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作 者:刘虹[1] 张兰英[2] 刘娜[2] 高松[2] 李志萍[3]
机构地区:[1]吉林化工学院环境与生物工程学院,吉林吉林132022 [2]吉林大学环境与资源学院,吉林长春130026 [3]北京市水文地质工程地质大队,北京100195
出 处:《环境污染与防治》2013年第3期1-4,9,共5页Environmental Pollution & Control
基 金:国家自然科学基金资助项目(No.41072170);吉林省科技厅项目(No.20090415)
摘 要:采用可渗透性反应墙(PRB)协同微生物作用对石油烃污染地下水进行室内模拟修复。研究结果表明,生物PRB对石油烃污染地下水具有较好的处理效果。反应器运行200d后,生物PRB前端介质总石油烃(TPH)含量高,15个取样点的TPH质量浓度为0.74~5.42mg/L,后端介质TPH含量较低且分布较均匀,10个取样点中TPH均低于0.29mg/L,生物PRB出水中未检出TPH。采用聚合酶链式反应(PCR)—变性梯度凝胶电泳(DGGE)技术对生物PRB内的微生物群落结构进行分析,结果显示,生物PRB中微生物群落结构的相似性随着横向距离的增大而降低,其中B2与B5取样点微生物相似度最高,达83.1%。在生物PRB前端TPH浓度高的部位,微生物群落较为稳定,多样性较低,而后端TPH浓度低的部位,微生物群落不稳定,多样性较高。The permeable reactive barrier (PRB) combined with microbial action was designed for the bio-remediation of groundwater contaminated by petroleum hydrocarbons. The results indicated that the bio-PRB presented perfect performance for petroleum hydrocarbons removal. After 200 days of bioremediation,the total petroleum hydrocarbons (TPH) was higher in the fore-end of the reactor with the concentration ranged from 0.74-5.42 mg/L in the fore-end 15 sampling points,while it distributed averagely in the back-end of reactor with the TPH concentration of sampling points all lower than 0.29 mg/L. There was no TPH detected in the effluent of the reactor after remediation. The PCR-DGGE technology was used to analyze the microbial community structure of bio-PRB, atlas of DGGE showed that the similarity of microbial community decreased along the length of bio-PRB,and the highest similarity of 83. 1 ~//00 was found between B2 and 135. The microbial diversity was lower in fore-end of bio-PRB,microbial community was more stable in this area. Conversely,the microbial community was less stable and more diversiform in t back-end of reactor.
关 键 词:石油烃 污染地下水 可渗透性反应墙 微生物多样性
分 类 号:X523[环境科学与工程—环境工程]
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