• 제목/요약/키워드: Bio-Fuel

검색결과 343건 처리시간 0.023초

바이오알코올 혼합연료에 따른 배출 특성 연구 (Study on Emission Characteristics Depending on Mixing Fuels of Bio-Alcohol)

  • 김신;김재곤;이민호;황인하;이정민
    • 한국수소및신에너지학회논문집
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    • 제29권6호
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    • pp.654-660
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    • 2018
  • The dependence on global fossil fuels has been gradually reducing all over the world. Some countries which recognized the important of environmental values were joining to carry out international GHG goals. Our country has also participated with high targets (37% reduction compared to BAU 2030 years). So we need to supply materials of lower GHG value such as a bio-diesel. Bio-alcohol is one of the similar bio-fuels that can be reducing GHG. A lot of countries had tried to commercialize through various R&D for bio-alcohol. In this study, we analyzed the fuel characteristics of bio-alcohol fuel produced by domestic technology. And we evaluated a possibility to use as vehicle fuel through mixing of bio-alcohol and gasoline. The mixed fuels were satisfied with 2.3 wt% of oxygen content that is standard of the petroleum and petroleum alternative fuel business Act. We tried to evaluate a emission characteristic of vehicle by mixed fuel. In accordance with the results we tried to find a correlation between fuel and emission.

바이오 디젤 연료의 고압 분무 특성 (Characteristics of High Pressure Bio-diesel Fuel Spray)

  • 홍창호;최욱;최병철;이기영
    • 한국자동차공학회논문집
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    • 제11권2호
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    • pp.56-62
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    • 2003
  • Spray characteristics of conventional diesel fuel and bio-diesel fuel(methyl-ester of soybean oil) were compared, in terms of spray tip penetration and spray angle, by using a commercial high pressure common rail injection system for light-duty DI Diesel engines. The experiments were carried out under the non-evaporating condition at ambient density(8.8, $15.6 kg/\textrm{m}^3$) and injection pressure(75, 135 MPa). The experimental method was based on a laser sheet scattering technique. Spray tip penetrations of bio-diesel fuel were longer, on the whole, than those of conventional diesel fuel, except for lower injection pressure(75 MPa) under lower ambient density$(8.8 kg/\textrm{m}^3)$. But spray near angle and spray far angle of bio-diesel fuel were smaller than those of conventional diesel fuel, implying spray angle is related to the growth rate of spray tip penetration. The experimental results of spray tip penetration agreed well with the calculated values by the Wakuri et al.'s correlation based on the momentum theory.

발전용 바이오중유의 품질 및 성능 평가 특성 연구 (A Study on the Performance Evaluation and Quality for Power Bio-Fuel Oil)

  • 하종한;장은정;권용재
    • 한국응용과학기술학회지
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    • 제32권3호
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    • pp.588-598
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    • 2015
  • 최근 정부는 신재생에너지 연료 혼합 의무화 제도(RFS)와 신재생에너지 공급 의무화제도(RPS)를 적극 추진하고 있어 신재생에너지 연료의 중요성은 그 어느 때보다도 부각되고 있으며 적극적인 연구가 필요한 때이다. 이의 일환으로 발전용 바이오중유 시범보급사업과 관련 연구가 활발히 진행 중에 있다. 본 연구에서는 바이오중유의 성능평가기준(안) 마련을 위해 중유와 바이오중유의 연료품질 특성 및 산업용 보일러에서 연소 후 배출되는 먼지, 배출가스의 양을 비교 연구하였다. 연구결과 바이오 중유를 사용할 경우 먼지와 황산화물 등 유해배출가스가 현저히 저감 되는 것이 밝혀졌다.

75 MWe급 중유 발전소 보일러에 대한 바이오중유 100% 전소 실증 연소실험 결과 (The Demonstration Test Result of 100% Bio Heavy Oil Combustion at the 75 MWe Oil Fired Power Plant)

  • 백세현;박호영;김영주;김태형;김현희;고성호
    • 한국연소학회지
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    • 제19권2호
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    • pp.28-36
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    • 2014
  • Bio fuel oil combustion experiments were successfully demonstrated at the 75 MWe oil-fired power plant without major equipment retrofit and 100% bio-fuel oil combustion was possible without big problems. The experimental data error correction was conducted and numerical model-based analysis technique was applied for the evaluation of the results. Incase of bio fuel oil combustion, heat absorption of radiative heat transfer section was reduced while convection section has opposite trend. The furnace exit gas temperature tends to rise slightly. Environment emissions such as NOx and SOx concentrations showed a tendency to decrease during the bio fuel oil combustion period. On the other hand, boiler efficiency was slightly underestimated.

