• 제목/요약/키워드: low-temperature carbonization

검색결과 56건 처리시간 0.023초

하수슬러지 케익으로부터 생산한 탄화물의 에너지 특성 (An Energy Characteristics of Carbonization Residue produced from Sewage Sludge Cake)

  • 이승희
    • Korean Chemical Engineering Research
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    • 제47권2호
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    • pp.230-236
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    • 2009
  • 국내 하수슬러지는 2012년부터 런던협약에 의해 해양투기가 금지될 예정에 있어 이에 대한 처리방법이 절실한 실정이다. 본 연구에서는 하수슬러지 케익을 재활용하기 위한 방법으로 탄화공정을 이용하여 탄화물 제조 및 에너지 특성에 대한 검토를 실시하였다. 하수슬러지 케익의 기초적 특성과 조성에 의하면, 하수슬러지 케익에는 27%의 인산염이 포함되어 있으며 이는 환원제로서 유해물질 처리에 이용될 수 있다. 하수슬러지 케익의 발열량을 파악한 결과, 저위발열량은 38.7 kcal/kg으로 하수슬러지 케익을 탄화하지 않고 직접 에너지원으로 사용하는 것은 바람직하지 않다. 하수슬러지 케익의 탄화공정에서 최적 탄화온도와 최적 탄화시간은 $250^{\circ}C$와 15분으로 설정되었다. 이 조건에서의 탄화물의 발열량은 비교적 낮아 하수슬러지 케익 탄화물 자체는 신재생 에너지원으로의 가능성은 크지 않다고 판단되나 인산염이 27% 정도가 포함되어 있어 다른 유기성 폐기물과 혼합하여 탄화하는 것이 적합하다고 판단되었다.

왕겨의 마이크로파 탄화속도 (Kinetics on the Microwave Carbonization of Rice Chaff)

  • 김지현;유승곤;김동국
    • Korean Chemical Engineering Research
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    • 제43권6호
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    • pp.683-690
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    • 2005
  • 왕겨를 마이크로파로 탄화하고 그의 탄화속도를 기존의 열적 탄화에 의한 탄화속도와 비교하였다. 왕겨를 $300{\sim}600^{\circ}C$에서 각각 30분 동안 열적 탄화하고 그의 탄화속도를 분석한 결과 탄화온도가 증가할수록 질량감소 및 탄화도(C/H 몰비)가 현저히 증가했지만 왕겨에 마이크로파를 조사하면 입사전력과 조사시간이 증가해도 탄화가 일어나지 않았다. 그러나 $600^{\circ}C$에서 30분 동안 탄화시켜 C/H 몰비가 3.0 이상인 탄화왕겨 6 wt%를 왕겨에 혼합시키고 마이크로파를 조사한 결과 탄화가 잘 되었고 그의 속도식은 마이크로파 입사전력 및 조사시간에 의존하였으며 열적 탄화와 마찬가지로 Arrhenius 식으로 잘 표현되었다. 이때 마이크로파 탄화로 얻어진 활성화에너지는 열적 탄화에 비하여 크게 낮은 반면에 반응속도상수는 훨씬 컸다. 이는 마이크로파 흡수촉진 매체, 즉 촉매적 개시제(initiator)로 사용된 탄화왕겨에 대한 마이크로파 에너지의 내부 부피가열 특성에 기인한 것으로 판단된다. 마이크로파 흡수특성에 대한 왕겨의 회분과 탄화왕겨의 탄화도 및 혼합비율에 대한 영향을 검토하였다.

열수가압탄화법(HTC, Hydrothermal Carbonization)에 의한 음식물 폐기물 biochar의 특성 연구 (A Study on the Characteristics of the Biochar by Hydrothermal Carbonization with Food Waste)

  • 조우리;오민아;정원덕;박성규;배선영;이재영
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제21권1호
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    • pp.22-27
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    • 2016
  • Hydrothermal carbonization (HTC) is a carbonization method of thermochemical process at a relatively low temperature (180-250℃). It is reacted by water containing raw material. In this study, it was selected for effective disposal method of food waste because food waste in Korea has large amount water. 5 kg, 10 kg, 15 kg of food waste were reacted for 6 hours at 200℃ for selecting the optimum amount of raw material. Since the derived optimum amount, food waste was reacted for 2 hours, 4 hours and 6 hours at 200℃ and 1.5 MPa. After carbonization, it was analyzed to evaluated the properties by ultimate analysis, iodine adsorption, BET surface area and SEM. After analyzing the characteristics, it can be utilized as a basic data for applied.

