首页> 外文会议>2011 International Symposium on Water Resource and Environmental Protection >Bioremediation of β-cypermethrin and 3-phenoxybenzoic acid in soils
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Bioremediation of β-cypermethrin and 3-phenoxybenzoic acid in soils

机译:β-氯氰菊酯和3-苯氧基苯甲酸在土壤中的生物修复

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β-cypermethrin (β-CP) is one of the most frequently and widely used kind of insecticides. Increasing use of β-CP has posed potential adverse effects on the environment; therefore, it is critically necessary to develop remediation strategies to remove β-CP from the environment. In this study, bioremediation efficiency of β-CP contaminated soils was assessed based on the results of laboratory experiment. The selected bacterium Achromobacter sp. strain P-01 was used to degrade β-CP and its major metabolite 3-phenoxybenzoic acid (3-PBA) in different soils. Studies on bioremediation in sterilized soil showed that strain P-01 exhibited efficient degradation of β-CP and 3-PBA (both 50 mg·kg−1) with a rate constant of 0.1857 and 0.1084 day−1, respectively. The degradation process followed the first-order kinetics and the half-life (T1/2) for β-CP and 3-PBA was 3.7 and 6.4 days, respectively. Studies on bioremediation in non-sterilized soil showed that degradation rates were 90.4% and 70.6% for β-CP and 3-PBA within 10 days after strain P-01 introduction, which was characterized by a constant of 0.3334 and 0.1341 day−1, respectively. Comparing with the control without inoculum, T1/2 for β-CP and 3-PBA reduced by 21.6–154.8 days. These results indicated that strain P-01 may have potential for use in bioremediation of β-CP contaminated environment.
机译:β-氯氰菊酯(β-CP)是最常使用的杀虫剂之一。越来越多地使用β-CP对环境造成了潜在的不利影响。因此,迫切需要制定补救策略以从环境中去除β-CP。在这项研究中,基于实验室实验的结果评估了被β-CP污染的土壤的生物修复效率。所选细菌无色杆菌属。 P-01菌株用于降解不同土壤中的β-CP及其主要代谢物3-苯氧基苯甲酸(3-PBA)。在无菌土壤中进行生物修复的研究表明,菌株P-01能够有效降解β-CP和3-PBA(均为50 mg·kg -1 ),速率常数为0.1857和0.1084 day -1 。 β-CP和3-PBA的降解过程遵循一级动力学,半衰期(T 1/2 )分别为3.7天和6.4天。在未灭菌的土壤中进行生物修复的研究表明,在引入P-01菌株后10天内,β-CP和3-PBA的降解率分别为90.4%和70.6%,其常数为0.3334和0.1341天 -1 。与没有接种的对照相比,β-CP和3-PBA的T 1/2 减少了21.6–154.8天。这些结果表明,菌株P-01可能具有用于生物修复β-CP污染环境的潜力。

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