• Title/Summary/Keyword: 바이오연료

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DME도입 시장환경

  • Gang, Jeong-Uk
    • LP가스
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    • s.105
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    • pp.43-50
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    • 2006
  • 연료로서의 DME 디메틸에테르(화학식 CH -O-CH ,DME)는 당초 가정용 캔 스프레이 등 분사 약제인 프레온의 대체 물질로 사용되기 시작했다. 그 후 양호한 압축 착화성이나 무연 연소하는 성질을 가지는 등 디젤 엔진의 연로로서 LP 가스와 동등한 증기압을 가져 LP가스의 대체연료로서 현재 전 세계에서 활발히 연구개발이 이뤄지고 있다. DME의 재료는 천연가스, 석탄, 바이오매스 등 다양한 자원에서 제조가 가능한데 이들로부터 합성가스(CO,H )를 추출.합성해 제조한다. 이것은 경제규모에 미달하는 부존자원의 유효한 이용이나 자원의 다양화에도 연결되기 때문에 차세대 연료로서 주목받고 있다. 천연가스로부터 저가로 대량 생산이 가능한 직적법이나 메탄올을 탈수해 제조하는 간접법 등 제조 기술도 확립되어 있다.

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POLICY & ISSUES 기획특집_4 - 기후변화대응 녹색기술의 현주소와 미래

  • Kim, Ju-Yeong
    • Bulletin of Korea Environmental Preservation Association
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    • s.399
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    • pp.20-21
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    • 2012
  • 우리나라는 좁은 국토에 많은 인구가 밀집한 관계로 단위면적당 폐기물의 발생량이 세계 최고 수준이며, 해양 오염 방지를 위해 유기성 폐기물 해양 배출을 금지한 런던협약 등 기후변화 관련 규제가 강화되고 있다. 또한 화석연료의 고갈화로 대체에너지 개발이 시급한 현시점에서 폐자원 에너지화 사업의 인프라 구축 및 대응책 수립이 요구되고 있다. 이에 우리나라는 2008년 5월 "폐기물 에너지화 종합대책" 이후 2009년 7월 "폐자원 및 바이오매스 에너지 대책" 실행계획 수립으로 폐기물 에너지화 사업 도입을 적극 추진하고 있다. 폐자원 에너지화 기술은 화석연료 대체로 인한 온실가스 감축효과가 있어 폐기물 처리, 화석연료 대체, 온실가스 감축이라는 일석삼조의 기술이다.

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국내 신재생에너지 보급 현황 및 주요 설치사례(4) -연료전지 발전-

  • Park, Jun-Taek
    • The Magazine of the Society of Air-Conditioning and Refrigerating Engineers of Korea
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    • v.39 no.6
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    • pp.47-52
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    • 2010
  • 2008년도 신재생에너지 보급통계(에너지관리공단 신재생에너지센터 발간, 2009.9)에 의하면 총1차에너지중 신재생에너지 공급비중은 2.43%인 5,858,482 toe인 것으로 집계되었다. 원별로는 폐기물이 77.98%로 거의 대부분을 차지하고 있으며, 그 다음이 수력, 바이오, 기타 순으로 나타났다. 기타로는 풍력 1.6%, 태양광 1.04%, 태양열 0.48%, 지열 0.27%, 연료전지 0.07%이다. 본 고에서는 국내 연료전지 발전 보급현황 및 설치사례를 소개한다.

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The feasibility analysis for energy utilization of forest biomass (산림 바이오매스의 에너지 활용을 위한 타당성 분석)

  • Kang, Hyeun Koo;Park, Kee Chul;Kim, Lae Hyun
    • Journal of Energy Engineering
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    • v.23 no.1
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    • pp.7-20
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    • 2014
  • The optimal woodchip production system was developed and the production cost of a forest woodchip fuel was calculated for utilizing the pitch pine, which covers around 480,000ha nationwide. the marginal price of the woodchip fuel considering the factor of supply price, electricity and heat selling price as well as capacity factor were suggested and the economic sensitivity analysis was conducted for various scenario. The most important variable which determine economic feasibility was a fuel cost for the power generation facility. If the electricity price is higher than the current SMP(System Marginal Price) or the capacity factor is higher than 80%, there fully is a benefit to consume the woodchip fuels produced in the suggested production system in this study. In addition, the additional benefit becomes more obvious when considering REC(Renewable Energy Certificate) and CDM(Clean Development Mechanism). Therefore, it is strongly suggested for domestic power generation sector to utilize the forest biomass fuel to achieve the obligatory target of RPS.