MTS를 사용한 LPCVD 법에 의한 (100)Si 위의 $\beta$-SiC 증착 및 계면특성 (Interfacial Characteristics of $\beta$-SiC Film Growth on (100) Si by LPCVD Using MTS)

  • 최두진;김준우
    • 한국세라믹학회지
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    • 제34권8호
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    • pp.825-833
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    • 1997
  • Silicon carbide films were deposited by low pressure chemical vapor deposition(LPCVD) using MTS(CH3SICl3) in hydrogen atmosphere on (100) Si substrate. To prevent the unstable interface from being formed on the substrate, the experiments were performed through three deposition processes which were the deposition on 1) as received Si, 2) low temperature grown SiC, and 3) carbonized Si by C2H2. The microstructure of the interface between Si substrates and SiC films was observed by SEM and the adhesion between Si substrates and SiC films was measured through scratch test. The SiC films deposited on the low temperature grown SiC thin films, showed the stable interfacial structures. The interface of the SiC films deposited on carbonized Si, however, was more stable and showed better adhesion than the others. In the case of the low temperature growth process, the optimum condition was 120$0^{\circ}C$ on carbonized Si by 3% C2H2, at 105$0^{\circ}C$, 5 torr, 10 min, showed the most stable interface. As a result of XRD analysis, it was observed that the preferred orientation of (200) plane was increased with Si carbonization. On the basis of the experimental results, the models of defect formation in the process of each deposition were compared.

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탄화온도 차이에 의한 목질탄화물의 흡착성 변화 (Changes of Adsorption Properties of Woody Charcoals Prepared by Different Carbonizing Temperature)

  • 조태수;안병준;최돈하
    • Journal of the Korean Wood Science and Technology
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    • 제33권3호통권131호
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    • pp.45-52
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    • 2005
  • 북양젓나무(Abies sibirica Ledeb)의 목분, 목섬유, 수피를 탄화하여 획득한 목탄의 물성과 흡착특성을 탄화온도별로 조사하였다. 전체적으로 탄화온도가 상승할수록 탄화수율은 감소하였다. 목탄의 탄소함량은 탄화온도의 상승과 함께 증가하였으나, 수소나 산소의 함량은 감소하였다. 수피탄화물은 목분 또는 목섬유 탄화물과 비교하여 탄화수율이 높게 나타났으며, 수피탄화물 내 회분함량도 상당히 높았다. 목질탄화물의 요오드흡착능은 탄화온도가 높을수록 향상되었으며, 목분이나 섬유 탄화물이 수피탄화물보다 상대적으로 높았다. 기상의 톨루엔에 대한 흡착능은 목탄 종류에 관계없이 $600^{\circ}C$에서 탄화하였을 경우 가장 높게 나타났으며, 이러한 결과는 $600^{\circ}C$에서 생산한 목탄이 비표면적과 총세공용적이 가장 크다는 사실로 쉽게 설명되어진다. 초산가스제거율은 고온탄화물일수록 크고, 암모니아 가스 제거율은 $400^{\circ}C$와 같은 저온에서 탄화한 탄화물이 높은 경향을 나타내었다. 이는 고온탄화물일수록 알칼리성을 나타내는 반면 저온탄화물은 산성을 나타내는 것에 기인하는 것으로 보인다. 따라서 목탄의 pH가 산 또는 염기성 가스 흡착능력에 큰 영향을 주는 것으로 생각된다.

음식물 쓰레기와 제지슬러지를 이용한 고체연료 제조 (Manrfacturing Process of Solid Fuel Using Food Wastes and Paper Sludges)

  • 김용렬;손민일
    • 한국응용과학기술학회지
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    • 제27권4호
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    • pp.437-444
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    • 2010
  • Dry Process(natural drying, hot-air drying, oil fry drying), optimized mixture ratio and the condition of carbonization was carried out in order to improve the product durability develop eco-friendly solid fuel mixing food waste and paper sludge. As a result of the experiment, oil fry drying process was the fastest method for drying food waste and paper sludge mixture that contains 80% water inside, and the optimized mixture ratio to minimize the generating concentration of chlorine gas against caloric value of mixture ratio was 7:3. Additionally proper temperature of product carbonization was about $200^{\circ}C$ and shown increasing product durability through the carbonization. Therefore, the pelletized solid fuel be shaped diameter around 0.5cm, length 2cm under which was pulverized and molded using 7:3 mixture of food waste, and paper sludge was the eco-friendly solid fuel possible to be industrialized which is consist of chlorine concentration of below 2.0wt% and the lowest caloric value of over 5,000kcal/kg. In conclusion, this developing manufacturing process of the solid fuel can be interpreted to contribute alternative energy development in accordance with low carbon and green growth era.

