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Biodegradation of mixture of VOC's in a biofilter 被引量:9
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作者 D.arulneyam T. Swaminathan 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2004年第1期30-33,共4页
Volatile organic compounds(VOC's) in air have become major concern in recent years. Biodegradation of a mixture of ethanol and methanol vapor was evaluated in a laboratory biofilter with a bed of compost and polys... Volatile organic compounds(VOC's) in air have become major concern in recent years. Biodegradation of a mixture of ethanol and methanol vapor was evaluated in a laboratory biofilter with a bed of compost and polystyrene particles using an acclimated mixed culture. The continuous performance of the biofilter was studied with different proportion of ethanol and methanol at different initial concentration and flow rates. The result showed significant removal for both ethanol and methanol, which were composition dependent. The presence of either compound in the mixture inhibited the biodegradation of the other. 展开更多
关键词 BIOFILTER METHANOL ETHANOL elimination capacity upset loading VOCs BIODEGRADATION
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Biodegradation of methanol vapor in a biofilter 被引量:2
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作者 Durai arulneyam T.Swaminathan 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2003年第5期691-696,共6页
Volatile organic compounds (VOCs) are a new class of air pollutants posing threat to the environment. Newer technologies are being developed for their control among which biofiltration seem to be most attractive. Biof... Volatile organic compounds (VOCs) are a new class of air pollutants posing threat to the environment. Newer technologies are being developed for their control among which biofiltration seem to be most attractive. Biofiltration of methanol vapor from air stream was evaluated in this study. Experimental investigations were conducted on a laboratory scale biofilter, containing mixture of compost and polystyrene inert particles as the filter materials. Mixed consortium of activated sludge was used as an inoculum. The continuous performance of biofilter for methanol removal was monitored for different concentrations and flow rates. The removal efficiencies decreased at higher concentrations and higher gas flow rates. A maximum elimination capacity of 85 g/(m 3·h) was achieved. The response of biofilter to upset loading operation showed that the biofilm in the biofilters was quite stable and quickly adapted to adverse operational conditions. 展开更多
关键词 BIOFILTER METHANOL removal efficiency elimination capacity DEGRADATION
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