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에너지/환경 : 축열 촉매연소장치에서 휘발성 유기화합물의 소각특성
송광섭 ( Kwang Sup Song ),서용석 ( Yong Seog Seo ),정남조 ( Nam Jo Jeong ),유상필 ( Sang Phil Yu ),유인수 ( In Soo Ryu ),이상남 ( Sang Nan Lee ),최재진 ( Jae Jin Choi ),정진도 ( Jin Do Jung ) 한국화학공학회 2003 Korean Chemical Engineering Research(HWAHAK KONGHA Vol.41 No.3
Regenerative catalytic oxidizer(RCO) having high recovering efficiency of energy enables catalytic purification of polluted air containing a low content of volatile organic compounds(VOCs). From experimental study of the regenerative catalytic oxidizer, the VOC toluene concentration higher than 150ppm can be handled without introduction of additional energy. The removal efficiency of VOC from the polluted air is around 95%. The influence of several operating parameters including cycle period, concentration of the VOC and mass of inert material (cordierite honeycomb) on the removal efficiency has also been examined.
송광섭 ( Kwang Sup Song ),최정인 ( Jung In Choi ) 한국화학공학회 2012 Korean Chemical Engineering Research(HWAHAK KONGHA Vol.50 No.6
The fiber mat catalytic burner that uses infrared radiative heat obtained by flameless catalytic combustion was manufactured and tested to investigate its combustion characteristics. About 9 to 17% of combustion heat was released by sensible heat during the premixed catalytic combustion depend on combustion condition. To find out radiation intensity with distance between catalytic burner and sample, the equation that calculate the receiving surface of radiative energy under the fiber mat catalytic burner was driven, This equation was well correlated with the drying rate of melamine. The drying experiments were carried out to the melamine, wood chip and agricultural pallet by using the fiber mat catalytic burner and the energy efficiency was calculated from drying rate of them. The energy efficiency of the fiber mat catalytic burner reaches to 79% in maximum for drying of the wood chip.