The Use of Photosynthetic Microorganisms in Bioremediation

H. Nagase, D. Inthorn, K. Miyamoto
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引用次数: 6

Abstract

The microorganisms play an important role in selfpurification of water and soil environment as decomposers in the ecosystem. Microbial technologies, such as a activated sludge or oxidation pond processes, have been extensively applied to the treatment of industrial and domestic sewages to break down organic wastes. Another type of treatment is based on their ability to remove specific substances such as phosphorus, nitrates and heavy metals. The environmental pollution by toxic metals, especially Pb, Hg, Cd, is a potential hazard to the health and welfare of mankind. Many people in Japan suffered from diseases caused by pollution of heavy metals, such as ache-ache disease and Minamata disease. We feel misgivings about the similar environmental pollution in the developing countries, for the rapidly growing industrial operations would release heavy metals and those metals even at very low concentrations would be concentrated biologically through natural food chains. Microalgae can concentrate metals and transform them into less hazardous forms, and the use of microalgal biomass would offer a potential alternative to conventional methods for detoxification and for recovery of toxic or valuable metals. This review summarizes an information on physiological relations between heavy metals and microorganisms, especially microalgae, and presents some applications of algal biotechnology that has been developed to use microalgal biomass for bioremediation of heavy metals.
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光合微生物在生物修复中的应用
微生物作为生态系统的分解者,在水和土壤环境的自净化中起着重要的作用。微生物技术,如活性污泥或氧化池工艺,已广泛应用于处理工业和生活污水,以分解有机废物。另一种处理方法是基于它们去除磷、硝酸盐和重金属等特定物质的能力。有毒金属对环境的污染,特别是铅、汞、镉对人类健康和福祉的潜在危害。在日本,许多人患有由重金属污染引起的疾病,如疼痛病和水俣病。我们对发展中国家的类似环境污染感到担忧,因为迅速发展的工业活动会释放重金属,而这些金属即使浓度很低也会通过天然食物链进行生物浓缩。微藻可以浓缩金属并将其转化为危害较小的形式,使用微藻生物量将为解毒和回收有毒或有价值金属的传统方法提供一种潜在的替代方法。本文综述了重金属与微生物特别是微藻之间的生理关系,并介绍了利用微藻生物量进行重金属生物修复的藻类生物技术的一些应用。
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