• Title/Summary/Keyword: 오일온도

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Animal fat biodiesel separation and washing (동물성 오일 바이오디젤의 분리 및 세정 방법 연구)

  • Kim, Deogkeun;Kim, Sumgmin;Lee, Joonpyo;Park, Soonchul;Lee, JinSuk
    • 한국신재생에너지학회:학술대회논문집
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    • 2011.11a
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    • pp.113.2-113.2
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    • 2011
  • 동물성 오일을 이용한 바이오디젤 생산 반응 후 미반응된 메탄올과 염기촉매의 처리에 관한 연구로써 바이오디젤의 순도에 영향을 미친다. 메탄올과 염기촉매는 바이오디젤 생산 반응 후 상층인 메틸 에스터 층과 하층인 글리세롤 층에 각각 포함되어 있다. 1차적으로 각각의 층에서 메탄올을 증발하게 되며 메탄올 증발은 감압 증류 장치를 이용해 분리하게 된다. BD100을 기준으로 하여 메탄올의 함량은 0.2% 이하여야 하며 수분 함량은 0.05% 이하를 유지해야 한다. 메탄올 증발은 메탄올의 끓는 온도인 $65^{\circ}C$를 기준으로 하여 끓는점 보다 낮은 온도와 높은 온도에서 각각 증발을 실시하고 각각의 메탄올 증발 제거에 따른 FAME 함량에 미치는 영향에 대해 FAME 함량 분석을 통해 조사하였으며 메탄올 증발 후 증류수를 이용한 바이오디젤 내 잔류 촉매 및 자유 글리세린 세정 제거에 대해 조사하였다. 증류수 양과 증류수 온도 및 세정 시간에 따른 FAME 함량 변화를 알아보았으며 세정 후 증류수 증발에 따른 FAME 함량 변화에 대해서 분석을 실시하였다. 본 실험을 통해 동물성 오일을 이용한 바이오디젤 생산 후처리 공정인 메탄올 증발 및 세정, 수분 증발 공정의 최적 조건을 도출하고자 하였다.

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Development of Friction Loss Measurement Device at Low Speed of Turbocharger in a Passenger Vehicle (승용차용 터보과급기의 저속 영역 마찰 손실 측정 장치 개발)

  • Chung, Jin Eun;Lee, Sang Woon;Jeon, Se Hun
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.18 no.1
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    • pp.585-591
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    • 2017
  • Turbocharging is widely used in diesel and gasoline engines as an effective way to reduce fuel consumption. But turbochargers have turbo-lag due to mechanical friction losses. Bearing friction losses are a major cause of mechanical friction losses and are particularly intensified in the lower speed range of the engine. Current turbochargers mostly use oil bearings (two journal bearings and one thrust bearing). In this study, we focus on the bearing friction in the lower speed range. Experimental equipment was made using a drive motor, load cell, magnetic coupling, and oil control system. We measured the friction losses of the turbocharger while considering the influence of the rotation speed, oil temperature, and pressure. The friction power losses increased exponentially when the turbocharger speed increased.

A Review on the Research and Development of Oil Shale (오일셰일 연구 동향)

  • Lee, Heung-Yeon;Kim, Seon-Wook;Lee, Won-Soo;Lee, Dae-Gil
    • The Korean Journal of Petroleum Geology
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    • v.14 no.1
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    • pp.21-35
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    • 2008
  • Oil shale is a fine-grained sedimentary rock that includes organic matter called "kerogen". When the kerogen is heated at moderate temperature, petroleum-like liquids are produced through the kerogen. Although it has been reported that oil shale reserves are enormous in amount, totaling at least 2.9 trillion barrels of oil, a great deal of its reserves still remain untapped. This report presents the viability and recent state of oil shale development, which will further validate the feasibility of oil shale development as well as pertinent technology.

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Investigation of Physicochemical Properties of Bio-oils Produced from Pitch Pine (Pinus rigida) at Various Temperatures (열분해 온도에 따른 리기다소나무 바이오오일의 물리·화학적 특성 평가)

  • Kim, Tae-Seung;Kim, Jae-Young;Oh, Shin-Young;Hwang, Hye-Won;Choi, Joon-Weon
    • Journal of the Korean Wood Science and Technology
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    • v.40 no.3
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    • pp.204-211
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    • 2012
  • In this study, fast pyrolysis of pitch pine (Pinus rigida) was performed in a fluidized bed reactor under the temperature ranges between 400 and $550^{\circ}C$ at the residence time of 1.9 sec. Essential pyrolytic products (bio-oil, biochar, and gas) were produced and their yield was clearly influenced by temperature. The maximum yield of bio-oil was observed to 64.9 wt% (wet basis) at the temperature of $500^{\circ}C$. As pyrolysis temperature increased, the yield of biochar decreased from 36.8 to 11.1 wt%, while gas amount continuously increased from 16.1 to 33.0 wt%. Water content as well as heating value of bio-oils were obviously sensitive to the pyrolysis temperature. The water contents in the bio-oil clearly decreased from 26.1 ($400^{\circ}C$) to 11.9 wt% ($550^{\circ}C$), with increasing the fast pyrolysis temperature, while their higher heating values were increased from 16.6 MJ/kg to 19.3 MJ/kg. According to GC/MS analysis, 22 degradation compounds were identified from the bio-oils and 10 compounds were derived from carbohydrate, 12 compounds were derived from lignin.

