首页 | 本学科首页   官方微博 | 高级检索  
     

污染物的生物催化降解研究进展
引用本文:张作良,王凡业,刘均洪.污染物的生物催化降解研究进展[J].化工生产与技术,2005,12(3):26-29.
作者姓名:张作良  王凡业  刘均洪
作者单位:青岛科技大学化工学院,山东,青岛,266042
基金项目:国家自然科学基金资助课题,批准号20176019
摘    要:在生物催化和生物降解中微生物反应起了关键的作用。近来,与环境有关的细茵的基因组测序揭示了以前未被怀疑过的代谢潜能可以被开发利用。与细菌的生物降解能力相协调,细菌对污染物的趋化性可能归因于细茵与环境中其他生物体竞争能力以及有效修复能力。除了对有机污染物的生物矿化作用,某些细菌还能固定被污染蓄水层中的有毒重金属,从而进一步阐明了微生物转化污染物的潜能。

关 键 词:研究进展  催化降解  生物降解能力  生物矿化作用  微生物反应  基因组测序  有机污染物  有毒重金属  微生物转化  生物催化  开发利用  修复能力  竞争能力  细菌  生物体  趋化性  蓄水层  潜能  环境
修稿时间:2005年1月4日

Research Advances in Biocatalytic Degradation of Pollutants
Zhang Zuoliang,Wang Fanye,Liu Junhong.Research Advances in Biocatalytic Degradation of Pollutants[J].Chemical Production and Technology,2005,12(3):26-29.
Authors:Zhang Zuoliang  Wang Fanye  Liu Junhong
Abstract:Microbial reactions play key roles in biocatalysis and biodegradation. The recent genome sequencing of environmentally relevant bacteria has revealed previously unsuspected metabolic potential that could be exploited for useful purposes. In conjunction with their biodegradative capacities, bacterial chemotaxis towards pollutants might contribute to the ability of bacteria to compete with other organisms in the environment and to be efficient agents for bioremediation. In addition to the bacterial biomineralization of organic pollutants, certain bacteria are also capable of immobilizing toxic heavy metals in contaminated aquifers, further illustrating the potential of microorganisms for the removal of pollutants.
Keywords:biodegradation  chemotaxi  genome
本文献已被 CNKI 维普 万方数据 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号