• 제목/요약/키워드: heavy crude oil

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Biological Upgrading of Heavy Crude Oil

  • Leon, Vladimir;Kumar, Manoj
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제10권6호
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    • pp.471-481
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    • 2005
  • Heavy crudes (bitumen) are extremely viscous and contain high concentrations of asphaltene, resins, nitrogen and sulfur containing heteroaromatics and several metals, particularly nickel and vanadium. These properties of heavy crude oil present serious operational problems in heavy oil production and downstream processing. There are vast deposits of heavy crude oils in many parts of the world. In fact, these reserves are estimated at more than seven times the known remaining reserves of conventional crude oils. It has been proven that reserves of conventional crude oil are being depleted, thus there is a growing interest in the utilization of these vast resources of unconventional oils to produce refined fuels and petrochemicals by upgrading. Presently, the methods used for reducing viscosity and upgradation is cost intensive, less selective and environmentally reactive. Biological processing of heavy crudes may provide an ecofriendly alternative or complementary process with less severe process conditions and higher selectivity to specific reactions to upgrade heavy crude oil. This review describes the prospects and strengths of biological processes for upgrading of heavy crude oil.

Data Interpretation Methods for Petroleomics

  • Islam, Annana;Cho, Yun-Ju;Ahmed, Arif;Kim, Sung-Hwan
    • Mass Spectrometry Letters
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    • 제3권3호
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    • pp.63-67
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    • 2012
  • The need of heavy and unconventional crude oil as an energy source is increasing day by day, so does the importance of petroleomics: the pursuit of detailed knowledge of heavy crude oil. Crude oil needs techniques with ultra-high resolving capabilities to resolve its complex characteristics. Therefore, ultra-high resolution mass spectrometry represented by Fourier transform ion cyclotron resonance mass spectrometry (FT-ICR MS) has been successfully applied to the study of heavy and unconventional crude oils. The analysis of crude oil with high resolution mass spectrometry (FT-ICR MS) has pushed analysis to the limits of instrumental and methodological capabilities. Each high-resolution mass spectrum of crude oil may routinely contain over 50,000 peaks. To visualize and effectively study the large amount of data sets is not trivial. Therefore, data processing and visualization methods such as Kendrick mass defect and van Krevelen analyses and statistical analyses have played an important role. In this regard, it will not be an overstatement to say that the success of FT-ICR MS to the study of crude oil has been critically dependent on data processing methods. Therefore, this review offers introduction to peotroleomic data interpretation methods.

양산중질유의 대책에 따른 신제품 개발실용화에 관한 연구 (A Study of physical properties and application to new products from the Heavy Residual Feul oil as Raw Materials.)

  • 김주항;강호근
    • 한국기술사회:학술대회논문집
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    • 한국기술사회 1984년도 제14회 한일기술사 합동 심포지움 참관기
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    • pp.84-91
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    • 1984
  • Heavy Residual Fuel oils is a mixture of reduced crude from crude unit, bottom products from vacuum and/or catalytic cracking unit with distillate to meet the specification and generally used as Heavy Fuel Oil for large combustion engines, boilers, etc…. But this study was made to investigate Heavy Residual Fuel oils for using as industrial raw material and resulted the following possibilties as valuable raw material as well as Heavy Fuel Oil. 1) Production of straight asphalt through vacuum distillation unit. 2) Using straight asphalt from vacuum distillation unit for manufacturing of Blown Asphalts, Cut Back Asphalts, Emulsified Asphalts and Asphalt Compound, etc…. 3) Using waxy oil side streams for manufacturing of raw oil to be Lube Oil base stocks through solvent dewaxing. 4) Production of lube base oils from dewaxed raw oil through chemical treatments. 5) Manufacturing of paraffine wax from slack wax to be produced as by product of dewaxing process.

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오일샌드 고부가화기술 동향 (High Value-added Technology of Oil Sand)

  • 박용기;최원춘;정순용;이철위
    • Korean Chemical Engineering Research
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    • 제45권2호
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    • pp.109-116
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    • 2007
  • 기존의 경질유가 고갈됨에 따라 새로운 자원개발이 필요해지고 있다. 석유화학산업의 수요를 충족하기 위하여 중질유 혹은 비투맨 등과 같은 중질원료를 사용하고 있다. 비투맨은 복잡하고 고리가 긴 탄화수소의 일종으로 오일샌드로 부터 얻을 수 있는데, 캐나다 앨버타에 매장되어 있는 오일샌드로부터 약 8,300억 배럴의 오일을 얻을 수 있는 것으로 추정된다. 본 보문에서는 (1) 오일샌드, 비투맨, 중질유의 기본 개념, (2) 오일샌드에서 오일을 뽑아내는 방법들, (3) 업그레이드하여 합성원유(synthetic crude oil)를 만드는 방법, (4) 기술의 경제성 평가 등에 대하여 소개하고자 한다.

