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Analysis of Simple Biodegradation Process for the Removal of Volatile Organic Chemicals from Wastewater Based on a Gas Stripping Principle

机译:基于汽提原理的简单生物降解处理废水中挥发性有机物的分析

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A simple biodegradation system consisting of an air stripping tank and a bioreactor was proposed for the treatment of volvatile organic chemicals in wastewater. Toluene was used as a model of volatile organic chemicals. An aqueous solution of toluene and a basic mineral medium were placed in the air stripping tank and bioreactor, respectively. Toluene was stripped by supplying compressed air into the stripping tank through a sparger, and the stripped toluene was degraded byPseudomonas putida mt-2 (ATCC 33015) in the bioreactor under aerobic conditions. The effect of the air stripping rate on bacterial growth was examined. A quantitative relationship was found between the air flow rate in the air stripping tank (Q_a) and the stripping rate constant. During cultivation, the bacterial cells grew by utilizing toluene as the sole carbon source, and reached their maximum cell concentration (X_m) at the stationary phase. X_m showed a gradual decrease with increase in Q_a from 1.8 to 7.2 l/h, indicating a decrease in the rate of toluene degradation with increasing Q_a. The X_m at A_a = 1.8 l/h was the highest among the experiments under different values of Q_a, which was almost twice that at Q_a = 7.2 l/h. Mathematical analysis taking the growth kinetics and mass transfer of toluene into consideration stasifactorily explained the system performance.
机译:提出了一种由气提罐和生物反应器组成的简单生物降解系统,用于处理废水中的挥发性有机化学物质。甲苯被用作挥发性有机化学品的模型。将甲苯水溶液和碱性矿物介质分别置于空气汽提罐和生物反应器中。通过经由喷射器向汽提罐中供应压缩空气来汽提甲苯,并且在好氧条件下,在生物反应器中通过恶臭假单胞菌mt-2(ATCC 33015)降解汽提的甲苯。检查了空气汽提速率对细菌生长的影响。发现在汽提罐中的空气流量(Q_a)和汽提速率常数之间存在定量关系。在培养过程中,细菌细胞通过利用甲苯作为唯一碳源生长,并在固定相达到其最大细胞浓度(X_m)。 X_m随着Q_a的增加从1.8升至7.2 l / h逐渐降低,表明甲苯降解速率随Q_a的增加而降低。在不同的Q_a值下,A_a = 1.8 l / h的X_m最高,几乎是Q_a = 7.2 l / h的两倍。考虑到甲苯的生长动力学和传质的数学分析可以轻松地说明系统的性能。

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