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Isolation and characterization of a phenol-degrading bacterium from an industrial activated sludge

机译:从工业活性污泥中分离和降解降解苯酚的细菌

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This paper reports the successful isolation and characterization of a new phenol-degrading bacterium, strain EDP3, from activated sludge. Strain EDP3 is a nonmotile, strictly aerobic, Gram-negative, and short-rod or coccobacillary bacterium, which occurs singly, in pairs, or in clusters. 16S rRNA gene sequence analysis revealed that strain EDP3 belonged to the gamma group of Proteobacteria, with a 97.0% identity to 16S rRNA gene sequences of Acinetobacter calcoaceticus. Strain EDP3 could aerobically grow on a number of aromatic compounds, such as phenol, sodium benzoate, p-hydroxybenzoate, phenylacetate, benzene, ethylbenzene, benzylalcohol, and so on. In particular, it could mineralize up to 1,000 mg l(-1) phenol at room temperature (25 degrees C). The growth kinetics of strain EDP3 on phenol as a sole carbon and energy source at 25 degrees C can be described using the Haldane equation. It has a maximal specific growth rate (mu(max)) of 0.28 h(-1), a half-saturation constant (K-S) of 1,167.1 mg l(-1), and a substrate inhibition constant (K-i) of 58.5 mg l(-1). Values of yield coefficient (Y-X/S) are between 0.4 and 0.6 mg dry cell (mg phenol)(-1). Strain EDP3 has high tolerance to the toxicity of phenol (up to 1,000 mg l(-1)). It therefore could be an excellent candidate for the biotreatment of high-strength phenol-containing industrial wastewaters and for the in situ bioremediation of phenol-contaminated soils.
机译:本文报道了从活性污泥中成功分离和表征了一种新的降解苯酚的细菌EDP3菌株。 EDP​​3菌株是一种不活动的,严格需氧的,革兰氏阴性,短杆或球菌的细菌,它们单独,成对或成簇出现。 16S rRNA基因序列分析表明,菌株EDP3属于变形杆菌的γ族,与钙不动杆菌的16S rRNA基因序列具有97.0%的同一性。 EDP​​3菌株可以在许多芳香族化合物上好氧生长,例如苯酚,苯甲酸钠,对羟基苯甲酸酯,苯乙酸酯,苯,乙苯,苄醇等。特别是,它可以在室温(25摄氏度)下矿化至多1,000 mg l(-1)苯酚。可以使用Haldane方程描述EDP3菌株在苯酚作为唯一碳和能源时在25摄氏度下的生长动力学。它具有0.28 h(-1)的最大比生长速率(mu(max)),1,167.1 mg l(-1)的半饱和常数(KS)和58.5 mg l的底物抑制常数(Ki) (-1)。屈服系数(Y-X / S)的值在0.4至0.6 mg干细胞(mg苯酚)(-1)之间。 EDP​​3菌株对苯酚的毒性具有很高的耐受性(最高达1,000 mg l(-1))。因此,对于高强度含酚工业废水的生物处理以及对苯酚污染土壤的原位生物修复,它可能是极好的选择。

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