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Control of Dimethyl Sulfide Emissions Using Biofiltration
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  • Control of Dimethyl Sulfide Emissions Using Biofiltration
  • Control of Dimethyl Sulfide Emissions Using Biofiltration
저자명
Kong. Sei-Hun,Kim. Jo-Chun,Allen. Eric R.,Park. Jong-Kil
간행물명
한국환경과학회지
권/호정보
2002년|11권 8호|pp.819-827 (9 pages)
발행정보
한국환경과학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

Laboratory scale experiments were conducted to evaluate the performance of a biofilter for eliminating dimethyl sulfide(DMS). A commercial compost/pine bark nugget mixture served as the biofilter material for the experiments. The gas flow rate and DMS concentration entering the filter were varied to study their effect on the biofilter efficiency. The operating parameters, such as the residence time, inlet concentration, pH, water content, and temperature, were all monitored throughout the filter operation. The kinetic dependence of the DMS removal along the column length was also studied to obtain a quantitative description of the DMS elimination. High DMS removal efficiencies(>95%) were obtained using the compost filter material seeded with activated sludge. DMS pollutant loading rates of up to 5.2 and 5.5 g-DMS/m$^3$/hr were effectively handled by the upflow and downflow biofilter columns, respectively. The macrokinetics of the DMS removal were found to be fractional-order diffusion-limited over the 9 to 25 ppm range of inlet concentrations tested. The upflow column had an average macrokinetic coefficient(K$\_$f/) of 0.0789 $pm$ 0.0178 ppm$^$$sfrac{1}{2}$//sec, while the downflow column had an average coefficient of 0.0935 $pm$ 0.0200 ppm$^$$sfrac{1}{2}$//sec. Shorter residence times resulted in a lower mass transfer of the pollutant from the gas phase to the aqueous liquid phase, thereby decreasing the efficiency.