• 제목/요약/키워드: Octane number improver

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메틸/에틸 부틸레이트 혼합연료의 연소특성에 관한 연구 (A Study on Combustion Characteristics of Methyl/Ethyl Butyrate blend)

  • 김성우;이민호;김정환;민경일;김기호;임의순;정충섭
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2011년도 추계학술대회 초록집
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    • pp.109.1-109.1
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    • 2011
  • This study is a part of the project that investigates a possibility of using methyl/ethyl butyrate as an alternative material of MTBE. To investigate characteristics of the two materials, a 2.0L 4-cylinders SI engine that was coupled to an 160kw EC engine dynamometer was used and operated several conditions. Two exhaust gas analyzer was used to measure CO, NOx and THC of after and before of a catalyst. Also, to compare combustion characteristics of the fuels a combustion analyzer was used for measuring pressure of inside of a cylinder. The results show no special difference between MTBE and the two materials from the emission and combustion characteristics aspect.

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바이오 연료 적용에 따른 차량 증발가스 및 성능특성 연구 (The Characteristics Study of Vehicle Evaporative Emission and Performance according to the Bio-Fuel Application)

  • 노경하;이민호;김기호;김신;박천규
    • 한국응용과학기술학회지
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    • 제34권4호
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    • pp.874-882
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    • 2017
  • 국내 외에서 대기오염에 대한 관심이 점점 증가함에 따라 자동차 및 연료관련 분야의 연구자들은 새로운 엔진설계, 향상된 후처리장치, 청정연료 그리고 연료품질향상을 통해 자동차의 배출가스 감소를 위하여 지속적으로 노력해 왔다. 따라서, 본 연구에서는 자동차의 증발가스와 성능, 환경성에 대해 살펴보고자 하였으며, 연료의 옥탄가 향상제로 쓰이는 바이오 에탄올, 바이오 부탄올, 바이오 ETBE (Ethyl Tertia ry Butyl Ether), MTBE (Methyl Tertiary Butyl Ether)가 환경에 미치는 문제점에 대해 살펴보고자 하였다. 주로 휘발유의 옥탄가 향상제로 쓰이는 바이오 에탄올, 바이오 부탄올, 바이오 ETBE, MTBE가 휘발유 연료 특성 중 증발가스에 미치는 영향에 대해 살펴보았으며, 바이오 연료 특성에 대한 가솔린 자동차의 가속 및 동력 성능을 살펴보았다. 실험결과 증발가스는 최대 1.04g/test로 모든 시험 연료가 국내 배출가스 기준에 부합함을 알 수 있었으며, 원료에 대한 증기압 측정 결과 바이오에탄올 15kPa, 바이오 부탄올 1.6k Pa로 E3급 연료 제조 시 바이오 부탄올 함유량을 늘리면 증기압과 증발가스 또한 낮게 나타났다. 또한, 바이오 연료의 종류에 따라 유사한 가속 및 동력 성능을 나타내었으며, 바이오 부탄올과 바이오 에탄올 비교시 가속 성능이 약 3.9%, 출력은 0.8% 개선되었다.

가짜 고급휘발유 판정을 위한 성분 분석 (Analysis of Components to Determine Illegal Premium Gasoline)

  • 임영관;강병석;이보오미;박소휘;박장민;고영훈;김승태;강대혁
    • Tribology and Lubricants
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    • 제37권6호
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    • pp.232-239
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    • 2021
  • Petroleum is the most consumed energy source in Korea with a usage rate of 38.7% among the available primary energy sources. The price of liquid petroleum products in Korea includes taxes such as transportation·environment·energy tax. Thus, illegal production and distribution of liquid petroleum is widespread because of its huge price difference from that of the normal product and its tax-free nature. Generally, the illegal petroleum product is produced by mixing liquid petroleum with other similar petroleum alternatives. The two kinds of gasoline, common gasoline and premium gasoline, are being distributed in Korea. The premium gasoline is often adulterated with cheaper common gasoline that lowers the octane number of gasoline. It is possible to distinguish them with their color difference, green and yellow for different grade gasoline. However, when small volume of common gasoline is added to premium gasoline, it is difficult to determine whether premium gasoline contained common grade or not. In this study, we inspect gasoline, which is illegally produced by mixing common gasoline to premium gasoline. When the ratio of mixing common gasoline is increased, premium gasoline shows decreasing absorbance at 600 nm and 650 nm under UV-Vis spectrometer. Moreover, the detected intensity (mV·s) of green dye in high performance liquid chromatography (HPLC) was decreased by common gasoline under 0.99 correlation value. The more the common gasoline is mixed, the more olefin and naphthene are detected by gas chromatography. In addition, trimethyl pentane as octane improver, paraffin and toluene are decreased by common gasoline mixing. The findings of this study suggests that illegal petroleum can be identified by analysis of components and simulated samples.