High-pressure Compaction of Sawdust of Hyunsasi-poplar (Populus alba ${\times}$ P. glandulosa) for Densified Fuel (고밀화에 의한 현사시 톱밥의 고형연료화)

  • 한규성;여진기
    • Journal of Korea Foresty Energy
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    • v.22 no.2
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    • pp.54-59
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    • 2003
  • Recently, densified pellet fuel from wood biomass is widely used at North America and Europe as a regenerable and clean carbon neutral bioenergy. High-pressure compaction of sawdust of Hyunsasi-poplar (Populus alba ${\times}$ P. glandulosa) to form a densified fuel was studied. Calorific and elemental analysis were carried out to assess Hyunsasi-poplar clones as fuels. Hot-press process was adopted for compaction of sawdust and compaction was performed under temperature from 100 to 180$^{\circ}C$, at pressure of 250 to 1000 kgf/$\textrm{cm}^2$, and for 2.5 to 10 minutes. Densified fuels were evaluated by its oven-dry density and fines after 5-minute shaking test. The target density and fines of densified fuels were over 1.2 g/$\textrm{cm}^2$ and below 0.5%, respectively. When the press-temperature is over 160$^{\circ}C$, densified fuels with density eve. 1.2 g/$\textrm{cm}^2$ and with fines below 0.5% can be produced. And the pressure over 750 kgf/$\textrm{cm}^2$ was effective for this production. It was found that the optimum press condition for preparation of densified fuel was 180$^{\circ}C$ -1000 kgf/$\textrm{cm}^2$ minutes.

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Development of CO2 Emission Factor for Wood Chip Fuel and Reduction Effects (목질계 바이오매스 중 대체연료 우드칩의 온실가스(CO2) 배출계수 개발 및 저감 효과)

  • Lee, Seul-Ki;Kim, Seung-Jin;Cho, Chang-Sang;Jeon, Eui-Chan
    • Journal of Climate Change Research
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    • v.3 no.3
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    • pp.211-224
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    • 2012
  • Technology for energy recovery from waste can reduce the greenhouse gas emissions. So recently, there are several companies using RDF, RPF, WCF instead of using only coal fuel and it's part of the fuel on the increase. In this study, we developed Wood chip fuel $CO_2$ emission factor through fuel analysis. It's moisture content is 23%, received net calorific value is 2,845 kcal/kg, and received basis carbon is 34%. The result of emission factor is $105ton\;CO_2/TJ$, it's 5.9% lower than 2006 IPCC guideline default factor $112ton\;CO_2/TJ$. The gross GHG(Greenhouse gases) emissions of plant A is $178,767ton\;CO_2 eq./yr$, and Net GHG emissions is $40,359ton\;CO_2 eq./yr$. Therefore, the reduction of GHG emissions is $138,408ton\;CO_2/yr$ through using WCF, and I accounts for 77% of all GHG emissions.

The Status of DME Development and Utilization as a Fuel (DME 연료 생산 및 이용기기의 개발현황)

  • Baek, Young-Soon;Cho, Won-Jun;Oh, Young-Sam
    • Journal of Energy Engineering
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    • v.16 no.2
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    • pp.73-82
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    • 2007
  • World energy demand has been dramatically increasing because of using much energy of developing countries in Asia. The other side, conventional fossil fuels supply has been gradually decreasing due to the limitation of fossil fuel reserves and changing to the use of environmental-friendly energy for prevention the emission of carbon dioxide, NOx and SOx. Based on these times and status, we get the n necessity of the conversion of environmental-friendly energy and the high effective utilization of conventional and unconventional energy. Recently, promised DME fuel as environmental-friendly and substituted oils will be introduced the status of technology and market in domestic and foreign.

