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The biodegradation of phenol at high initial concentration by the yeast Candida tropicalis

机译:酵母假丝酵母对苯酚在高初始浓度下的生物降解

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摘要

Strain Candida tropicalis was isolated from acclimated activated sludge,and was identified as a member of the genus Candida.Phenol biodegradation using a pure culture of C.tropicalis was studied.The results showed that C.tropicalis has pretty high phenol degradation potential,which could thoroughly degrade the phenol of 2000 mg 1~(-1) in the mineral salt medium within 66 h.High inoculum volume lessened phenol toxic property for the cells and increased phenol biodegradation velocity.However,for a certain starting inoculum,with the step increase of phenol concentration,substrate inhibition was obviously enhanced,and more phenol consumption was not assimilated by cell for growth,but was used to counteract strong substrate inhibition.In addition,the cell growth and phenol degradation intrinsic kinetics of C.tropicalis in batch cultures were also investigated over a wide range of initial phenol concentrations (0-2000 mg 1~(-1)) using Haldane model.The results received in these experiments demonstrated that the Haldane kinetic model adequately described the dynamic behavior of the phenol biodegradation by the strain of C.tropicalis.
机译:从驯化的活性污泥中分离到热带假丝酵母菌,并将其鉴定为假丝酵母菌的成员。研究了用纯C.tropicalis培养物降解苯酚的结果。结果表明,C.tropicalis具有很高的苯酚降解潜力,可以在66 h内可将2000 mg 1〜(-1)的苯酚在无机盐培养基中彻底降解。接种量大,降低了细胞对苯酚的毒性,并提高了苯酚的生物降解速度。但是,对于一定的起始接种物,步长增加酚浓度的影响,底物抑制作用明显增强,更多的苯酚消耗不被细胞吸收,而是用来抵消强烈的底物抑制作用。此外,分批培养的C.tropicalis的细胞生长和苯酚降解的内在动力学是还使用Haldane模型研究了多种初始苯酚浓度(0-2000 mg 1〜(-1))。这些实验中得到的结果d证明Haldane动力学模型充分描述了C.tropicalis菌株对苯酚生物降解的动力学行为。

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