• Title/Summary/Keyword: 석유정제업

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해외석유정보

  • Korea Petroleum Association
    • Korea Petroleum Association Journal
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    • no.9 s.244
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    • pp.83-90
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    • 2004
  • 본란은 해외석유산업에 대한 동향과 정보를 파악하기 위하여 석유협회 홈페이지(www.oil.or.kr)에서 연재중인 석유정보다이제스트 내용을 발췌하여 실은 것이다.

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석유산업 대외개방 영향과 대응방안 (상)

  • Korea Petroleum Association
    • Korea Petroleum Association Journal
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    • no.9 s.208
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    • pp.42-52
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    • 1998
  • 이 자료는 산업자원부와 정유5사 및 에너지경제연구원등이 석유산업 대외개방에 대비하여 공동으로 마련한 연구자료 중 「정제업 및 주유소업 대외개방의 영향 및 대응방안」 부분을 발췌한 것이다. <편집자 주>

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석유산업 대외개방 영향과 대응방안(하)

  • Korea Petroleum Association
    • Korea Petroleum Association Journal
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    • no.11 s.209
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    • pp.85-96
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    • 1998
  • 이 자료는 산업자원부와 정유 5사 및 에너지경제연구원등이 석유산업 대외개방에 대비하여 공동으로 마련한 연구자료 중 「정제업 및 주유소업 대외개방의 영향 및 대응방안」부분을 발췌한 것이다. <편집자 주>

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에너지 및 자원산업분야 행정규제 완화계획

  • Korea Petroleum Association
    • Korea Petroleum Association Journal
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    • no.8 s.162
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    • pp.34-36
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    • 1994
  • 정부는 지난 6월29일 과천청사에서 한리헌 경제기획원차관 주재로 경제행정 규제완화 실무위원회를 열고 석유정제업 등록을 허가제에서 등록제로 전환하고 석유제품 수출입 승인을 폐지하는 것등을 골자로 하는 통관제도ㆍ해운항만ㆍ환경산업ㆍ제약산업ㆍ에너지 및 자원산업 등 5개분야 70건의 행정규제완화 과제를 의결했다. 다음은 에너지 및 자원산업분야의 규제 완화 내용이다.

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The Complete Oxidation of BTX over Waste Pd-based Catalysts (폐 Pd 계 촉매상에서 BTX의 완전산화)

  • 김수진;김상채;서성규
    • Proceedings of the Korea Air Pollution Research Association Conference
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    • 2002.11a
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    • pp.337-338
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    • 2002
  • VOCs는 독성이 있고 돌연변이성, 발암성, 기형성을 유발하는 물질로 알려져 있으며 특히 대기질에서는 오존과 광화학스모그의 전구체로서 대기환경오염의 주요지표로 이용하는 국가가 증가하는 추세이다. 우리나라에서는 1999년부터 대기환경보전법 제8조 2항 규정에 의하여 대기환경규제지역내 (석유화학 정제업, 자동차 제조업, 주유소, 자동차 정비업소, 세탁시설, 기타제조업 등) VOCs를 규제토록 되어 있다(환경부, 1999). (중략)

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Removing Volatile Organic Compounds over Cu/ALO-6 catalyst promoted with Ce (Ce 첨가 Cu/ALO-6 촉매에 의한 휘발성유기화합물의 제거)

  • 박진영;김상채;서성규
    • Proceedings of the Korea Air Pollution Research Association Conference
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    • 2000.04a
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    • pp.364-365
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    • 2000
  • 최근 주된 관심사로 대두된 대기오염규제 대상 물질인 휘발성유기화합물(VOCs)은 상온, 상압하에서 reid vapor pressure가 10.3kPa 이상인 탄화수소 물질로서 여러 형태로 대기중이나 수질중에 존재하고, 인간의 주변 환경 및 건강에 직접적으로 해를 끼친다. 간접적으로는 대기중 광화학 반응에 참여하여 오존($O_3$)을 생성시키거나 스모그 생성의 전구체로 작용한다. 우리나라에서는 1999년부터 대기환경보전법 제8조 2항 규정에 의한 대기환경규제지역(석유화학 정제업, 자동차 제조업, 주유고, 자동차 정비업소, 세탁시설 등)에서 VOCs를 규제토록 법제화하고 있다. (중략)

