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Study of kinetics of degradation of cyclohexane carboxylic acid by acclimated activated sludge

机译:适应性活性污泥降解环己烷羧酸的动力学研究

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摘要

Activated sludge contains complex microorganisms, which are highly effective biodegrading agents. In this study, the kinetics of biodegradation of cyclohexane carboxylic acid (CHCA) by an acclimated aerobic activated sludge were investigated. The results showed that after 180 days of acclimation, the activated sludge could steadily degrade >90% of the CHCA in 120 h. The degradation of CHCA by the acclimated activated sludge could be modeled using a first-order kinetics equation. The equations for the degradation kinetics for different initial CHCA concentrations were also obtained. The kinetics constant, k(d), decreased with an increase in the CHCA concentration, indicating that, at high concentrations, CHCA had an inhibiting effect on the microorganisms in the activated sludge. The effects of pH on the degradation kinetics of CHCA were also investigated. The results showed that a pH of 10 afforded the highest degradation rate, indicating that basic conditions significantly promoted the degradation of CHCA. Moreover, it was found that the degradation efficiency for CHCA increased with an increase in temperature and concentration of dissolved oxygen under the experimental conditions.
机译:活性污泥含有复杂的微生物,是高效的生物降解剂。在这项研究中,研究了通过适应性好氧活性污泥对环己烷羧酸(CHCA)进行生物降解的动力学。结果表明,经过180天的适应后,活性污泥可在120 h内稳定降解90%以上的CHCA。可以使用一阶动力学方程来模拟通过驯化的活性污泥对CHCA的降解。还获得了不同初始CHCA浓度下的降解动力学方程。动力学常数k(d)随着CHCA浓度的增加而降低,这表明,在高浓度下,CHCA对活性污泥中的微生物具有抑制作用。还研究了pH对CHCA降解动力学的影响。结果表明,pH为10时降解速率最高,表明碱性条件显着促进了CHCA的降解。此外,发现在实验条件下,CHCA的降解效率随温度和溶解氧浓度的增加而增加。

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