• 제목/요약/키워드: 저속열분해

검색결과 5건 처리시간 0.016초

저속열분해를 통한 바이오매스 부산물의 바이오촤 특성 비교 분석 (Comparision of Biochar Properties From Biomass produced by Slow Pyrolysis)

  • 박진제;이용운;류창국;강기섭;양원;정진호;현승훈
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2013년도 제46회 KOSCO SYMPOSIUM 초록집
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    • pp.69-72
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    • 2013
  • This study investigates the characteristics of biochar by slow pyrolysis at $500^{\circ}C$ for various biomass residues. Six biomass materials were tested: Tree bark, Tree stem, bagasse, cocopeat, paddy straw and palm kernel shell. In the biochar yield, the effect of ash in the raw biomass was significant for paddy straw. Excluding the ash content, the timber bark, bagasse and paddy straw had a similar biochar yield of 26-29 wt.%. Tree stem and bagasse had well developed pores in a wide size range and large surface area over $200m^2/g$. Cocopeat and PKS has significantly higher biochar yield due to the increased content of lignin, but the development of intra-particle pores and microscopic surface area was very poor. The elemental composition, pH and other properties of the biochar samples were also compared.

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고성능 미세스텝 구동회로의 개발 (Development of High Performance Microstepping Driver)

  • 이광운;장원식;박정배;여형기;유지윤
    • 전력전자학회논문지
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    • 제2권3호
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    • pp.37-43
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    • 1997
  • 2상 하이브리드 스텝모터를 미세스텝으로 제어하면 저속에서도 부드럽게 회전하고, 스텝 분해능을 높일 수 있으며, 공진으로 인한 바람직하지 못한 현상들을 제거할 수 있다. 본 논문에서는 고성능 미세스텝 구동회로를 개발하였다. 본 논문에서 개발한 미세스텝 구동회로는 2상 하이브리드 스텝모터의 1회전스텝(1.8도)을 128 미세스텝으로 구동할 수 있는 위치 분해능을 가지며 스텝모터를 장시간 구동할 때 발생되는 열로 인한 문제점을 줄이기 위한 전류 절약 동작모드를 지원한다.

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홀로셀룰로오스 에어로겔의 특성 (The Characteristics of Holocellulose Aerogel)

  • 권구중;김대영;김남훈
    • Journal of the Korean Wood Science and Technology
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    • 제38권3호
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    • pp.205-212
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    • 2010
  • 본 연구는 홀로셀룰로오스를 이용하여 제조한 에어로겔과 에어로겔의 열적특성 및 다공성에 대해서 검토하였다. 홀로셀룰로오스는 alkali hydroxide-urea 용액으로 용해 및 겔화시켜 동결건조로 에어로겔을 제조하였다. 홀로셀룰로오스 에어로겔은 그물모양 또는 스폰지와 같은 다공성구조로 이루어졌다. 밀도는 0.04g/$cm^3$이었고, 비표면적은 145.3 $m^2$/g이었다. 에어로겔의 열분해는 $210{\sim}350^{\circ}C$의 온도범위에서 일어났으나,저속의 승온조건일수록 열분해가 보다 낮은 온도에서 일어났다. 홀로셀룰로오스 에어로겔은 승온조건이 저속일수록 micro pore체적이 증가하였다. 홀로셀룰로오스 에어로겔 탄화물의 비표면적은$0.5^{\circ}C$/min의 승온조건이 656.7 $m^2$/g로 가장 높았다. 탄화물들은 에어로겔의 구조가 열에 의해 섬유의 배열이 변형되어 불규칙적 구조로 변화된 것이 주사전자현미경에 의해 관찰되었다.

거대억새의 저속 열분해 생성물 특성 분석 (Properties of Products from Slow Pyrolysis of Geodae-Uksae 1)

  • 이용운;음푸른별;정진호;현승훈;박영권;류창국
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2012년도 제44회 KOSCO SYMPOSIUM 초록집
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    • pp.235-237
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    • 2012
  • Geodae-Uksae 1 is a variety of Miscanthus sacchariflorus recently discovered in Korea. It is being mass-cultivated for use as energy crop due to its superior productivity, as high as 30 ton/ha/yr for the dry mass. This study investigates the method of producing biochar and bio-oil from the crop using slow pyrolysis. Especially, the study focused on assessing the biochar properties for its application to soil to improve soil quality and sequestrate carbon. Using an electrically heated packed bed reactor, the products of slow pyrolysis from Geodae-Uksae 1 were produced over a temperature range of $300-700^{\circ}C$ with a heating rate of $10^{\circ}C/min$. The biochar, condensable vapor (bio-oil) and residual gases were characterized for the physical and chemical properties. It was concluded that the ideal temperature for pyrolysis to produce biochar is $500^{\circ}C$.

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인도네시아 바이오매스 부산물의 저속 열분해 특성 분석 (Analytical study of the properties of slow pyrolysis of biomass by-product of Indonesia)

  • 강기섭;이용운;박진제;류창국;양원
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2013년도 제46회 KOSCO SYMPOSIUM 초록집
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    • pp.61-64
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    • 2013
  • Biomass is well known for organic resources photosynthesized by carbon dioxide water in the air and thus it can be widely used in the form of energy and production for various kinds of materials. Through pyrolysis, biomass can be transformed into solid(biochar), liquid(bio-oil), and combustible gas on the different condition of temperature and heating rate. That's why biomass can be practically used to preprocess and produce a variety of elements. This work is to analyze the characteristics of slow pyrolysis of three different kinds of biomass extracted from Indonesia. They showed similar moisture content and combinations of combustible matters and had quite a large discrepancy in the ash among them like 2.1 & of Bagasse, 91% of PKS, and 20.9% of Paddy Straw, respectively. yield of biochar, solid form of the biomass, steadily decreased when the temperature went up and that of bio-oil the highest at the temperature of 500 degrees Celsius. At the same temperature range, PKS bio-oil showed 51.4 % of yield and Bagasse had 55.1% while it turned out that Paddy straw showed the lowest yield of 37.2%. The apparent density was also measured to figure out the density of each product from the pyrolysis experiments at the temperature of 500 degrees Celsius. The result was like these; the density of biochar was 0.17, the lowest, and that of Tree stem was 1.3 when mixed by an equal amount of biochar and bio-oil.

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