• Title/Summary/Keyword: 목질펠릿

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Characteristics of Charcoal from Wood Pellet (목질펠릿으로 제조한 탄화물의 특성)

  • Han, Gyu-Seong;Kim, Byung-Ro
    • Journal of the Korean Wood Science and Technology
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    • v.34 no.3
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    • pp.15-21
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    • 2006
  • The objective of this research is to develop the technique for carbonization of wood pellet and analyze a possibility for the utilization of carbonized wood pellet. The properties of wood pellet charcoals, such as density, yield, elemental composition, higher heating value, and methyleneblue adsorption, were analyzed. Wood pellet was made of sawdust of Hyunsasi-poplar, Japanese larch, Korean pine, Korean red pine, and Jolcharn-oak (serrate oak), respectively. The high density charcoal ($0.5{\sim}0.7g/cm^3$) was yielded from densified wood pellet. The carbon contents and calorific values of wood pellet charcoals were increased with the increase of carbonization temperature. The methyleneblue adsorptivity of wood pellet charcoal was similar to that of wood charcoal.

Wood pelletizing using pine root waste biomass - different pelletizing properties between trunk and root biomass of Pinus densiflora (소나무 뿌리 폐기물을 이용한 목질 펠릿 제조 - 목부와 뿌리로 제조한 펠릿의 특성 비교)

  • Shin, Soo-Jeong;Han, Gyu-Seong;Myeong, Soo-Jeong;Cho, Jung-Sik;Yeon, Ik-Jun
    • 한국신재생에너지학회:학술대회논문집
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    • 2008.10a
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    • pp.71-73
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    • 2008
  • Different biosolid fuel (wood pellet) properties between trunk and root of pine (Pinus densiflora) biomass were investigated. Trunk has more organic solvent extracts and Klason lignin content which has higher heating values than root biomass component. In root biomass, polysaccharides content was higher than trunk biomass. Based on Higher Heating Value (HHD) analysis and ash content, trunk biomass showed better solid fuel characteristics than root biomass. But pine root biomass had lower HHD than trunk biomass, its HHD values were higher than other hardwood or annual plant lignocellulosic biomass.

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Analyses of GHG Reduction Effectiveness and Economic Feasibility in the Wood Pellet Fuel Switching Project (목재 펠릿 연료전환 사업의 온실가스 감축 효과 및 경제성 분석)

  • Lee, Jin-Chul;Kang, Kyu-Young
    • Journal of the Korean Wood Science and Technology
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    • v.41 no.6
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    • pp.594-605
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    • 2013
  • This study was performed to analyze GHG (Greenhouse gas) reduction effectiveness and economic feasibility in the wood pellet fuel switching project using JCDM (Japan Clean Development Mechanism) and KVER (Korea Voluntary Emission Reduction)data. The major data for the analyses consist of investment costs, annual GHG reductions, fuel prices and GHG credit prices. The wood pellet fuel switching projects are the $CO_2$-zero projects. Therefore, these projects are essential to accomplish the GHG mitigation target, especially in Korea. In order to raise the economic feasibility of the wood pellet fuel switching project, the results of this study suggest that the Korean government should reduce the price of wood pellet through the supply on a large scale and raise the KCER price of wood pellet fuel switching project.

Evaluation for Wood Pellets from Pinus densiflora Wood Damaged by Forest Fire (산불피해 소나무재의 목질펠릿으로의 이용가능성 평가)

  • Kwon, Sung-Min;Cho, Jae-Hyun;Lee, Sung-Jae;Kwon, Gu-Joong;Hwang, Byung-Ho;Lee, Gwi-Hyun;Han, Gyu-Seong;Cha, Du-Song;Kim, Nam-Hun
    • Journal of the Korean Wood Science and Technology
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    • v.35 no.4
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    • pp.14-20
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    • 2007
  • The properties of the wood pellets from damaged wood by forest fire and sound woods were investigated. Oven-dry densities of pellets made from sound wood and the damaged wood of Pinus densiflora were 0.93~0.94 and 0.86~0.88, respectively. Compressive strength of the pellets from the woods was ranged from 145 to $168kgf/cm^2$, and there was little difference between the sound wood and the damaged wood of P. densiflora. Ash content for the sound wood and the damaged wood of Pinus densiflora were 0.32~0.37% and 0.25~0.35%, respectively, and calorific values of each pellet were ranged from 18 to 19 MJ/kg. The result of elemental analysis in carbon. hydrogen and oxygen showed 45.8~48.8%, 6.2~6.5% and 46.5~48.0%, respectively. Consequently, there seem no significant difference in the properties between damaged and sound wood pellets.

Study on the Development of Utilization System for Wasted Forest Products Biomass Energy (임산 폐기물의 연소 및 에너지이용 시스템 개발에 관한 연구)

  • Lee, Hyoung-Woo
    • 한국신재생에너지학회:학술대회논문집
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    • 2005.11a
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    • pp.307-319
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    • 2005
  • 인류에게 있어 가장 중요한 연료의 역할을 충실히 해왔던 임산자원이 화석계 에너지원의 고갈과 환경오염 문제의 급부상으로 임산자원의 신재생에너지원으로서의 잠재력이 다시 관심의 대상이 되고 있다. 본 연구에서는 임산자원의 에너지화와 그 산업적 응용을 위하여 원료의 수급체계를 검토, 확립하는 한편, 폐목질자원을 펠릿화한 목재펠릿 연료의 제조공정을 국내 환경을 고려하여 고효율화하는 동시에 본 연료를 효과적으로 이용할 수 있는 시스템을 개발하고자 하였다.