커먼레일 연료 분사 방식 과급 디젤기관에서 비에스테르화 폐식용유의 적용 (Application of wasted soybean oil non-esterified on turbo-charged diesel engines with common rail fuel injection system)

  • 정석호;김경현;이한성;고대권
    • 수산해양기술연구
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    • 제49권1호
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    • pp.51-57
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    • 2013
  • A demand for bio-diesel oil increases as one of solution for exhaustion of fossil fuel and reduction of $CO_2$ emission, and research on bio-diesel is being carried out. Bio-diesel oil is mainly esterified from vegetable oil with methanol in order to use for fuel on diesel engine and has demerit that costs are increased as compared with directly using like non-esterified one. Bio-diesel oil within 3% mixed with gas oil is used at present, proportion of bio-diesel oil will be increase by 5% in future. We judged that wasted soybean oil non-esterified could be used on diesel engine with an electronic fuel injection according to previous researches with a mechanical fuel injection. A performance test using only gas oil, gas oil with esterified bio-diesel oil 5% and wasted soybean oil non-esterified 5% on diesel engine with the electronic fuel injection were carried out. It is noticed that gas oil with wasted soybean oil non-esterified 5% has more similar characteristics to gas oil than gas oil with esterified bio-diesel oil 5%.

HEFA 공정으로 제조된 바이오항공유의 점화지연특성 분석 (Analysis on Ignition Delay Characteristics of Bio Aviation Fuels Manufactured by HEFA Process)

  • 강샛별
    • Korean Chemical Engineering Research
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    • 제57권5호
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    • pp.620-627
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    • 2019
  • 본 연구에서는 서로 다른 원료를 이용하여 HEFA 공정을 통해 제조한 국내외 바이오항공유(Bio-ADD, Bio-6308, Bio-7720)의 점화지연특성을 비교 및 분석하였으며, 이러한 바이오항공유의 실제 시스템에의 적용 가능성을 확인하기 위하여 기존에 사용되고 있는 석유계항공유(Jet A-1) 및 바이오항공유와 석유계항공유를 일정한 비율(50:50, v:v)로 혼합한 연료의 점화지연특성에 대해서도 분석하였다. 각 항공유의 점화지연시간은 CRU 장비를 사용하여 측정하였으며, 결과 해석을 위해 표면장력 측정, GC/MS 및 GC/FID 분석을 수행하였다. 그 결과, 모든 온도 조건에서 Jet A-1의 점화지연시간이 가장 길게 측정되었는데, 이는 aromatic compounds가 약 22.8% 존재하여 분해 과정에서 열적으로 안정하고 주변 산소와도 반응성이 낮은 benzyl radical이 생성되기 때문인 것으로 판단된다. 바이오항공유의 점화지연시간은 모두 비슷하게 측정되었는데, 이는 각 항공유를 구성하는 n-paraffin과 iso-paraffin의 비율(n-/iso-)이 약 0.12로 서로 비슷한 값을 가지며, cycloparaffin의 구성 비율도 약 3% 미만으로 크게 차이가 없기 때문인 것으로 해석된다. 또한, 국내외에서 개발된 바이오항공유(Bio-ADD, Bio-6308)를 석유계항공유와 50:50(v:v)으로 혼합한 연료의 점화지연시간은 혼합하지 않은 Jet A-1과 각 바이오항공유가 갖는 점화지연시간의 사잇값으로 측정되어, 기존에 사용 중인 시스템을 변경하거나 개선하지 않아도 적용이 가능함을 확인하였다.

직접분사식 바이오 에탄올-가솔린 혼합연료의 연료온도에 따른 분무 특성에 관한 실험적 연구 (An Experimental Study on Spray Characteristics of Directly Injected Bio-Ethanol-Gasoline Blended Fuel By Varying Fuel Temperature)

  • 이성욱;박기영;김종민;박봉규
    • 한국수소및신에너지학회논문집
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    • 제25권6호
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    • pp.636-642
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    • 2014
  • As environment problem became a worldwide issue, countries are tightening regulations regarding greenhouse gas reduction and improvement of air pollution problems. With these circumstances, one of the renewable energies produced from biomass is getting attention. Bio-ethanol, which is applicable to SI engine, showed a positive effect on the PFI (Port Fuel Injection) type. However, Ethanol has a problem in homogeneous mixture formation because it has high latent heat of vaporization characteristics and in the GDI (Gasoline Direct Injection) type, mixture formation is required quickly after fuel injection. Particularly, South Korea is one of the countries with great temperature variation among seasons. With this reason, South Korea supply fuel additive for smooth engine operation during winter. Therefore, experimental study and investigation about application possibility of blending fuel is necessary. This paper demonstrates the spray characteristics by using the CVC direct injection and setting the bio-ethanol blending fuel temperature close to the temperature during each seasons: -7, 25, $35^{\circ}C$. The diameter and the width of the CVC are 86mm and 39mm. High-pressure fuel supply system was used for target injection pressure. High-speed camera was used for spray visualization. The experiment was conducted by setting the injection pressure and ambient pressure according to each temperature of bio-ethanol blending fuel as a parameter. The result of spray visualization experiment demonstrates that as the temperature of the fuel is lower, the atomization quality is lower, and this increase spray penetration and make mixture formation difficult. Injection strategy according to fuel temperature and bio-ethanol blending rate is needed for improving characteristics.