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A Study on the Characteristic Trace Organic Pollutants in the Industrial Wastewater (산업폐수중 미량유기오염물질 배출 특성)

  • Chung, Y.H.;Kim, S.C.;Shin, S.K.;Kang, I.G.;Lee, J.I.;Lee, W.S.;Lee, J.B.
    • Analytical Science and Technology
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    • v.11 no.1
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    • pp.62-72
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    • 1998
  • This study was performed to characterize the trace organic pollutants in the industrial wastewater and to establish the database of the trace organic pollutants. The four manufacturing industries, which are refined petroleum, industrial chemicals, rubber & plastics and fabricated metals, were surveyed. The wastewater and discharging water of these 30 factories are analyzed to characterize the trace organic pollutants. In industrial chemicals, the kinds of products and organic pollutants are very various. Therefore to select the characteristic organic pollutants in this categories are also very difficult. In industrial chemicals, the gas chromatograpic peak patterns of wastewater are represented the various type according to their products, therefore the typical patterns of the characteristic organic pollutants could not be obtained because the kinds of manufactured goods and organic pollutants are very various. In refined petroleum, the effluent is discharged in the distillatory process of atmosphere pressure and contained the saturated hydrocarbons, phenol compounds, benzene compounds and naphtalene compounds. The saturated hydrocarbons peaks from $C_{15}$ to $C_{35}$ are represented the typical oil patterns by the uniform intervals therefore the peak can be easily distinguished. In rubber & plastics, the wastewater is discharged in the washing process which contains the additives. The problem of wastewater is not serious because the manufacturing process is not produced the effluent or the produced cooling water is recycled in that process.

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Fuel characteristics of Yellow Poplar bio-oil by catalytic pyrolysis (촉매열분해를 이용한 백합나무 바이오오일의 연료 특성)

  • Chea, Kwang-Seok;Jeong, Han-Seob;Ahn, Byoung-Jun;Lee, Jae-Jung;Ju, Young-Min;Lee, Soo-Min
    • Journal of the Korean Applied Science and Technology
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    • v.34 no.1
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    • pp.1-11
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    • 2017
  • Bio-oil has attracted considerable interest as one of the promising renewable energy resources because it can be used as a feedstock in conventional petroleum refineries for the production of high value chemicals or next-generation hydrocarbon fuels. Zeolites have been shown to effectively promote cracking reactions during pyrolysis resulting in highly deoxygenated and hydrocarbon-rich compounds and stable pyrolysis oil products. In this study, catalytic pyrolysis was applied to upgrade bio-oil from yellow poplar and then fuel characteristics of upgraded bio-oil was investigated. Yellow Poplar(500 g) which ground 0.3~1.4 mm was processed into bio-oil by catalytic pyrolysis for 1.64 seconds at $465^{\circ}C$ with Control, Blaccoal, Whitecoal, ZeoliteY and ZSM-5. Under the catalyst conditions, bio-oil productions decreased from 54.0%(Control) to 51.4 ~ 53.5%, except 56.2%(Blackcoal). HHV(High heating value) of upgraded bio-oil was more lower than crude bio-oil while the water content increased from 37.4% to 37.4 ~ 45.2%. But the other properties were improved significantly. Under the upgrading conditions, ash and TAN(Total Acid Number) is decrease and particularly important as transportation fuel, the viscosity of bio-oil decreased from 6,933 cP(Control) to 2,578 ~ 4,627 cP. In addition, ZeoliteY was most effective on producing aromatic hydrocarbons and decreasing of from the catalytic pyrolysis.