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在接种产甲烷菌联合体或弗拉皮耶脱硫肠状菌PCP-1菌株的污染土壤中五氯苯酚的厌氧生物降解

Anaerobic biodegradation of pentachlorophenol in a contaminated soil inoculated with a methanogenic consortium or with Desulfitobacterium frappieri strain PCP-1.

作者信息

Beaudet R, Lévesque M J, Villemur R, Lanthier M, Chénier M, Lépine F, Bisaillon J G

机构信息

Centre de recherche en microbiologic appliqué, Université du Québec, Ville de Laval, Qc, Canada.

出版信息

Appl Microbiol Biotechnol. 1998 Jul;50(1):135-41. doi: 10.1007/s002530051268.

Abstract

Anaerobic biodegradation of pentachlorophenol (PCP) in a contaminated soil from a wood-treating industrial site was studied in soil slurry microcosms inoculated with a PCP-degrading methanogenic consortium. When the microcosms containing 10%-40% (w/v) soil were inoculated with the consortium, more than 90% of the PCP was removed in less than 30 days at 29 degrees C. Less-chlorinated phenols, mainly 3-chlorophenol were slowly degraded and accumulated in the cultures. Addition of glucose and sodium formate to the microcosms was not necessary, suggesting that the organic compounds in the soil can sustain the dechlorinating activity. Inoculation of Desulfitobacterium frappieri strain PCP-1 along with a 3-chlorophenol-degrading consortium in the microcosms also resulted in the rapid dechlorination of PCP and the slow degradation of 3-chlorophenol. Competitive polymerase chain reaction experiments showed that PCP-1 was present at the same level throughout the 21-day biotreatment. D. frappieri, strain PCP-1, inoculated into the soil microcosms, was able to remove PCP from soil containing up to 200 mg PCP/kg soil. However, reinoculation of the strain was necessary to achieve more than 95% PCP removal with a concentration of 300 mg and 500 mg PCP/kg soil. These results demonstrate that D. frappieri strain PCP-1 can be used effectively to dechlorinate PCP to 3-chlorophenol in contaminated soils.

摘要

在接种了五氯苯酚(PCP)降解产甲烷菌联合体的土壤泥浆微观世界中,研究了来自木材处理工业场地的污染土壤中PCP的厌氧生物降解情况。当向含有10%-40%(w/v)土壤的微观世界接种该联合体时,在29摄氏度下,30天内超过90%的PCP被去除。含氯量较低的酚类物质,主要是3-氯苯酚,在培养物中缓慢降解并积累。向微观世界中添加葡萄糖和甲酸钠并非必要,这表明土壤中的有机化合物能够维持脱氯活性。在微观世界中接种弗拉皮耶脱硫杆菌菌株PCP-1以及一个3-氯苯酚降解联合体,也导致了PCP的快速脱氯和3-氯苯酚的缓慢降解。竞争性聚合酶链反应实验表明,在整个21天的生物处理过程中,PCP-1的含量保持在同一水平。接种到土壤微观世界中的弗拉皮耶脱硫杆菌菌株PCP-1能够从每千克土壤中含高达200毫克PCP的土壤中去除PCP。然而,对于每千克土壤中PCP浓度为300毫克和500毫克的情况,要实现超过95%的PCP去除,有必要重新接种该菌株。这些结果表明,弗拉皮耶脱硫杆菌菌株PCP-1可有效地用于污染土壤中PCP脱氯生成3-氯苯酚。

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