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生物吸附和生物积累——实际应用的前景。

Biosorption and bioaccumulation--the prospects for practical applications.

机构信息

Institute of Inorganic Technology and Mineral Fertilizers, Wrocław University of Technology, ul. Smoluchowskiego 25, Wrocław, Poland.

出版信息

Environ Int. 2010 Apr;36(3):299-307. doi: 10.1016/j.envint.2009.12.001. Epub 2010 Jan 6.

Abstract

The paper summarizes the present and future course of biosorption and bioaccumulation, as the branch of science, pointing out on their basic assumptions, philosophy and the goals. The processes are presented as new tools for separation technologies of XXI century. The paper is the discussion with the literature on the future prospects of those processes, pointing out that research should be oriented on the practical applications, in order to make technologies from the processes and also discusses other than environmental possible future applications. It presents an own point of view on these techniques, after some years of working in this very area. Biosorption and bioaccumulation, involve interactions and concentration of toxic metals or organic pollutants (e.g. dyes) in the biomass, either living (bioaccumulation) or non-living (biosorption). The processes play an important role in natural cycling of matter in the environment. The paper discusses the possibilities which offer research on pollutants-biomass interactions, pointing out that the key to elaborate an efficient method working for the nature would be to understand the mechanisms governing the processes, parameters which influence both equilibrium and kinetics, through the observation of naturally occurring phenomena. Only then we would be able to control and carry out under industrial regime, so the processes would work beneficially for the environment.

摘要

本文总结了生物吸附和生物积累的现状和未来发展趋势,作为科学的一个分支,指出了它们的基本假设、哲学和目标。这些过程被作为 21 世纪分离技术的新工具呈现出来。本文讨论了这些过程的未来前景,指出研究应该面向实际应用,以便从这些过程中开发出技术,并讨论了除环境之外可能的未来应用。在该领域工作了几年之后,本文提出了自己对这些技术的观点。生物吸附和生物积累涉及有毒金属或有机污染物(例如染料)在生物质中的相互作用和浓缩,无论是活的(生物积累)还是非活的(生物吸附)。这些过程在环境中物质的自然循环中起着重要作用。本文讨论了污染物-生物质相互作用研究提供的可能性,指出要开发出对自然有效的有效方法,关键是要通过观察自然发生的现象,了解控制这些过程的机制、影响平衡和动力学的参数。只有这样,我们才能在工业条件下进行控制和实施,使这些过程对环境有益。

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