Improvement of Biodiesel Cold Filter Plugging Point Using Fuel Additives (첨가제 이용 동물성 바이오디젤의 저온필터막힘점 개선)

  • Lee, Yong-Hwa;Lee, Tae-Sung;Jang, Young-Seok;Kim, Kwang-Soo;Cho, Hyun-Jun;Kim, Deog-Keun;Park, Kwang-Geun
    • 한국신재생에너지학회:학술대회논문집
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    • 2011.11a
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    • pp.110.1-110.1
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    • 2011
  • 최근 식물성 기름으로부터 생산된 바이오디젤의 보급이 활발해지면서, 그 원료의 안정적 확보에 대한 어려움과 원료가격 상승의 문제점이 발생하고 있다. 이러한 문제점을 극복하기 위한 대안으로 다양한 종류의 기름이 검토되고 있으며, 그 중 하나가 축산 폐유지를 이용한 바이오디젤의 생산이다. 그러나 축산 폐유지로부터 생산된 바이오디젤은 저온유동성이 열악하여 개선이 필요하다. 축산 폐유지 바이오디젤의 저온필터막힘점은 $6{\sim}8^{\circ}C$로 국내 동절기 품질 기준 $0^{\circ}C$ 이하를 만족하지 못한다. 본 연구에서는 축산 폐유지로부터 생산된 바이오디젤의 열악한 저온특성을 개선하기 위해 저온필터막힘점 개선 첨가제 6종을 사용하여 각각의 첨가제 혼합에 의한 저온유동성 개선 효과를 분석하였다. 각각의 첨가제를 1,000 ~ 5,000ppm 범위에서 폐돈지 및 폐우지 바이오디젤에 첨가하였다. 그 결과, Wintron을 제외한 나머지 첨가제는 폐돈지 바이오디젤의 저온필터막힘점을 최저 $0^{\circ}C$까지 개선할 수 있었다. 하지만 폐우지 바이오디젤의 경우, 첨가제에 의한 저온유동성 개선의 효과는 매우 적었다.

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Production of Solar Fuel by Plasma Oxidation Destruction-Carbon Material Gasification Conversion (플라즈마 산화분해-탄화물 가스화 전환에 의한 태양연료 생산)

  • Song, Hee Gaen;Chun, Young Nam
    • Clean Technology
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    • v.26 no.1
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    • pp.72-78
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    • 2020
  • The use of fossil fuel and biogas production causes air pollution and climate change problems. Research endeavors continue to focus on converting methane and carbon dioxide, which are the major causes of climate change, into quality energy sources. In this study, a novel plasma-carbon converter was proposed to convert biogas into high quality gas, which is linked to photovoltaic and wind power and which poses a problem on generating electric power continuously. The characteristics of conversion and gas production were investigated to find a possibility for biogas conversion, involving parametric tests according to the change in the main influence variables, such as O2/C ratio, total gas feed rate, and CO2/CH4 ratio. A higher O2/C ratio gave higher conversions of methane and carbon dioxide. Total gas feed rate showed maximum conversion at a certain specified value. When CO2/CH4 feed ratio was decreased, both conversions increased. As a result, the production of solar fuel by plasma oxidation destruction-carbon material gasification conversion, which was newly suggested in this study, could be known as a possibly useful technology. When O2/C ratio was 0.8 and CO2/CH4 was 0.67 while the total gas supply was at 40 L min-1 (VHSV = 1.37), the maximum conversions of carbon dioxide and methane were achieved. The results gave the highest production for hydrogen and carbon dioxide which were high-quality fuel.

Crown Fuel Characteristics of Japanese Red Pine (Pinus densiflora) in Mt. Palgong, Daegu (대구 팔공산 지역의 소나무 수관층 연료 특성)

  • Koo, Kyo-Sang;Lee, Byung-Doo;Won, Myoung-Soo;Lee, Myung-Bo
    • Journal of Korean Society of Forest Science
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    • v.99 no.1
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    • pp.52-56
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    • 2010
  • Crown fuel characteristics such as crown bulk density, crown base height, and fuel moisture content of Japanese red pine were analyzed. Ten trees in Mt. Palgong at Daegu, were destructively sampled and their crown fuels were weighed separately for each fuel category. Fuel content of live and dead crown component were 53%, and 15.3%, respectively. Foliar moisture content was 56%. Needles and twigs with diameter less than 1cm diameter accounted for 16.2%, 55% of total and crown fuel load. Average crown bulk density of Japanese red pine was 0.24 kg/$m^3$, effective crown fuel bulk density was 0.1325 kg/$m^3$.