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Treatment of Benzene and n-Hexane Mixtures in Trickle-Bed Air Biofilters

机译:滴流床空气生物滤池中苯和正己烷混合物的处理

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Trickle-bed air biofilters (TBABs) are suitable for treatment of hydrophilic volatile organic compounds, but they pose a challenge for hydrophobic compounds. Three laboratory-scale TBABs were used for the treatment of an airstream contaminated with different ratios of n-hexane and benzene mixtures. The ratios studied were 1:1, 2:1, and 1:3 n-hexane:benzene by volume. Each TBAB was operated at a pH of 4 and a temperature of 20 ℃. The use of acidic-buffered nutrient solution was targeted for changing the microorganism consortium to fungi as the main biodeg-radation element. The experimental plan was designed to investigate the long-term performance of the TBABs with an emphasis on different mixture loading rates, removal efficiency with TBAB depth, volatile suspended solids, and carbon mass balance closure. n-Hexane loading rate was kept constant in the TBABs for comparison reasons and ranged from 4 to 22 g/(m~3·hr). Corresponding benzene loadings ranged from 4 to 43 g/(m~3·hr). Generally, benzene behavior in the TBAB was superior to that of H-hexane because of its higher solubility. H-Hexane showed improved performance in the 2:1 mixing ratio as compared with the other two ratios.
机译:滴流床式空气生物滤池(TBAB)适用于亲水性挥发性有机化合物的处理,但对疏水性化合物构成挑战。三种实验室规模的TBAB用于处理被不同比例的正己烷和苯混合物污染的气流。所研究的比例为正己烷:苯1:1、2:1和1:3。每个TBAB的pH为4,温度为20℃。使用酸性缓冲营养液的目的是将微生物群落转变为真菌,将其作为主要的生物辐射因子。该实验计划旨在研究TBAB的长期性能,重点在于不同的混合物加载速率,TBAB深度的去除效率,挥发性悬浮固体和碳质量平衡封闭。出于比较原因,TBAB中正己烷的负载速率保持恒定,范围为4至22 g /(m〜3·hr)。相应的苯载量范围为4至43 g /(m〜3·hr)。通常,由于其较高的溶解度,TBAB中的苯行为优于H-己烷。与其他两个比例相比,正己烷在2:1的混合比例下表现出更高的性能。

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    《Journal of the air & waste management association》 |2011年第2期|p.201-210|共10页
  • 作者单位

    Environmental Engineering Program, School of Energy, Environmental, Biological, and Medical Engineering, College of Engineering and Applied Science, University of Cincinnati, Cincinnati, OH 701 Engineering Research Center, 2624 Clifton Avenue, Cincinnati, OH 45221-0012;

    Environmental Engineering Program, School of Energy, Environmental, Biological, and Medical Engineering, College of Engineering and Applied Science, University of Cincinnati, Cincinnati, OH;

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