Soccol Carlos R, Vandenberghe Luciana P S, Woiciechowski Adenise L, Thomaz-Soccol Vanete, Correia Cristiane Tagliari, Pandey Ashok
'Biotechnology Processes Laboratory, Department of Chemical Engineering, Federal University of Paraná, PO Box 19011, CEP 81531-970 Curitiba, PR, Brazil.
Indian J Exp Biol. 2003 Sep;41(9):1030-45.
Industrial and environmental biotechnology are going to new paths, resulting in processes with "clean technologies", with the maximum production and the less residues. Technologies of remediation and bioremediation are continuously being improved using genetically modified microorganisms or those naturally occurring, to clean residues and contaminated areas from toxic organics. Bioremediation of soils, water and marine environments has many advantages but at the same time it is a challenge for the researchers and engineers. Consequently, it is extremely important to carry out feasibility study based on pilot-testing before starting a remediation project in order to determine the best conditions for the process. The article presents a brief review of bioremediation including the description of the different methods applied to soil and industrial wastes, and, finally, some experiences of solid-state fermentation in relation to bioremediation.
工业生物技术和环境生物技术正迈向新的道路,从而产生采用“清洁技术”的工艺,实现产量最大化且残留物最少。修复和生物修复技术不断利用基因改造微生物或天然存在的微生物进行改进,以清除有毒有机物残留和污染区域。土壤、水和海洋环境的生物修复具有诸多优势,但同时对研究人员和工程师而言也是一项挑战。因此,在启动修复项目之前基于中试进行可行性研究以确定该工艺的最佳条件极为重要。本文简要综述了生物修复,包括对应用于土壤和工业废物的不同方法的描述,最后介绍了与生物修复相关的固态发酵的一些经验。