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Thermal Efficiency analysis according to tar fouling by Structure Improvement of Wood pellet boiler using Computational Fluid Dynamics (전산유체역학(CFD) 목재펠릿보일러 구조개선 전·후 타르생성에 따른 열효율 분석)

  • Joo, Sang Yeon;Oh, Kwang Cheol;Lee, Sang Yeol;Cho, La Hoon;Park, Sun Yong;Lee, Seo Hyeon;Jeong, In Seon;Lee, Chung Geon;Kim, Dae Hyun
    • Proceedings of the Korean Society for Agricultural Machinery Conference
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    • 2017.04a
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    • pp.34-34
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    • 2017
  • 목질계바이오매스 중 목재펠릿은 '탄소중립(Carbon Neutral)' 연료로써 온실가스 감축 의무에 대응 가능한 에너지원이다. 하지만 목질계바이오매스 연소 시 발생되는 타르는 보일러 내부에 누적되어 효율을 감소시킨다. 타르 및 연소 불꽃에 의한 효율 감소를 최소화하기 위해 반대측면에 내화재(Castable)를 적용하여 실험하였으며 시뮬레이션을 이용하여 구조변경 분석이 실시되었다. 적용된 내화재는 비중이 낮고 단열성이 우수하여 열손실을 막아 연료비 절감의 효과를 가져 오며, 연소실 내부 청소 면적 감소로 인한 경제적 효과도 기대 할 수 있다. 분석결과를 이용하여 최적화된 펠릿보일러가 제작되었으며, 실험을 통하여 200시간 가동 후 열효율 감소량이 나타났다. 단위시간별 동일한 외부환경(산화제량, 부하, 주변 온도, 펠릿소비량)에서 실험이 진행 되었으며, 타르생성이전(Non-tar), 이후(Tar-existence) 보일러의 열효율 성능 비교실험이 실시되었다. 실험결과 타르생성이전 조건에서 구조변경 전 후 보일러의 열효율은 각각 91.87%, 90.73%로 확인되었으며, 타르생성이후 조건에서 각각 82.68%, 83.27%의 열효율을 확인하였다. 타르생성이전 대비 이후 조건에서 열효율 감소량은 각각 9.19%p, 7.46%p로 구조변경 전 대비 변경 후 보일러의 열효율이 약 1.73%p 더 적게 감소됨을 확인되었으며, 시뮬레이션 결과 타르생성이전 조건에서 구조변경 전 후 보일러의 효율은 각각 91.83%, 92.05%로 확인되었으며 타르 생성이후 조건에서 각각 85.25%, 87.43%의 열효율을 확인하였다. 타르생성이전 대비 이후 조건에서 열효율 감소량은 각각 6.58%, 4.62%로 구조변경 전 대비 변경 후 보일러의 열효율이 약 1.96%p 더 적게 감소됨을 확인하였다.

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The Study of Economic Feasibility of Wood Pellet in Domestic Power Plants Sector (국내 발전부문에서의 목재펠릿 경제성 연구)

  • Jeong, Nam-Young;Kim, Lae-Hyun
    • Journal of Energy Engineering
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    • v.19 no.4
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    • pp.251-257
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    • 2010
  • Korea have a plan to enforce the Renewable Portfolio Standard(RPS) in 2012 for climate change action and effective use of energy but because of lack of renewable energy resources and limits of technology development, it will be hard to fullfill a target for RPS obligation in domestic power generation sector and woodchip biomass cofiring with coal combustion is the one of the alternative methods of the goal. Woodchip biomass cofiring with coal combustion is easy to approach technical design and has competitiveness of $CO_2$ & renewble energy certificate benefit and also has much lower generation cost than any other renewable energy resources. Because of that reason, woodchip biomass cofiring with coal combustion should be needed to fullfill the goal for RPS obligation in domestic power generation sector with midlong-term direction.

Densified Pellet Fuel Using Woody Core of Industrial Hemp (Cannabis sativa L.) as an Agricultural waste (농업부산물인 산업용 대마(Cannabis sativa L.) 목부를 이용한 고밀화 펠릿 연료)

  • Han, Gyu-Seong;Lee, Soo-Min;Shin, Soo-Jeong
    • Korean Journal of Plant Resources
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    • v.22 no.4
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    • pp.293-298
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    • 2009
  • We prepared densified wood pellet by agricultural waste. The hemp woody core was used as replacing wood resource. Hemp was separated into the bast fiber and the woody core by hot steaming treatment. The hemp woody core had a similar lignin content(19.4%) and carbohydrate composition with hardwood(20-25% lignin in hardwood), respectively. Also, the hemp had a low ash content(0.5%), which resulted in a low ash formation in pellet burning. Heating value of the hemp pellet(18.40 MJ/kg) had a very similar to the pellet made by hardwoods. The hemp woody core could be replaced the hardwood for densified wood pellet.

Pellet Fuel from Wood Biomass (목질바이오매스를 이용한 펠릿연료의 제조)

  • Han, Gyu-Seong
    • 한국신재생에너지학회:학술대회논문집
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    • 2006.11a
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    • pp.521-524
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    • 2006
  • Recently, densified pollet 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 several species of wood to form a densified fuel was studied. Calorific and elemental analysis were carried out to assess pellet fuels Hot-press process was adopted for compact ion of sawdust and compaction was performed under prescribed condition. 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 $1.2g/cm^3$ and below 0.5%, respectively. When the press-temperature is over $60^{\circ}C$ densified fuels with density over $1.2g/cm^3$ and with fines below 0.5% can be produced. And the pressure over $1000kgf/cm^2$ was effect ive for this production.

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