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解脂假丝酵母同时生物修复六价铬和五氯苯酚的分离及其工艺参数优化。

Isolation and process parameter optimization of Brevibacterium casei for simultaneous bioremediation of hexavalent chromium and pentachlorophenol.

机构信息

Department of Microbiology, Dr. R.M.L. Avadh University, Faizabad, India.

出版信息

J Basic Microbiol. 2013 Mar;53(3):277-90. doi: 10.1002/jobm.201100542. Epub 2012 Jun 26.

Abstract

Chromate and pentachlorophenol are major pollutants discharged through tanneries. Three bacteria resistant to high Cr(6+) and PCP concentrations simultaneously were isolated. The TVS-3 strain was tolerant to highest 850 mg l(-1) Cr(6+) and 1000 mg l(-1) PCP concentration and concomitantly reduced 69% Cr(6+) and degraded 72% PCP within 168 h at pH 7.5, 35 ± 1°C temperature, was selected and identified as Brevibacterium casei. At 168 h of growth, bacterium showed maximum PCP utilization of 720 mg l(-1) and released 900 mg l(-1) chloride ion. The bacterium exhibited remarkable ability to significantly reduce Cr(6+) and degrade PCP in presence of other metals, between 100-120 rpm aeration and over broad pH (6.5-10.0) and temperature (30-40°C) range. Maximum 78% Cr(6+) reduction and 82% PCP degradation was observed at pH 8.0, 35 ± 1°C within 168 h of incubation, 120 rpm and initial concentration of 850 mg l(-1) Cr(6+) and 1000 mg l(-1) PCP. This is the first study reporting 78% Cr(6+) reduction and 82% PCP degradation simultaneously by single native bacteria under wide growth conditions utilizing PCP as sole carbon source. This bacterium may potentially be useful for simultaneous bioremediation of Cr(6+) and PCP containing wastes in the environment.

摘要

铬酸盐和五氯苯酚是通过制革厂排放的主要污染物。同时分离到三株能耐受高浓度 Cr(6+)和 PCP 的细菌。TVS-3 菌株能耐受最高 850mg l(-1)Cr(6+)和 1000mg l(-1)PCP 浓度,在 pH7.5、35±1°C 温度下,168h 内同时还原 69%Cr(6+)和降解 72%PCP,被选为和鉴定为短杆菌属。在 168h 的生长过程中,细菌表现出最大的 PCP 利用率为 720mg l(-1),并释放 900mg l(-1)氯离子。该细菌在存在其他金属的情况下,具有显著的能力,能在 100-120rpm 通气和宽 pH(6.5-10.0)和温度(30-40°C)范围内,显著降低 Cr(6+)和降解 PCP。在 pH8.0、35±1°C、168h 孵育、120rpm 和初始浓度为 850mg l(-1)Cr(6+)和 1000mg l(-1)PCP 的条件下,观察到最大的 78%Cr(6+)还原和 82%PCP 降解。这是第一项报道单一本地细菌在宽生长条件下同时利用 PCP 作为唯一碳源还原 78%Cr(6+)和降解 82%PCP 的研究。该细菌可能在环境中同时生物修复含 Cr(6+)和 PCP 的废物方面具有潜在的用途。

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