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Phenol biodegradation by rotating biological contactor

机译:旋转生物接触器对苯酚的生物降解

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摘要

This study presents the removal performance of phenol in a three-stages cross flow laboratory-scale rotating biological contactor (RBC). The impact of major process and operating variables, such as input hydraulic loading (HL), input COD loading, and temperature of wastewater on the total removal efficiency of the system were examined. It was observed that the phenol removal performance worsened when the HL increased, and optimum total phenol removal efficiency of 99.9% was observed at loading of 4 X 10~(-3) m~(-2) per day and COD concentration of 800 mg dm~(-3). On the basis of overall treatment of phenol containing wastewater in the RBC, the optimal removal performance was noted at the end of second stage inclusive the first one, but the third stage has not significant influence on phenol removal efficiency. The effect of temperature on improving the removal efficiency was significant in the temperature range of 13-43 deg C, whose operating condition at 36 deg C was optimum. The study of different phenol removal mechanism shows that about 10% phenol was removed by physical adsorption and evaporation in RBC reactor.
机译:这项研究介绍了三级错流实验室规模旋转生物接触器(RBC)中苯酚的去除性能。研究了主要工艺和操作变量(例如输入水力负荷(HL),输入COD负荷和废水温度)对系统总去除效率的影响。观察到随着HL的增加,苯酚的去除性能变差,在每天4 X 10〜(-3)m〜(-2)的负载量和800 mg的COD浓度下,最佳总苯酚去除效率达到99.9%。 dm〜(-3)。基于RBC中含酚废水的整体处理,在第二阶段(包括第一个阶段)结束时注意到了最佳去除性能,但第三阶段对去除酚的效率没有显着影响。温度对提高去除效率的影响在13-43℃的温度范围内很明显,在36℃的最佳操作条件下。对不同苯酚去除机理的研究表明,在RBC反应器中通过物理吸附和蒸发去除了约10%的苯酚。

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