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Removal of mixtures of acetaldehyde and propionaldehyde from waste gas in packed column with immobilized activated sludge gel beads

机译:用固定化的活性污泥凝胶珠去除填充塔中废气中乙醛和丙醛的混合物

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摘要

The removal of mixed dacetaldehyde and propionaldehyde as a model of the binary contaminants in waste gas was studied in the packed column containing the immobilized activated sludge gel beads together with the hollow plastic balls developed for the removal of a single aldehyde in the previous work. The rate of each aldehyde biodegradation by the gel beads in the aldehydes mixture was expressed by the Michaelis-Menten type rate equation with an inhibitory term due to the other coexistent aldehyde. The kinetic parameters involved were found to the same as those determined previously for biodegradation of a single aldehyde. A model for prediction of removal of each aldehyde in the packed column was developed assuming that each aldehyde dissolved in the aqueous phase within the gel bead was biodegraded according to the above rate equation with no mass transfer effect. The packed column was stable and efficient for removal plastic balls. Removal of each aldehyde decreased with increasing the inlet aldehyde concentrations since each biodegradation rate itself approached asymptotically the maximum one with increase in each aldehyde concentration. The observed removals for each aldehyde in the aldehydes mixture agreed well with those calculated from the design equations developed. The contact efficiency of gel beads with the waste gas stream was estimated to be the same value of 0.24 as in t he previous work, supporting that the efficiency was specific to the geometrical and physical properties of the packed column used.
机译:在装有固定化活性污泥凝胶珠粒和中空塑料球的填充柱中,研究了混合二乙醛和丙醛作为废气中二元污染物的模型,该填充柱在以前的工作中已开发出来。由Michaelis-Menten型速率方程式表达了醛混合物中的凝胶珠对每种醛的生物降解速率,该速率方程式具有由于其他共存的醛而产生的抑制项。发现所涉及的动力学参数与先前对于单个醛的生物降解所确定的那些相同。假设在凝胶珠内水相中溶解的每种醛均根据上述速率方程式进行了生物降解而没有传质效果,则建立了预测填充柱中每种醛的去除的模型。填充柱对于去除塑料球是稳定且有效的。每种醛的去除量随着入口醛浓度的增加而降低,因为每种生物降解率本身随着每种醛浓度的增加渐近地接近最大值。所观察到的醛混合物中每种醛的去除率与根据所开发的设计方程式计算的去除率非常吻合。凝胶珠与废气流的接触效率估计为与先前工作相同的0.24值,支持效率是特定于所用填充塔的几何和物理性质的。

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