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Sequential reductive and oxidative conditions used to biodegradation of organochlorine pesticides by native bacteria

机译:用于生物降解天然细菌的顺序还原和氧化条件

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Despite restrictions and bans on the use of many organochlorine pesticides in the 1970s and 1980s, they continue to persist in the environment today. This is the case of Agustin Codazzi, Cesar where the organochlorine pesticides were buried without control in the soil in 1999, after being banned their use. Nowadays is necessary to find the best method, which allows remediation of this soils. Reductive dechlorination is the first and limiting step in the metabolism of many organochlorine pesticides by anaerobic bacteria. In this study the reductive conditions were enhanced by addition of biogas as an auxiliary electron donors.The soil sample was taken from the zone at Agustin Codazzi, Cesar, and their characteristics correspond to a loam soil with low nutrient and slight compaction. The experimental tests were performed by varying the exposure time of a reducer to oxidative environment. Reductive conditions were enhanced by methane from biogas and oxidative environment was generated by air blown to stimulate a metabolic process of the soil native bacteria. Removals between 70 and 78.9% of compounds such as 4,4'-DDT, 4, 4'-DDD, 4,4'-DDE, Endrin and Trans-Chlordane, detected by gas chromatography analysis, were achieved under reductive/oxidative conditions during 120 days. Furthermore, bacterial strains capable of degrading organochlorine pesticides were selected from the native bacteria, and identified by the purified and identified based on its morphological characteristics and 16S rDNA sequencing.
机译:尽管在使用上世纪70年代和80年代的许多有机氯农药的限制和禁令,他们继续在今天的环境持久性。这是奥古斯丁·科达奇,塞萨尔其中有机氯农药埋没有1999年在土控制,被禁止使用后的情况。如今要找到最好的方法,它允许这种土壤修复。还原脱氯是许多有机氯农药通过厌氧细菌代谢第一和限制步骤。在这项研究中的还原条件,通过添加沼气的增强作为辅助电子donors.The土壤样品从在奥古斯丁科达齐,塞萨尔的区中取出,和它们的特性对应于壤土具有低养分和轻微压缩。实验测试是通过改变减速到氧化环境的曝光时间来执行。还原条件是由甲烷从沼气增强,并通过吹刺激天然土壤细菌的代谢过程中产生的空气氧化环境。 70和如4,4'- DDT,4,4'- DDD,4,4'- DDE,异狄氏剂和反式氯丹,通过气相色谱分析来检测,化合物的78.9%之间清除量的还原/氧化的条件下实现在120天。此外,从该天然细菌选择能够降解有机氯农药的细菌菌株,并确定了由纯化,并基于其形态特征和16S rDNA序列分析鉴定。

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