[Removal characteristics of DCM by biotrickling filter and biofilter].

生物滤池 饱和(图论) 二氯甲烷 化学 体积热力学 矿化(土壤科学) 生物膜 色谱法 多孔性 分析化学(期刊) 核化学 环境工程 数学 氮气 生物 溶剂 有机化学 细菌 环境科学 组合数学 物理 量子力学 遗传学
作者
Wei-Long Pan,Jianming Yu,Zhuowei Cheng,Wenji Cai
出处
期刊:PubMed [National Institutes of Health]
卷期号:34 (12): 4675-83
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摘要

A biofilter (BF) packed with nutrition slow-release material and a biotrickling filter (BTF) packed with ether-based polyurethane foam were set up to remove dichloromethane (DCM) from exhaust gas. Results showed that the biofilm formations in BTF and BF were completed by using the mixture of a special strain and a bacterial community, within 25d and 22d, respectively. Through the observation of the filter surface by SEM, the surface of packings in BF was loose with thin biofilm colonies, whereas the one in BTF was dense with thick biofilm. Under the condition of inlet DCM concentration of 100-1,500 mg x m(-3), EBRT of 25-85 s, the removal efficiency of DCM in BTF was better than that in BF, and the maximum removal load was 22.61 g x (m3 x h)(-1) and 29.05 g (m3 x h)(-1), respectively. The relationship between CO2 production and DCM removal was approximately linear, with the mineralization rate being 70.4% and 66.8% for BTF and BF, respectively. The dynamic behaviors of DCM in BTF and BF were described by the Michaelis-Menten model. Through the calculation, the unit volume maximum degradation rate r(max) was 22.7790 g x (m3 x h)(-1) and 28.5714 g x (m3 x h)(-1), while the gas phase saturation constant Ks was 0.1412 g x m(-3) and 0.1486 g x m(-3)

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