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Microbial degradation of phenol and phenolic derivatives

机译:苯酚及其酚类衍生物的微生物降解

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Phenol and its derivatives are one of the largest groups of environmental pollutants due to their presence in many industrial effluents and broad application as antibacterial and antifungal agents. A number of microbial species possess enzyme systemsthat are applicable for the decomposition of various aliphatic and aromatic toxic compounds. Intensive efforts to screen species with high-degradation activity are needed to study their capabilities of degrading phenol and phenolic derivatives. Most of the current research has been directed at the isolation and study of microbial species of potential ecological significance. In this review, some of the best achievements in degrading phenolic compounds by bacteria and yeasts are presented, which draws attention to the high efficiency of strains of Pseudomonas, Candida tropicahs, Trichosporon cutaneum, etc. The unique ability of fungi to maintain their degradation potential under conditions unfavorable for other microorganisms is outstanding. Mathematical models of the microbial biodegradation dynamics of single and mixed aromatic compounds, which direct to the benefit of the processes studied in optimization of modern environmental biotechnology are also presented.
机译:苯酚及其衍生物是环境污染物中最大的组之一,因为它们存在于许多工业废水中,并广泛用作抗菌剂和抗真菌剂。许多微生物物种具有适用于分解各种脂肪族和芳香族有毒化合物的酶系统。为了研究其降解苯酚和酚类衍生物的能力,需要大力筛选具有高降解活性的物种。当前的大多数研究都针对具有潜在生态意义的微生物物种的分离和研究。在这篇综述中,介绍了通过细菌和酵母降解酚类化合物的一些最佳成就,这引起了对假单胞菌,热带假丝酵母,Trichosporon cutaneum等菌株的高效率的关注。真菌保持其降解潜力的独特能力在不利于其他微生物的条件下表现出色。还提出了单一和混合芳香化合物的微生物生物降解动力学的数学模型,这些模型直接受益于现代环境生物技术优化研究过程的益处。

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