Mitigation of trichloroethylene contaminated air streams through biofiltration: a pilot-scale study
Creators
- 1. Mercer Univ. School of Engineering, Dept. of Environmental Engineering, Macon, Georgia (United States)
- 2. Tennessee Valley Authority, Environmental Research Center, Muscle Shoals, AL (United States)
Description
As a result of abundant usage and improper disposal practices, trichloroethylene (TCE) is one of the most prevalent groundwater contaminants. Traditional cleanup methods of aquifers contaminated with TCE include pumping the water to the surface and treating with stripper technology, soil vapor extraction, and air sparging. As a result of each of these mitigation schemes, TCE is transferred from the aqueous to the gas phase. As regulations associated with air emission tighten, development of technologies both technically feasible and cost effective for remediating TCE laden gas streams becomes imperative. This project demonstrated the use of biofiltration technology to mitigate TCE contaminated air streams. A pilot-scale biofilter system was designed, constructed, and subsequently installed at the Anniston Army Depot (ANAD), Anniston, AL. The system was inoculated with a propane-oxidizing microbial consortium that had previously been shown to degrade TCE as well as other short-chained chlorinated aliphatics and a variety of one-and two-ring aromatic compounds. Critical process variables were identified and their effects on system performance analyzed. Results indicated that the process scheme used to introduce propane into the biofiltration system had a significant impact on the observed TCE removal efficiency. The inlet contaminant concentration as well as the loading rate also had an impact on observed TCE degradation rates. Results suggest that biofilter performance and economics are generally improved by manipulating a specific waste stream so as to increase the TCE concentration and decrease the volumetric flow rate of the contaminated air fed to the biofilter. Through manipulation of process variables, including the empty bed contact time, TCE degradation efficiencies greater than 99.9 percent were sustained. No microbial inhibition was observed at inlet TCE concentrations as high as 87 parts per million on a volume basis (ppmv). (author)
Additional details
Publishing Information
- Publisher
- Canadian Society for Civil Engineering
- Imprint Place
- Montreal, Quebec (Canada)
- ISBN
- 0-88955-532-X
- Imprint Title
- An international perspective on environmental engineering
- Imprint Pagination
- 37.3 Megabytes
- Journal Page Range
- [9 p.]
Conference
- Title
- joint 2002 CSCE/ASCE international conference on environmental engineering
- Acronym
- An international perspective on environmental engineering
- Dates
- 21-24 Jul 2002
- Place
- Niagara Falls, Ontario (Canada)
INIS
- Country of Publication
- Canada
- Country of Input or Organization
- Canada
- INIS RN
- 38094874
- Subject category
- S54: ENVIRONMENTAL SCIENCES;
- Resource subtype / Literary indicator
- Conference, Non-conventional Literature
- Descriptors DEI
- AQUIFERS; BIODEGRADATION; CONTAMINATION; FILTRATION; ORGANIC COMPOUNDS; REMEDIAL ACTION
- Descriptors DEC
- CHEMICAL REACTIONS; DECOMPOSITION; SEPARATION PROCESSES
Optional Information
- Notes
- 11 refs., 1 tab., 4 figs.