A comparative study for destruction of hydrophobic VOCs in trickle bed air biofilters

Ashraf Aly Hassan, George A. Sorial

Research output: Chapter in Book/Report/Conference proceedingConference contribution

3 Citations (Scopus)

Abstract

Biofiltration systems have emerged recently as an attractive option for controlling VOC emissions from industrial processes due its cost effectiveness. Three parallel Trickle Bed Air Biofilter (TBAB) were run continuously for a period of almost 1 yr to degrade n-hexane. Using Tomadol® successfully enhanced the biodegradation process of n-hexane in the TBAB and provided more stable performance. The fungi TBAB showed further performance enhancement. Flow switching with starvation in the TBAB is a good tool to enhance the performance. This strategy could replace backwashing for low yield micro organisms as in the case of n-hexane. Operation at acidic pH enhanced greatly the performance with removal efficiency around the 90% level. Using fungi culture would lead to higher loading rates that could not be achieved by microbial culture operated at neutral pH. This is an abstract of a paper presented at the 101st AWMA Annual Conference and Exhibition (Portland, OR 6/24-27/2008).

Original languageEnglish
Title of host publication101st Air and Waste Management Association Annual Conference and Exhibition 2008
Pages310-320
Number of pages11
Publication statusPublished - 2008
Externally publishedYes
Event101st Air and Waste Management Association Annual Conference and Exhibition 2008 - Portland, OR, United States
Duration: Jun 24 2008Jun 27 2008

Publication series

NameProceedings of the Air and Waste Management Association's Annual Conference and Exhibition, AWMA
Volume1
ISSN (Print)1052-6102

Conference

Conference101st Air and Waste Management Association Annual Conference and Exhibition 2008
Country/TerritoryUnited States
CityPortland, OR
Period6/24/086/27/08

Keywords

  • Bacteria
  • Fungi
  • Hydrophobic Compound
  • n-Hexane
  • Trickle Bed Air Biofilter
  • Volatile Organic Compound

ASJC Scopus subject areas

  • Environmental Science(all)
  • Energy(all)

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