Tribological Characteristics with Concentration ZnDTP Additives in Automotive Engine (자동차 엔진의 ZnDTP 첨가제 농도에 따른 트라이볼로지 특성)

  • Oh, Seong-Mo
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.8 no.4
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    • pp.697-702
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    • 2007
  • The lubricational characteristics about friction and wear has an important effect on the material quality of surface. Therefore, in the case of automobile engine oil which is used under severe running condition, or therefore, the seizure and anti-scuffing is very important. We have studied the lubricational characteristics of auto engine oil with additives using Falex wear test machine. We have obtained the studied result is as fellows. In order to more improved the surface roughness characteristics adding the P(phosphate) as additives is excellent at a low temperature. Adding the ZnDTP and Ca-phenate is excellent on the anti-wear and extreme pressure properties at the high load. Moreover, when the ZnDTP and P are added, the temperature properties is excellent because the stability is maintained in a high temperature.

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Fuel Characteristics of Quercus variabilis bio-oil by Vaccum Distillation (감압증류에 의한 굴참나무 바이오오일의 연료 특성 변화)

  • Chea, Kwang-Seok;Jo, Tae-Su;Lee, Soo-Min;Lee, Hyung Won;Park, Young-Kwon
    • Journal of the Korean Applied Science and Technology
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    • v.33 no.1
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    • pp.75-82
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    • 2016
  • The technology of fast pyrolysis is regarded as a promising route to convert lignocellulose biomass into bio-oil which can be upgraded to transportable fuels and high quality chemical products. Despite these promises, commercialization of bio-oil for fuels and chemicals production is limited due to its notoriously undesirable characteristics, such as high and changing viscosity, high water and oxygen contents, low heating value and high acidity. Therefore, in this study quality improvement of bio-oil through vaccum distillation had been targeted. A 600 g of cork oak(Quercus variabilis) which grounded 0.8~1.4 mm was processed into bio-oil via fast pyrolysis for 1.64 seconds at $465^{\circ}C$ and temperature of vaccum distillation(100hPa) was designed to control, $40^{\circ}C$, 50, 60, 70, and 80 for 30min. Bio-oil, biochar, and gas of pyrolytic product were produced to 62.6, 18.0 and 19.3 wt%, respectively. The water content, viscosity, HHV(Higher Heating Value) and pH of bio-oil were measured to 0.9~26.1 wt%, 4.2~11.0 cSt 3,893~5,230 kcal/kg and 2.6~3.0, respectively. Despite these quality improvement, production was still limited due to its notoriously undesirable characteristics, therefore continous quality improvement will be needed in order to use practical fuel of bio-oil.

Study on Pyrolysis Characteristics for Upgrading of Bitumen-Like Heavy Oil Contained in Indonesian Resources (인도네시아산 자원 내에 포함된 역청성 오일의 경질화를 위한 열분해 특성에 관한 연구)

  • Jang, Jung Hee;Han, Gi Bo;Park, Cheon-kyu;Jeon, Cheol-Hwan;Kim, Jae-Kon;Kwak, Hyun
    • Clean Technology
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    • v.22 no.4
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    • pp.292-298
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    • 2016
  • In this study, the pyrolysis process was carried out in order to upgrade of heavy oil contained in the resources from Indonesia. In order to investigate the composition and basic properties of the heavy oil contained in the resources, the various analytical methods was used and then the TGA (thermogravimetric) method was especially used for the thermal degradation characteristics of heavy oil in the pyrolysis. From the results obtained from the various analytical methods, the reaction conditions such as the reaction temperature was collected for the pyrolysis process and the pyrolysis using the resources containing the heavy oil was conducted using the fixed-bed reactor under the various reaction conditions. Consequently, We found that the content of heavy oil contained in the resources was about 35% and the conversion of heavy oil and the recovery efficiency of thermal degradation oil were about 21 and 80%, respectively.

Numerical Study on the Evaporation Characteristics of Biocrude-oil Produced by Fast Pyrolysis (급속열분해를 통하여 생산된 바이오오일 액적의 증발 특성에 관한 수치해석적 연구)

  • Choi, Sang Kyu;Choi, Yeon Seok;Kim, Seock Joon;Han, So Young
    • Applied Chemistry for Engineering
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    • v.27 no.6
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    • pp.646-652
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    • 2016
  • Biomass is regarded as one of the promising energy sources to deal with the depletion of fossil fuels and the global warming issue. Biocrude-oil can be produced through the fast pyrolysis of biomass feedstocks such as wood, crops, agricultural and forestry residues. It has significantly higher viscosity than that of conventional petroleum fuel and contains solid residues, which can lower the spray and atomization characteristics when applied to the burner. In addition, biocrude-oil consists of hundreds of chemical species derived from cellulose, hemicellulose and lignin, and evaporation characteristics of the biocrude-oil droplet are distinct from the conventional fuels. In the present study, a numerical study was performed to investigate the evaporation characteristics of biocrude-oil droplet using a simplified composition of the model biocrude-oil which consists of acetic acid, levoglucosan, phenol, and water. The evaporation characteristics of droplets were compared at various surrounding air temperatures, initial droplet diameters, and ethanol mixing ratios. The evaporation time becomes shorter with increasing air temperature, and it is much sensitive to the air temperature particularly in low temperature ranges. It was also found that the biocrude-oil droplet evaporates faster in cases of the smaller initial droplet diameter and larger ethanol mixing ratio.