중유화력발전소에서 바이오연료 혼합연소가 연료소비량에 미치는 영향 (Effect of Fuel Mixing Ratio on Fuel Consumption in a Oil Fired Power Plant)

  • 홍상필;유호선
    • 플랜트 저널
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    • 제12권3호
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    • pp.39-45
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    • 2016
  • 기존 벙커C유에 바이오중유 혼합비율을 50%, 80% 및 100%로 변화시키면서, 발전기 출력 320 MW, 380 MW 일 때 각각의 시간당 연료소비량을 측정하였다. 벙커C유 전소일 때의 시간당 연료소비량과 비교한 결과 발전기 출력 320 MW에서 바이오중유 혼합비율이 50%부터 100%까지 높아짐에 따라 시간당 연료소비량이 11.0%에서 20.4%까지 증가함을 알 수 있었다. 또한 발전기 출력 380 MW에서는 바이오중유 혼합비율이 50%부터 100%까지 높아짐에 따라 시간당 연료소비량이 12.0%에서 21.1%까지 증가함을 알 수 있었다. 더 나아가 측정된 시간당 연료소비량과 발전기 출력, 연료의 고위발열량을 이용하여 발전효율을 산출하였고, 발전기 출력 320 MW, 380 MW에서 모두 바이오중유 혼합비율이 50%부터 100%까지 높아지면서 발전효율은 감소함을 확인하였다.

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LPG/바이오디젤 혼합연료를 사용하는 직접분사식 디젤엔진의 성능 및 배기특성에 관한 연구 (Study on the Performance and Emission Characteristics of a DI Diesel Engine Operated with LPG / Bio-diesel Blended Fuel)

  • 이석환;오승묵;최영;강건용
    • 한국가스학회지
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    • 제14권1호
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    • pp.8-14
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    • 2010
  • 본 연구에서는 LPG/바이오디젤 혼합연료의 직접분사식 디젤엔진 적용성에 관한 실험을 수행하였다. 특히, 혼합연료를 엔진에 적용하는 경우 엔진성능, 배출가스 (미연탄화수소, 일산화탄소, 질소산화물, 이산화탄소), 연소안정성에 대한 실험을 1,500 rpm의 엔진회전수 조건에서 수행하였다. 바이오디젤은 질량대비 20-60% 범위로 LPG에 혼합하였다. 바이오디젤을 40% 이상 혼합하는 경우 엔진은 모든 부하영역에서 매우 안정적으로 연소되었다. 바이오디젤의 혼합율이 증가할수록 혼합연료의 세탄가가 향상되어 연소시작 시점이 진각되었다. 혼합연료를 사용하면 저부하에서는 과혼합에 의한 부분연소로 인하여 THC와 CO의 배출량이 급증하였으며, NOx의 경우 저부하에서는 배출량이 디젤연료에 비해서 낮았으며 고부하에서는 더 많이 배출되었다.

Conversion of organic residue from solid-state anaerobic digestion of livestock waste to produce the solid fuel through hydrothermal carbonization

  • Yang, Seung Kyu;Kim, Daegi;Han, Seong Kuk;Kim, Ho;Park, Seyong
    • Environmental Engineering Research
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    • 제23권4호
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    • pp.456-461
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    • 2018
  • The solid-state anaerobic digestion (SS-AD) has promoted the development and application for biogas production from biomass which operate a high solid content feedstock, as higher than 15% of total solids. However, the digested byproduct of SS-AD can be used as a fertilizer or as solid fuel, but it has serious problems: high moisture content and poor dewaterability. The organic residue from SS-AD has to be improved to address these problems and to make it a useful alternative energy source. Hydrothermal carbonization was investigated for conversion of the organic residue from the SS-AD of livestock waste to solid fuels. The effects of hydrothermal carbonization were evaluated by varying the reaction temperatures within the range of $180-240^{\circ}C$. Hydrothermal carbonization increased the calorific value through the reduction of the hydrogen and oxygen contents of the solid fuel, in addition to its drying performance. Therefore, after the hydrothermal carbonization, the H/C and O/C atomic ratios decreased through the chemical conversion. Thermogravimatric analysis provided the changed combustion characteristics due to the improvement of the fuel properties. As a result, the hydrothermal carbonization process can be said to be an advantageous technology in terms of improving the properties of organic waste as a solid-recovered fuel product.