The Carbonization Behaviors of Coal Tar Pitch for Mechanical Seal

  • Chae, Jae-Hong;Kim, Kyung-Ja;Cho, Kwang-Youn;Choi, Jae-Young
    • Carbon letters
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    • 제2권3_4호
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    • pp.182-191
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    • 2001
  • Quinoline insoluble formed by the heat treatment was hot-pressed near its softening point. The green body was stabilized in the temperature range of $300{\sim}400^{\circ}C$ and subsequently carbonized below $1300^{\circ}C$ in an argon atmosphere. The behaviors of QI formation was examined with varying the heat treatment temperature and the lapse of time of the sample carbonized at various temperatures. And the mechanical property, corrosion resistance, and friction behavior were also measured optimum content of mesophase pitch ensured a dense structure and high $LC_{(002)}$ value, which resulted in high mechanical properties, good corrosion resistance, and low-stable friction behavior.

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Thermo-electrical properties of randomly oriented carbon/carbon composite

  • Raunija, Thakur Sudesh Kumar;Supriya, N.
    • Carbon letters
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    • 제22권
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    • pp.25-35
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    • 2017
  • The aim of the work was to investigate the thermo-electrical properties of low cost and rapidly produced randomly oriented carbon/carbon (C/C) composite. The composite body was fabricated by combining the high-pressure hot-pressing (HP) method with the low-pressure impregnation thermosetting carbonization (ITC) method. After the ITC method step selected samples were graphitized at $3000^{\circ}C$. Detailed characterization of the samples' physical properties and thermal properties, including thermal diffusivity, thermal conductivity, specific heat and coefficient of thermal expansion, was carried out. Additionally, direct current (DC) electrical conductivity in both the in-plane and through-plane directions was evaluated. The results indicated that after graphitization the specimens had excellent carbon purity (99.9 %) as compared to that after carbonization (98.1). The results further showed an increasing trend in thermal conductivity with temperature for the carbonized samples and a decreasing trend in thermal conductivity with temperature for graphitized samples. The influence of the thickness of the test specimen on the thermal conductivity was found to be negligible. Further, all of the specimens after graphitization displayed an enormous increase in electrical conductivity (from 190 to 565 and 595 to 1180 S/cm in the through-plane and in-plane directions, respectively).

Electrospun Polyacrylonitrile-Based Carbon Nanofibers and Their Hydrogen Storages

  • Kim Dong-Kyu;Park Sun Ho;Kim Byung Chul;Chin Byung Doo;Jo Seong Mu;Kim Dong Young
    • Macromolecular Research
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    • 제13권6호
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    • pp.521-528
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    • 2005
  • Electrospun polyacrylonitrile (PAN) nanofibers were carbonized with or without iron (III) acetylacetonate to induce catalytic graphitization within the range of 900-1,500$^{circ}C$, resulting in ultrafine carbon fibers with a diameter of about 90-300 nm. Their structural properties and morphologies were investigated. The carbon nanofibers (CNF) prepared without a catalyst showed amorphous structures and very low surface areas of 22-31 $m^{2}$/g. The carbonization in the presence of the catalyst produced graphite nanofibers (GNF). The hydrogen storage capacities of these CNF and GNF materials were evaluated through the gravimetric method using magnetic suspension balance (MSB) at room temperature and 100 bar. The CNFs showed hydrogen storage capacities which increased in the range of 0.16-0.50 wt$\%$ with increasing carbonization temperature. The hydrogen storage capacities of the GNFs with low surface areas of 60-253 $m^{2}$/g were 0.14-1.01 wt$\%$. Micropore and mesopore, as calculated using the nitrogen gas adsorption-desorption isotherms, were not the effective pore for hydrogen storage.

Process Optimization for Preparing High Performance PAN-based Carbon Fibers

  • Yun, Jeong-Hyeon;Kim, Bo-Hye;Yang, Kap-Seung;Bang, Yun-Hyuk;Kim, Sung-Ryong;Woo, Hee-Gweon
    • Bulletin of the Korean Chemical Society
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    • 제30권10호
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    • pp.2253-2258
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    • 2009
  • wet spun polyacrylonitrile (PAN) fiber precursors. The process variables chosen were treatment temperature, applied tension in stabilization process. The temperature profile of the stabilization was set on the basis of exothermic peaks of the differential scanning calorimetry (DSC) result. Both tensile strength and modulus increased with holding at onset temperatures of the exothermic peaks for extended duration, and with a higher heating rate up to the onset temperatures at a given applied tension among the experimental conditions. The increase in load monotonously increased the tensile modulus, on the other hand, the tensile strength was maximum at the load of 15 mg/filament (T15). The load 20 mg/ filament (T20) was considered to be exceeded to form oriented crystalline structure, possibly introducing more defects in the fiber than under load of T15. The sample CP3-T15 O5 H30 showed the best tensile properties among the samples experimented whose tensile properties are compatible with the commercialized grade of general purpose carbon fibers even at low carbonization temperature such as $800\;{^{\circ}C}$ (the carbonization temperature in the commercial process. 1300∼$1500\;{^{\circ}C}$).