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首页> 外文期刊>Environmental Technology >Effect of operating temperature on transient behaviour of a biofilter treating waste-air containing n-butanol vapour during intermittent loading
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Effect of operating temperature on transient behaviour of a biofilter treating waste-air containing n-butanol vapour during intermittent loading

机译:工作温度对间歇负荷下含正丁醇蒸气的废气生物滤池瞬态行为的影响

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摘要

Transient-state removal of n-butanol vapour was investigated in a biofilter (BF) packed with compost and lava rock at different operating temperatures in the range of 30-45 degrees C under intermittent loading (8 h per day). Adsorption on the inactive bed and biodegradation in the microbial-active bed were studied separately at an empty bed residence time (EBRT) of 1 min and inlet concentrations of 2.6-3.2 g m(-3), respectively. According to the transient experiments, the highest removal efficiency (RE) around 86% was obtained at 40 degrees C due to a high microbial activity. Comparison of CO2 production and pure adsorption of n-butanol showed that adsorption was the major mechanism in the start-up of BF at each operating condition; although the impact of adsorption declined as temperature increased from 30 degrees C to 45 degrees C. The process was reaction limited at all operating conditions. Based on the determination of stoichiometric coefficients of n-butanol biodegradation, the CO2 production level was significantly lower than that of the chemical oxidation process which resulted in a decrease in environmental pollution.
机译:在装填有堆肥和熔岩的生物滤池(BF)中,在间歇负荷(每天8小时)下,在30-45摄氏度的不同操作温度下,对正丁醇蒸气的瞬态去除进行了研究。在1分钟的空床停留时间(EBRT)和入口浓度分别为2.6-3.2 g m(-3)的情况下,分别研究了非活性床的吸附和微生物活性床的生物降解。根据瞬时实验,由于高的微生物活性,在40摄氏度下获得了约86%的最高去除效率(RE)。比较二氧化碳的产生和正丁醇的纯吸附,表明吸附是高炉在各种工况下启动的主要机理。尽管吸附的影响随着温度从30摄氏度增加到45摄氏度而下降。该过程在所有操作条件下均受反应限制。根据对正丁醇生物降解的化学计量系数的确定,CO2的生产水平明显低于化学氧化过程,从而减少了环境污染。

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