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首页> 外文期刊>The Korean journal of chemical engineering >Simultaneous removal of Cr(VI) and phenol from synthetic binary solution using consortium culture of Bacillus sp and E-coli immobilized on tea waste biomass in packed bed reactor
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Simultaneous removal of Cr(VI) and phenol from synthetic binary solution using consortium culture of Bacillus sp and E-coli immobilized on tea waste biomass in packed bed reactor

机译:使用固定床反应器中固定在茶渣生物量上的芽孢杆菌和大肠杆菌的联合培养从合成二元溶液中同时去除六价铬和苯酚

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摘要

A continuous bio column reactor was designed for the simultaneous bioaccumulation of Cr(VI) and biodegradation of phenol from their binary synthetic solution with the ratio of (2: 1). Consortium culture of Bacillus sp. and Escherichia coli was immobilized onto tea waste biomass in the packed bed column. The metabolites formed during the biodegradation of phenol by Bacillus sp. were utilized by Escherichia coli for the bioaccumulation of Cr(VI). The considerable effect of empty bed contact time (EBCT), bed height (cm) and flow rate (mL/min) was investigated onto the simultaneous removal of Cr(VI) and phenol in the column reactor. However, after 3-4 days of continuous treatment of Cr(VI) and phenol the effect of these process parameters was not significant. Dissolved oxygen (DO) of effluent has been found to decrease with run time of packed bed column. The pH of the effluent decreased initially for 2 days but after that it became the same as the influent. A mass transfer study was carried out to calculate the pseudofirst-order rate constant for Cr(VI) and phenol, which was in good agreement with experimental results.
机译:设计了一个连续生物柱反应器,用于同时生物富集Cr(VI)和从其二元合成溶液中生物降解苯酚,比例为(2:1)。芽孢杆菌的财团培养。然后将大肠杆菌固定在填充床色谱柱中的茶叶废料生物量上。芽孢杆菌对苯酚的生物降解过程中形成了代谢产物。被大肠杆菌用于生物富集Cr(VI)。研究了空塔接触时间(EBCT),床高(cm)和流速(mL / min)对柱式反应器中同时去除Cr(VI)和苯酚的显着影响。但是,连续处理Cr(VI)和苯酚3-4天后,这些工艺参数的影响并不明显。已发现流出物的溶解氧(DO)随填充床塔运行时间而降低。流出物的pH最初降低了2天,但此后变为与流入物相同的pH。进行了传质研究,计算了六价铬和苯酚的拟一级反应速率常数,与实验结果吻合良好。

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