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Metabolic profile analysis and kinetics of p-cresol biodegradation by an indigenous Pseudomonas citronellolis NS1 isolated from coke oven wastewater

机译:从焦炉废水中分离的土着假鼠霉素中的p-cresol生物降解的代谢剖面分析和动力学

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摘要

A p-cresol degrading bacterial strain was isolated from coke oven wastewater of an iron and steel plant industry. The isolated strain was identified as Pseudomonas citronellolis NS1 by 16S rRNA gene sequencing method. The isolated Pseudomonas species could degrade 1200 mg l(-1) of p-cresol completely in 40 h. Further, at 1200 mg l(-1) of initial p-cresol more than 95.4% TOC and 98.5% toxicity removal were also achieved by the microbial culture. The metabolic pathway of the Pseudomonas species was investigated using HPLC, UV visible spectra, FT-IR and GC-MS analysis. The major metabolic intermediate products identified in the bacterial culture were 4-methyl catechol, protocatechuic acid, 3-oxadipic acid, 4- carboxy muconolactone, 2-hydroxy muconicsemialdehyde and maleic acid. Based on the identified metabolic intermediate products, a tentative new meta-cleavage 3-oxoadipate pathway has been proposed. The biodegradation of p-cresol by the culture followed first order kinetic. The biokinetic parameters associated with biodegradation of p-cresol have been estimated as follow; mu = 0.353 h(-1), K-si = 464 mg l(-1), K-s = 99.5 mg l(-1). It was observed that, when the initial concentrations of p-cresol exceeded more than 1000 mg l(-1), about 70% of the total substrate carbon was utilized towards microbial maintenance energy.
机译:从钢铁厂行业的焦炉废水中分离出一种p-甲酚降解细菌菌株。将分离的菌株鉴定为Pseudomonas Citronellolis NS1,通过16S rRNA基因测序方法。孤立的假单胞菌物种可以在40小时内完全降解1200mg L(-1)的p-甲酚。此外,通过微生物培养也实现了1200mg L(-1)初始p-甲酚的初始p-甲克罗克,并且通过微生物培养也实现了98.5%的毒性去除。使用HPLC,UV可见光光谱,FT-IR和GC-MS分析研究了假单胞菌物种的代谢途径。细菌培养中鉴定的主要代谢中间产物是4-甲基儿茶酚,ProtoCateChuic酸,3-氧代亚酸,4-羧基酰胺酰胺,2-羟基粘液溶液,马来酸。基于所确定的代谢中间产物,提出了一个暂定的新的Meta-Cleavage 3-换氧化硅酸盐途径。文化遵循培养物的生物降解遵循一阶动力学。与p折叠生物降解相关的生物素参数估计如下; mu = 0.353 h(-1),K-Si = 464mg L(-1),K-S = 99.5 mg L(-1)。观察到,当初始浓度超过1000mg的甲酚(-1)时,用于微生物维持能量的约70%的总衬底碳。

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