유독해수(油獨海水)의 조정(調整)과 성장(性狀)에 관한 연구(硏究) (Conditioning and Characteristics of the Sea Water containing Heavy Oil)

  • 조봉연;황용우;김종국
    • 상하수도학회지
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    • 제12권2호
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    • pp.31-41
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    • 1998
  • As the leakage of crude oil from tankers breaks out frequently, it caused a serious problem for ocean pollution and calls for developing treatments to handle the leaked crude oil and mitigate the pollution. Thus it is required to develop new purification technolgies and appropriate treatment systems which have sufficient treatment capability in order to cope with the anticipated ocean pollution. In this experiment, A and B type heavy oils were used to make the emulsion of both water containing heavy oil and sea-water containing heavy oil. The following are the main results from this study ; 1. When A and B type heavy oils were added to the original sea-water and treatedin the homogrenizer respectively, the particle of oil beacame smaller in both cases. Under the same condition, while the initial oil density of sea-water containing B-heavy oil is higher than of emulsion with A-heavy oil, the particle of A-heavy oil is finer than that of B-heavy oil. 2. When A and B type heavy oils were added to distilled water and treated in the homogenizer respectively, the particle was more dispersed and finer than that in the case of sea-water in both cases. In this result, the water containing oil formed more stable emulsion than the sea-water containing oil. 3. In this experiment, all emulsions showed oil in water types. 4. Since the oil particle is larger in the sea-water than in the distillated water, interms of elimination of oil, it is thought to be more important to give Membrane treatment after implementing sandfilter, activity carbon, coagulation-sedimentation and floating separation as pre-treatment.

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해양유류오염정화를 위한 유류분해 미생물제제의 평가 (Evaluation of Petroleum Oil Degrading Mixed Microorganism Agent for the Bioremediation of Petroleum Oil Spilled in Marine Environments)

  • 손재학
    • 생명과학회지
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    • 제21권11호
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    • pp.1599-1606
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    • 2011
  • 유류분해에 있어 혼합미생물제제의 효과를 평가하기 위해 미생물제제의 처리성능과 microcosm test를 수행하였다. 유류분해세균은 0.5% Arabian heavy crude oil을 유일 탄소원으로 제공된 최소배지를 이용한 연속적인 농후배양을 통하여 분리하였다. 우수 유류분해 미생물조합인 3종의 균주(BS1, BS2, BS4)는 MSM배지에서 5일의 배양기간 동안 지방족 탄화수소를 48.4%, 방향족 탄화수소를 30.5% 생분해하였다. 처리성능 및 microcosm test는 Arabian heavy crude oil을 첨가한 후 3가지 처리조건인 무처리, 무기영양염처리 그리고 무기영양염 및 혼합미생물처리조건에서 유류화합물의 생물분해에 미치는 영향을 조사하였다. 무기영양염처리구와 무기영양염 및 혼합미생물처리구에서 지방족 탄화수소의 분해율은 실험기간 동안 유의하게 향상되었으며 두 실험구간 유의한 차이는 관찰되지 않았다. 그러나 무기영양염 및 혼합미생물처리구에서 방향족 탄화수소의 생분해율은 무기영양염제만을 처리한 시험구와 비교하여 처리성능 시험의 경우 50% 그리고 microcosm test의 경우 13%를 향상시켰다. 본 연구의 결과로부터 혼합미생물제제는 실험실, 처리성능 및 microcosm test에서 지방족뿐만 아니라 방향족 탄화수소의 생물분해를 촉진하였다. 특히 혼합미생물제제는 방향족 탄화수소의 제거를 위한 생물정화기술의 적용에 있어 유용한 도구로 판단된다.

허베이 스피리트 원유 유출 사고에 의한 퇴적물의 중금속 오염 (Heavy Metal Contamination in Sediments by Herbei Sprit Oil Spill)

