Srivastava N K, Majumder C B
Department of Chemical Engineering, Indian Institute of Technology Roorkee, Roorkee 247667, Uttarakhand, India.
J Hazard Mater. 2008 Feb 28;151(1):1-8. doi: 10.1016/j.jhazmat.2007.09.101. Epub 2007 Sep 29.
Most heavy metals are well-known toxic and carcinogenic agents and when discharged into the wastewater represent a serious threat to the human population and the fauna and flora of the receiving water bodies. In the present review paper, the sources have discussed the industrial source of heavy metals contamination in water, their toxic effects on the fauna and flora and the regulatory threshold limits of these heavy metals. The various parameters of the biofiltration processes, their mechanism for heavy metals removal along with the kinetics of biofilters and its modeling aspects have been discussed. The comparison of various physico-chemical treatment and the advantages of biofiltration over other conventional processes for treatment of heavy metals contaminated wastewater have also been discussed. The applications of genetic engineering in the modification of the microorganisms for increasing the efficiency of the biofiltration process for heavy metals removal have been critically analyzed. The results show that the efficiency of the process can be increased three to six folds with the application of recombinant microbial treatment.
大多数重金属都是众所周知的有毒和致癌物质,排放到废水中会对人类以及受纳水体中的动植物构成严重威胁。在本综述论文中,作者探讨了水中重金属污染的工业来源、它们对动植物的毒性影响以及这些重金属的监管阈值。讨论了生物过滤过程的各种参数、其去除重金属的机制以及生物滤池的动力学及其建模方面。还讨论了各种物理化学处理方法的比较以及生物过滤相对于其他传统重金属污染废水处理工艺的优势。对基因工程在改造微生物以提高生物过滤去除重金属效率方面的应用进行了批判性分析。结果表明,应用重组微生物处理可使该过程的效率提高三到六倍。