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微藻——一种用于重金属修复的有前景的工具。

Microalgae - A promising tool for heavy metal remediation.

作者信息

Suresh Kumar K, Dahms Hans-Uwe, Won Eun-Ji, Lee Jae-Seong, Shin Kyung-Hoon

机构信息

Department of Marine Sciences and Convergent Technology, College of Science and Technology, Hanyang University, Ansan 426-791, South Korea.

Department of Biomedical Science and Environmental Biology, Kaohsiung Medical University, Kaohsiung 80424, Taiwan, ROC; Department of Marine Biotechnology and Resources, National Sun Yat-sen University, Kaohsiung 80424, Taiwan, ROC.

出版信息

Ecotoxicol Environ Saf. 2015 Mar;113:329-52. doi: 10.1016/j.ecoenv.2014.12.019. Epub 2014 Dec 19.

Abstract

Biotechnology of microalgae has gained popularity due to the growing need for novel environmental technologies and the development of innovative mass-production. Inexpensive growth requirements (solar light and CO2), and, the advantage of being utilized simultaneously for multiple technologies (e.g. carbon mitigation, biofuel production, and bioremediation) make microalgae suitable candidates for several ecofriendly technologies. Microalgae have developed an extensive spectrum of mechanisms (extracellular and intracellular) to cope with heavy metal toxicity. Their wide-spread occurrence along with their ability to grow and concentrate heavy metals, ascertains their suitability in practical applications of waste-water bioremediation. Heavy metal uptake by microalgae is affirmed to be superior to the prevalent physicochemical processes employed in the removal of toxic heavy metals. In order to evaluate their potential and to fill in the loopholes, it is essential to carry out a critical assessment of the existing microalgal technologies, and realize the need for development of commercially viable technologies involving strategic multidisciplinary approaches. This review summarizes several areas of heavy metal remediation from a microalgal perspective and provides an overview of various practical avenues of this technology. It particularly details heavy metals and microalgae which have been extensively studied, and provides a schematic representation of the mechanisms of heavy metal remediation in microalgae.

摘要

由于对新型环境技术的需求不断增长以及创新大规模生产的发展,微藻生物技术越来越受到关注。微藻生长所需成本低廉(太阳光和二氧化碳),并且具有可同时应用于多种技术(如碳减排、生物燃料生产和生物修复)的优势,使其成为多种生态友好型技术的合适选择。微藻已经发展出广泛的机制(细胞外和细胞内)来应对重金属毒性。它们广泛存在,并且具有生长和富集重金属的能力,这确定了它们在废水生物修复实际应用中的适用性。微藻对重金属的吸收被证实优于目前用于去除有毒重金属的物理化学方法。为了评估它们的潜力并填补空白,对现有的微藻技术进行批判性评估并认识到开发涉及战略多学科方法的商业可行技术的必要性至关重要。本综述从微藻角度总结了重金属修复的几个领域,并概述了该技术的各种实际应用途径。它特别详细介绍了已被广泛研究的重金属和微藻,并提供了微藻中重金属修复机制的示意图。

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