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Evaluation of an optimal fill strategy to biodegrade inhibitory wastewater using an industrial prototype discontinuous reactor

机译:使用工业原型不连续反应器评估生物降解抑制性废水的最佳填充策略

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This work presents the results and discussions of the application of an optimally controlled influent flow rate strategy to biodegrade, in a discontinuous reactor, a synthetic wastewater constituted by 4-chlorophenol. An aerobic automated discontinuous reactor system of 1.3 m3, with a useful volume of 0.75 m3 and an exchange volume of 60% was used. As part of the control strategy influent is fed into the reactor in such a way as to obtain the maximal degradation rate avoiding inhibition of microorganisms. Such an optimal strategy was able to manage increments of 4-chlorophenol concentrations in the influent between 250 and 1000 mg/L. it was shown that the optimally controlled influent flow rate strategy brings savings in reaction time and flexibility in treating high concentrations of an influent with toxic characteristics.
机译:这项工作介绍了最佳控制进水流速策略在不连续反应器中生物降解由4-氯苯酚组成的合成废水中的应用结果和讨论。使用1.3 m3的有氧自动不连续反应器系统,有用体积为0.75 m3,交换体积为60%。作为控制策略的一部分,应将进水进料到反应器中,以便获得最大的降解速率,从而避免了对微生物的抑制。这种最佳策略能够控制进水中4-氯苯酚浓度的增加,范围为250至1000 mg / L。结果表明,最佳控制的进水流量策略可以节省反应时间,并可以灵活地处理高浓度具有毒性特征的进水。

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