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细菌生物吸附剂与生物吸附作用

Bacterial biosorbents and biosorption.

作者信息

Vijayaraghavan K, Yun Yeoung-Sang

机构信息

Division of Environmental and Chemical Engineering, Research Institute of Industrial Technology, Chonbuk National University, Chonju 561-756, South Korea.

出版信息

Biotechnol Adv. 2008 May-Jun;26(3):266-91. doi: 10.1016/j.biotechadv.2008.02.002. Epub 2008 Feb 15.

Abstract

Biosorption is a technique that can be used for the removal of pollutants from waters, especially those that are not easily biodegradable such as metals and dyes. A variety of biomaterials are known to bind these pollutants, including bacteria, fungi, algae, and industrial and agricultural wastes. In this review, the biosorption abilities of bacterial biomass towards dyes and metal ions are emphasized. The properties of the cell wall constituents, such as peptidoglycan, and the role of functional groups, such as carboxyl, amine and phosphonate, are discussed on the basis of their biosorption potentials. The binding mechanisms, as well as the parameters influencing the passive uptake of pollutants, are analyzed. A detailed description of isotherm and kinetic models and the importance of mechanistic modeling are presented. A systematic comparison of literature, based on the metal/dye binding capacity of bacterial biomass under different conditions, is also provided. To enhance biosorption capacity, biomass modifications through chemical methods and genetic engineering are discussed. The problems associated with microbial biosorption are analyzed, and suitable remedies discussed. For the continuous treatment of effluents, an up-flow packed column configuration is suggested and the factors influencing its performance are discussed. The present review also highlights the necessity for the examination of biosorbents within real situations, as competition between solutes and water quality may affect the biosorption performance. Thus, this article reviews the achievements and current status of biosorption technology, and hopes to provide insights into this research frontier.

摘要

生物吸附是一种可用于去除水中污染物的技术,尤其适用于那些不易生物降解的污染物,如金属和染料。已知多种生物材料可结合这些污染物,包括细菌、真菌、藻类以及工农业废弃物。在本综述中,着重介绍了细菌生物质对染料和金属离子的生物吸附能力。基于细胞壁成分(如肽聚糖)的生物吸附潜力,讨论了其性质,以及羧基、胺基和膦酸酯等官能团的作用。分析了结合机制以及影响污染物被动吸收的参数。详细描述了等温线和动力学模型以及机理建模的重要性。还基于不同条件下细菌生物质的金属/染料结合能力,对文献进行了系统比较。为提高生物吸附能力,讨论了通过化学方法和基因工程对生物质进行改性。分析了与微生物生物吸附相关的问题,并讨论了合适的补救措施。对于废水的连续处理,建议采用上流式填充柱配置,并讨论了影响其性能的因素。本综述还强调了在实际情况下检验生物吸附剂的必要性,因为溶质之间的竞争和水质可能会影响生物吸附性能。因此,本文综述了生物吸附技术的成就和现状,希望能为这一研究前沿提供见解。

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