  • 송윤호;최만식;우준식;심원준
    • 한국해양학회지:바다
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    • 제18권2호
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    • pp.70-79
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    • 2013
  • 원유 유출 사고 시 원유에 의한 생태계 영향 뿐만 아니라 원유에 포함된 중금속에 의한 오염도 평가되어야 한다. 허베이 스프리트호 유출 해역 부근의 조간대 및 연안역에서 사고 직후인 2007년 12월, 2008년 1월에 표층 퇴적물을 채취하였고 유기탄소, 황 및 금속 원소들을 정량하여 원유에 의한 퇴적물의 중금속 오염을 평가하고자 하였다. 원유에는 C, S 및 V, Ni가 함유되어 있었고, As, Cd 등 유해한 금속은 함유되어 있지 않았다. 유기탄소 농도로 보았을 때 오염이 가장 심한 정점은 원유의 영향이 약 10% 정도인 것으로 추정되었으며, 이 정점에서는 다른 정점들에 비해 높은 V 농도를 보였다. 금속간의 비(V/Al 및 Ni/Al)를 통하여 원유 오염 의심 정점을 다른 정점과 구분할 수 있었으며 이 비들을 향후 원유 오염 지시자로 활용할 수 있으리라 예상된다.

양산중질유(量産重質油)를 원료(原料)로한 신제품(新製品) 개발실용화(開發實用化)를 위(爲)한 조사연구(調査硏究) (Studies on physical properties and application to new products from Heavy Residual Fuel Oil as Raw Materials)

  • 김주항;강호근;허동섭
    • Elastomers and Composites
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    • 제20권2호
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    • pp.115-131
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    • 1985
  • Heavy residual fuel oils is a mixture of reduced crude from crude unit, bottom products from vacuum and/or catalytic cracking unit with distillate to meet the specification and generally used as heavy fuel oil for large combustion engines, boilers, etc$\cdots$. But this study was made to investigate heavy residual fuel oils for using as industrial raw material and resulted the following possiblities as valuable raw material as well as heavy fuel oil. 1) Production of straight asphalt through vacuum distillation unit. 2) Using straight asphalt from vacuum distillation unit for manufacturing of blown asphalts, cut back asphalts, emulsified asphalts and asphalt compound, rubber/asphalt sheet, etc$\cdots$. 3) Using waxy oil side streams for manufacturing of raw oil to be lube oil base stocks through solvent dewaxing. 4) Production of lube base oils and rubber process oils from dewaxed raw oil through chemical treatments. 5) Manufacturing of paraffine wax from slack wax to be produced as by product of dewaxing process.

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설계개선에 의한 원유운반선 송유관 지지구조물의 진동 저감 (Improvement of the Vibration Characteristics for the Oil Pipe Support Structure of the Crude Oil Carrier)

  • 김희원;박진화
    • 대한조선학회 특별논문집
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    • 대한조선학회 2005년도 특별논문집
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    • pp.69-75
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    • 2005
  • Recently it was reported that the vibration problems on the oil pipe support structure of the crude oil carrier were occurred. in order to investigate the vibration characteristics and the causes of the vibration occasionally. the vibration measurements and impact tests for the oil Pipe structure were carried out. From the measurement results severe vibration was caused by the resonance between the transversal natural frequency of the structure and $6^{th}$ order excitation force of the main engine. Providing the proper countermeasures a series of the vibration analyses were carried out based on the measurement results. From the analysis results, it was concluded that the vibration characteristics of the oil pipe structure were affected by the oil pipes, support structure itself, upper deck structure and the installation spaces and the standard design was established for the crude oil carriers.

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Possibility of Obtaining Lubricant Base Oil from Talakan Crude Oil Suitable for Exploitation in Extremely Cold Conditions in the Republic of Sakha (Yakutia)

  • Zhirkov, N.P.;Zakharova, S.S.;Sung, Zoo-One
    • Tribology and Lubricants
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    • 제31권1호
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    • pp.28-34
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    • 2015
  • This paper addresses the problems of using anti-freeze lubricants for different machines that must function at extremely low temperatures during winter operation in the Republic of Sakha (Yakutia). We discuss the possibility of obtaining anti-freeze base oils from Talakan crude oil, an area with major oil and gas deposits of the Republic of Sakha, and also provide the trade and technological classification of Talakan crude oil. We propose two different schemes for processing Talakan crude oil: the fuel scheme (obtaining light and heavy fractions as a fuel oil) and the base oil scheme (obtaining light fractions and base oils). We investigate the influence of pour point depressants on alkyl-methacrylate base on the low-temperature properties of the fractions obtained from Talakan crude oil and Korean base oils, and establish the optimal concentration of pour point depressants. We compare the properties of these fractions with the low-temperature properties of Korean base oils and find that the commercial oil "Ravenol 0W-40" provides optimistic results. We obtain oil with a pour point of minus $50^{\circ}C$ and a viscosity index greater than 100. The Design of Experiment was used to establish the optimum composition of the pour point depressants and the base oil S-8 to obtain lubricant oil with a kinematic viscosity of 17 cSt, viscosity index of 208, and a pour point of minus $64^{\circ}C$.