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Biodegradation of Higher Concentration Phenol by Pseudomonas aeruginosa HS-D38

机译:铜绿假单胞菌HS-D38对高浓度苯酚的生物降解

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Phenol is an important and common environmental pollutant. In this study, Pseudomonas aeruginosa HS-D38 strain was used to degrade phenol, and the degradation characteristics were investigated. Results indicated that HS-D38 strain could degrade phenol and utilize it as the sole carbon, nitrogen and energy source. UV-visible spectra analysis showed that 300 mgL-1 phenols could be completely degraded within 10 h by HS-D38 strain after an initial lag phase of 2 h, and the peak decreased gradually with the degradation of phenol by HS-D38. At the same time, an increase of OD600 values in the culture was also observed. Phenol could be mineralized at higher concentration of 500 mgL-1 by HS-D38 strain, whereas the degradation did not occur when the concentration was exceeded 700 mgL-1 even after 72 h. A key intermediate was detected analyzing the degradation solution with HPLC and it was identified to p-hydroxybenzoic acid. The peaks disappeared after 15 h indicating intermediates were also degraded by HS-D38 strain and the metabolism proceeded through the p-hydroxybenzoic acid pathway
机译:苯酚是一种重要且常见的环境污染物。本研究以铜绿假单胞菌HS-D38菌株降解苯酚,并对其降解特性进行了研究。结果表明,HS-D38菌株可以降解苯酚,并利用苯酚作为唯一的碳,氮和能源。紫外可见光谱分析表明,在初始滞后2 h后,HS-D38菌株可在10 h内将300 mgL-1苯酚完全降解,并且随着苯酚被HS-D38降解,峰值逐渐降低。同时,还观察到培养物中OD600值的增加。 HS-D38菌株可在500 mgL-1的较高浓度下使苯酚矿化,而当浓度超过700 mgL-1时甚至在72 h后也不会发生降解。通过HPLC分析降解溶液,检测出关键中间体,并将其鉴定为对羟基苯甲酸。 15小时后峰消失,表明中间体也被HS-D38菌株降解,并且代谢通过对羟基苯甲酸途径进行

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