生物滤池
珍珠岩
制浆造纸工业
环境科学
环境工程
污染物
废物管理
化学
吸附
材料科学
工程类
复合材料
有机化学
作者
Soroosh Danaee,Mohammad Hassan Fazaelipoor,Abdollah Gholami,Seyed Ahmad Ataei,Daryoush Afzali
标识
DOI:10.1080/09593330.2014.978897
摘要
In this research work, a synthetic water super absorbent polymer was included in the bed of a perlite-based biofilter for the removal of ethanol from air. The performance of this biofilter was compared with the performance of a control perlite-based biofilter lacking the water super absorbent. With the empty bed residence time of 2 min, both biofilters were able to remove more than 90% of the entering pollutant with the concentration of 1 g /m3, when regular moistening was applied. After last irrigation on day 23, the performance of the control biofilter was unchanged until day 35. From day 36 onwards, the control biofilter lost its activity gradually and became totally inactive on day 45. The performance of the super absorbent containing biofilter, however, was unchanged until day 58 before starting to lose its activity. A mechanistic model was developed to describe the performance of a biofilter under drying effects. The model could predict the trends of experimental results reasonably well. The model was also applied to predict the trends of experimental data from a published paper on the removal of hexane in a perlite/super absorbent containing biofilter.
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