Search / Korean Journal of Chemical Engineering
Korean Chemical Engineering Research,
Vol.50, No.2, 353-357, 2012
Deans Switching을 이용한 가스크로마토그래피에서 DME-LPG 혼합연료의 탄화수소 화합물 분석방법
Determination Method of Hydrocarbon Compounds in DME-LPG Blending Fuels by Gas Chromatography with Deans Switching
액화석유가스(liquefied petroleum gas, LPG)에 디메틸에테르(dimethyl ether, DME)가 첨가된 DME-LPG 혼합연료의 탄화수소 화합물을 가스크로마토그래피(GC)를 이용하여 정성·정량분석하는 새로운 분석방법을 연구하였다. DMELPG 혼합연료는 함산소화합물(oxygen-containing compound)인 극성의 DME와 비극성물질인 LPG로 구성되어 있기 때문에 하나의 GC 컬럼에서 모든 성분을 완전히 분리하기가 어렵다. 따라서 서로 다른 성질의 화합물이나 아주 복잡한 화합물 중 목표물질의 분석에 응용되고 있는 Deans switching 시스템을 도입하였다. 상기 시스템은 두 개의 GC 컬럼 사이에 유체의 압력 제어를 통하여 용출되는 물질의 흐름 방향을 변경시켜주는 기술로서, 이 방법을 이용하여 DME와 LPG를 서로 다른 컬럼에서 분리하여 한번의 시료 주입으로 DME-LPG 혼합연료의 모든 탄화수소 화합물을 정성· 정량분석할 수 있었다. 또한 DME 합성과정에서 부산물로 생성될 수 있는 메탄올, 포름산메틸, 에틸메틸에테르 같은 미량성분까지 분석이 가능하였다.
The new qualitative and quantitative analytical method for hydrocarbon compounds in DME-LPG blending fuel, mixing dimethyl ether (DME) with liquefied petroleum gas (LPG), by using gas chromatography (GC) was investigated. It is difficult to analyze all components of DME-LPG blending fuel by using single column in GC due to consisting of the non-polar LPG and the polar DME which is oxygen-containing compound. Therefore, it has been introduced the Deans switching system, which are useful for analyzing mixtures of a very different nature and/or target analytes in very complex matrix. This technique is to control the pressure between two columns and to selectively change the path of effluent flows to either one of two columns. As a result, we found that DME and LPG can be completely separated at the different columns and the determination of all hydrocarbon compounds in DME-LPG blending fuel can be achieved to this method qualitatively and quantitatively during the operation of one injection. In addition, this method can be applied to the determination of trace components of by-product, such as methanol, methyl formate and ethyl methyl ether, which will be derived from DME synthesis process.
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