

This article explores recent advancements and innovative strategies in biosorption technology, with a particular focus on the removal of heavy metals, such as Cu(II), Pb(II), Cr(III), Cr(VI), Zn(II), and Ni(II), and a metalloid, As(V), from various sources. Detailed information on biosorbents, including their composition, structure, and performance metrics in heavy metal sorption, is presented. Specific attention is given to the numerical values of the adsorption capacities for each metal, showcasing the efficacy of biosorbents in removing Cu (up to 96.4%), Pb (up to 95%), Cr (up to 99.9%), Zn (up to 99%), Ni (up to 93.8%), and As (up to 92.9%) from wastewater and industrial effluents. In addition, the issue of biosorbent deactivation and failure over time is highlighted as it is crucial for the successful implementation of adsorption in practical applications. Such phenomena as blockage by other cations or chemical decomposition are reported, and chemical, thermal, and microwave treatments are indicated as effective regeneration techniques. Ongoing research should focus on the development of more resilient biosorbent materials, optimizing regeneration techniques, and exploring innovative approaches to improve the long-term performance and sustainability of biosorption technologies. The analysis showed that biosorption emerges as a promising strategy for alleviating pollutants in wastewater and industrial effluents, offering a sustainable and environmentally friendly approach to addressing water pollution challenges.

摘要

本文探讨了生物吸附技术的最新进展和创新策略,特别关注从各种来源去除重金属,如铜(II)、铅(II)、铬(III)、铬(VI)、锌(II)和镍(II),以及类金属砷(V)。文中介绍了生物吸附剂的详细信息,包括其组成、结构以及在重金属吸附中的性能指标。特别关注了每种金属的吸附容量数值,展示了生物吸附剂从废水和工业废水中去除铜(高达96.4%)、铅(高达95%)、铬(高达99.9%)、锌(高达99%)、镍(高达93.8%)和砷(高达92.9%)的效果。此外,文中强调了生物吸附剂随时间失活和失效的问题,因为这对于吸附在实际应用中的成功实施至关重要。报告了诸如被其他阳离子堵塞或化学分解等现象,并指出化学、热和微波处理是有效的再生技术。正在进行的研究应专注于开发更具弹性的生物吸附剂材料、优化再生技术,以及探索创新方法以提高生物吸附技术的长期性能和可持续性。分析表明,生物吸附作为减轻废水和工业废水中污染物的一种有前景的策略出现,为应对水污染挑战提供了一种可持续且环保的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ffdc/10934587/193f3dffbca3/materials-17-01155-g001.jpg

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