• Title/Summary/Keyword: MTBE(MTBE)

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Determination of MTBE, TBA and BTEX in Soil by Headspace Gas Chromatography-Mass Spectrometry

  • Shin, Ho-Sang
    • Bulletin of the Korean Chemical Society
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    • v.33 no.5
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    • pp.1693-1698
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    • 2012
  • A headspace gas chromatographic mass spectrometric (GC-MS) assay method was developed for the simultaneous determination of methyl tertiary butyl ether (MTBE), $tert$-butyl alcohol (TBA) and benzene, toluene, ethyl benzene and xylene (BTEX) in soil contaminated with gasoline. 2 g of soil sample were placed in a 10 mL headspace vial filled with 5 mL of phosphoric acid solution (pH 3) saturated with NaCl, and the solution was spiked with fluorobenzene as an internal standard and sealed with a cap. The vial was heated in a heating block for 40 min at $80^{\circ}C$. The detection limits of the assay were 0.08-0.12 ${\mu}g$/kg for the analytes. For five independent determinations at 10 and 50 ${\mu}g$/kg, the relative standard deviations were less than 10%. The method was used to analyze fifty six soil samples collected from various regions contaminated with gasoline in Korea. The developed method may be valuable for the monitoring of the analytes in soil.

Asswssment of natural attenuation for Gasoline contaminated soil under various reducing conditions

  • 오인석;이시진;장순웅
    • Proceedings of the Korean Society of Soil and Groundwater Environment Conference
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    • 2004.04a
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    • pp.255-259
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    • 2004
  • 본 연구에서는 유류오염 토양현장샘플을 이용한 실험실 규모의 회분식 실험을 통해 다양한 환원조건하에서 BTEX와 MTBE의 자연정화 평가 및 현장 생복원 기술 적용 타당성을 검토하는데 있다. 첫째, 오염토양과 비오염 토양에서 충분한 전자수용체의 존재는 유류오염물질의 생분해능을 증가시킬 수 있었음 알았다. 둘째, 같은 토양이라도 전자수용체의 종류와 유류오염물질의 특성에 따른 생분해능의 다양성을 확인할 수 있었다. 셋째, BTEX에 비해 MTBE의 분해가 매우 느림을 확인하였다. 본 실험은 아직 초기 단계의 실험으로 현장 조건을 충분히 만족 시키지는 못한다. 추가적인 pH 변화에 따른 전자수용체의 이용 특성 및 토양-지하수 microcosm test, 혐기성 생분해 부산물인 $CO_2$, $N_2$ 또는 $N_2$O, TBA의 연구가 실시되어야 하겠다.

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Photocatalytic Degradation of Methyl-tertiary butyl ether using Element-Enhanced Photocatalyst

  • Yang, Chang-Hui;Sin, Myeong-Hui;Jang, Jong-Dae;Lee, Jin-U;Choe, Seong-Rak;Jo, Wan-Geun
    • Proceedings of the Korean Environmental Sciences Society Conference
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    • 2008.11a
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    • pp.110-113
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    • 2008
  • 최근 가시광선에서 응답하는 광촉매를 이용하여 저농도의 일반적인 실내 대기 오염물질 제어를 위한 적용가능성에 대해 많은 평가가 있어왔다. 가시광선에서 활성을 보이는 질소 원소가 도핑된 TiO$_2$광촉매를 이용하여 대표적인 휘발성유기화합물질들 중에 하나인 MTBE의 분해율에 대한 실험을 실시하였다. 본 연구에서 여러 가지 변수들 중에 농도와 상대습도에 따라 MTBE의 분해율에 대하여 실험하였으며, 본 연구의 실험조건하에서 질소가 도핑된 TiO$_2$ 광촉매를 통해서 효과적으로 MTBE가 제거됨을 확인 할 수 있었다.

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국내 서식 토양생물종을 이용한 가솔린 오염토양의 생태독성 평가

  • Lee U-Mi;An Yun-Ju
    • Proceedings of the Korean Society of Soil and Groundwater Environment Conference
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    • 2006.04a
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    • pp.207-208
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    • 2006
  • Earthworms have been widely used as bioindicators for soil ecotoxicity assessment. Ecotoxicity of methyl tert-butyl ether(MTBE) to terrestrial organisms were evaluated by- earthworm assay. Test earthworm species were Perionyx excavatus and Eisenia andrei. The. toxicity test was performed based on a OECD guideline No. 207 with slight modification. Mortality and abnormal morphology of earthworms exposed to different concentrations of MTBE were measured. Toxic levels of MTBE were determined by measuring the median lethal concentration (LC5O) after 72 hours. The toxicity data was statistically analyzed by Trimmed Spearman-Harbor method. This study showed that, P. excavatus is more sensitive to E. andrei, and that earthworm assay can be a good protocol to evaluate the soils contaminated gasoline components.

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Analysis of Component for Determining Illegal Gasoline (가짜휘발유 판정을 위한 성분 분석)

  • Lim, Young-Kwan;Won, Ki-Yoe;Kang, Byung-Seok;Park, So-Hwi;Jung, Seong;Go, Young-Hoon;Kim, Seong-Soo;Jung, Gil-Hyoung
    • Tribology and Lubricants
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    • v.36 no.3
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    • pp.161-167
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    • 2020
  • Petroleum is the most used energy source in Korea with a usage rate of 39.5% among the available 1st energy source. The price of liquid petroleum products in Korea includes a lot of tax such as transportation·environment·energy tax. Thus, illegal production and distribution of liquid petroleum is widespread because of its huge price difference, including its tax-free nature, from that of the normal product. Generally, illegal petroleum product is produced by illegally mixing liquid petroleum with other similar petroleum alternatives. In such case, it is easy to distinguish whether the product is illegal by analyzing its physical properties and typical components. However, if one the components of original petroleum product is added to illegal petroleum, distinguishing between the two petroleum products will be difficult. In this research, we inspect illegally produced gasoline, which is mixed with methyl tertiary butyl ether (MTBE) as an octane booster. This illegal gasoline shows a high octane number and oxygen content. Further, we analyze the different types of green dyes used in illegal gasoline through high performance liquid chromatography (HPLC). We conduct component analyses on the simulated sample obtained from premium gasoline and MTBE. Finally, the illegal gasoline is defined as premium gasoline with 10% MTBE. The findings of this study suggest that illegal petroleum can be identified through an analytic method of components and simulated samples.