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首页> 外文期刊>Biodegradation >Study of phenol biodegradation using Bacillus amyloliquefaciens strain WJDB-1 immobilized in alginate-chitosan-alginate (ACA) microcapsules by electrochemical method
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Study of phenol biodegradation using Bacillus amyloliquefaciens strain WJDB-1 immobilized in alginate-chitosan-alginate (ACA) microcapsules by electrochemical method

机译:固定化藻酸盐-壳聚糖-藻酸盐(ACA)微胶囊中的解淀粉芽孢杆菌WJDB-1菌株降解苯酚的研究

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摘要

An aerobic microorganism with an ability to utilize phenol as sole carbon and energy source was isolated from phenol-contaminated wastewater samples. The isolate was identified as Bacillus amyloliquefaciens strain WJDB-1 based on morphological, physiological, and biochemical characteristics, and 16S rDNA sequence analysis. Strain WJDB-1 immobilized in alginate-chitosan-alginate (ACA) microcapsules could degrade 200 mg/l phenol completely within 36 h. The concentration of phenol was determined using differential pulse voltammetry (DPV) at glassy carbon electrode (GCE) with a linear relationship between peak current and phenol concentration ranging from 2.0 to 20.0 mg/l. Cells immobilized in ACA microcapsules were found to be superior to the free suspended ones in terms of improving the tolerance to the environmental loadings. The optimal conditions to prepare microcapsules for achieving higher phenol degradation rate were investigated by changing the concentrations of sodium alginate, calcium chloride, and chitosan. Furthermore, the efficiency of phenol degradation was optimized by adjusting various processing parameters, such as the number of microcapsules, pH value, temperature, and the initial concentration of phenol. This microorganism has the potential for the efficient treatment of organic pollutants in wastewater.
机译:从苯酚污染的废水样品中分离出了一种能够利用苯酚作为唯一碳和能源的好氧微生物。基于形态,生理和生化特征以及16S rDNA序列分析,该分离株被鉴定为解淀粉芽孢杆菌菌株WJDB-1。固定在藻酸盐-壳聚糖-藻酸盐(ACA)微囊中的菌株WJDB-1可以在36 h内完全降解200 mg / l的苯酚。使用差分脉冲伏安法(DPV)在玻碳电极(GCE)上测定苯酚浓度,峰值电流与苯酚浓度之间的线性关系为2.0至20.0 mg / l。发现固定在ACA微胶囊中的细胞在提高对环境负荷的耐受性方面优于游离悬浮的细胞。通过改变藻酸钠,氯化钙和壳聚糖的浓度,研究了制备可提高苯酚降解率的微胶囊的最佳条件。此外,通过调节各种处理参数(例如微胶囊的数量,pH值,温度和苯酚的初始浓度)来优化苯酚的降解效率。这种微生物具有有效处理废水中有机污染物的潜力。

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