• Title/Summary/Keyword: 열 탄소성

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Preparation of Pelletized Porous Adsorbent with Pyrolysis Temperature and Its Toluene Gas Adsorption Characteristics (열분해 조건에 따른 펠렛형 다공성 흡착재의 제조 및 톨루엔 가스 흡착 특성)

  • Kim, Do Young;Kim, Yesol;Cho, Seho;Jung, Jin-Young;Kim, Min Il;Lee, Young-Seak
    • Applied Chemistry for Engineering
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    • v.24 no.6
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    • pp.587-592
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    • 2013
  • In this study, we prepared pelletized porous carbon adsorbent (PCA) according to the different pyrolysis temperature using activated carbon and polyvinyl alcohol (PVA) as a binder for the removal of toluene, which is one of the representative volatile organic compounds (VOCs). We investigated physical characteristics of PCA using FE-SEM, BET, TGA and evaluated their adsorption capacity for toluene using GC. It was confirmed that the formability of pellets composed of the activated carbon, PVA and solvent of mass mixing ratio was 1 : 0.2 : 0.8 was the most outstanding. Toluene adsorption capacity was evaluated by measuring the maximum time when more than 99% of toluene adsorbed on the pellet. The specific surface area of the adsorbent pyrolyzed at $300^{\circ}C$ was measured as 4.7 times in $941.9m^2/g$ compared to that of the unpyrolyzed pellet. Micropore volume and toluene adsorption capacity of PCA increased fivefold to be 0.30 cc/g and thirteenfold to be 26 hours compared to that of the unpyrolyzed pellet, respectively. These results were attributed to the change of pore size and specific surface area due to the PVA content and the different pyrolysis temperature.

Condensable Gas Separation using Phenol! Alumina Composite Activated Carbon Hollow Fiber Membranes (페놀수지/알루미나 복합 활성탄소중공사막을 이용한 응축성 기체 분리)

  • Shin, Kyung-Yong;Park, You-In;Kim, Beom-Sik;Koo, Kee-Kahb
    • Membrane Journal
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    • v.20 no.4
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    • pp.312-319
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    • 2010
  • Carbon membrane materials have received considerable attention for the gas separation including hydrocarbon mixture of ingredients of the volatile organic compounds(VOCs) because they possess their higher selectivity, permeability, and thermal stability than the polymeric membranes. The use of activated carbon membranes makes it possible to separate continuously the VOCs mixture by the selective adsorption-diffusion mechanism which the condensable components are preferentially adsorbed in to the micropores of the membrane. The activated carbon hollow fiber membranes with uniform adsorptive micropores on the wall of open pores and the surface of the membranes have been fabricated by the carbonization of a thin film of phenolic resin deposited on porous alumina hollow fiber membrane. Oxidation, carbonization, and activation processing variables were controlled under different conditions in order to improve the separation characteristics of the activated carbon membrane. Properties of activated carbon hollow fiber membranes and the characterization of a gas permeation by pyrolysis conditions were studied. As the result, the activated carbon hollow fiber membranes with good separation capabilities by the molecular size mechanism as well as selective adsorption on the pores surface followed by surface diffusion effective in the recovery hydrocarbons have been obtained. Therefore, these activated carbon membranes prepared in this study are shown as promising candidate membrane for separation of VOCs.

Recent Advances in the Development of Nickel Catalysts for Carbon Dioxide Methanation (이산화탄소 메탄화를 위한 니켈 촉매 기술 동향)

  • Jaewon Jang;Jungpil Kim
    • Applied Chemistry for Engineering
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    • v.35 no.5
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    • pp.361-371
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    • 2024
  • This study reviews recent advancements in Ni-based catalysts for CO2 methanation, emphasizing high thermal stability and catalytic performance at elevated temperatures. Ni catalysts are preferred for their strong hydrogen adsorption, high activity, and methane selectivity. Strategies such as optimizing metal loading, using efficient supports, and introducing promoters enhance thermal stability by preventing sintering and carbon deposition. The produced methane serves as a valuable feedstock for synthetic fuels and chemicals, improving the economic feasibility of the CO2 methanation process. These findings underscore the importance of thermal stability in developing effective Ni catalysts for large-scale CO2 methanation.

Effect of water vapor on the growth of carbon nanotubes by thermal chemical vapor deposition (탄소나노튜브의 열화학기상 합성에 미치는 수분 첨가의 영향)

  • Jeon, Hong-Jun;Kim, Young-Rae;Lee, Nae-Sung
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2008.11a
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    • pp.415-415
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    • 2008
  • 수분을 첨가한 열화학기상증착으로 $850^{\circ}C$에서 길게 수직 성장한 다중벽 탄소나노튜브를 합성하였다. 실리콘 웨이퍼에 열 증착기로 Al 15 nm를 입히고 그 위에 촉매 층으로 Fe 0.5 nm 를 증착한 기판을 사용하였다. 탄소나노튜브의 성장에는 분위기 가스로 Ar을, 성장 가스로 $C_2H_2$를 사용하였다. 이들 가스를 이용한 합성 중에 약 100 ppm 전후의 수분을 첨가함으로써 탄소나노튜브의 성장 길이를 10 배 가량 증가시켰다. 이것은 합성 중의 수분 첨가로 인해 금속촉매 입자들의 활동성이 증가하였기 때문이다. 수분의 첨가량를 달리하여 합성한 탄소나노튜브의 길이와 정렬도를 관찰하기 위해 주사전자현미경 (scanning electron microscopy, SEM)을 이용하였고, 탄소나노튜브의 정확한 지름과 벽의 개수를 파악하기 위해 투과전자현미경 (transmission electron microscopy)을, 결정성을 파악하기 위해 Raman 분광기를 사용하였다.

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Determination of Thermal Decomposition Parameters for Ablative Composite Materials (삭마용 내열 복합재료의 열분해 반응인자 결정)

  • Kim Yun-Chul
    • Proceedings of the Korean Society of Propulsion Engineers Conference
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    • 2005.11a
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    • pp.22-25
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    • 2005
  • The thermal degradation of carbon/phenolic composite have been studied at high temperature by using thermogravimetric (TGA). A heating .ate of 5, 10, 15, 30 and $50^{\circ}C/min$ was used for the determination of thermal decomposition parameters of composite materials at high-temperature service. It has been shown that as the heating rates is increased, the peak decomposition rates are occur at higher temperature. Based on results of thermogravimetric analysis, the pyrolysis process is analyzed and physical and mathematical models for the process are proposed. The thermal analysis also has been conducted using transient heat conduction and the in-depth temperature distribution and the density profile were evaluated along the solid rocket nozzle. As a future effort the thermal decomposition parameter determined in this investigation will be used as input to thermal and mechanical analysis when subjected to solid rocket propulsion environment.

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Improvement of Graphite Properties Using RF Thermal Plasma

  • Sin, Myeong-Seon;Lee, Gyu-Hang;Choe, Seon-Yong;Jo, Gwang-Seop;Kim, Seong-In
    • Proceedings of the Korean Vacuum Society Conference
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    • 2016.02a
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    • pp.233.2-233.2
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    • 2016
  • Graphite의 순도, 결함, 결정층, 전기저항이 개선을 위하여, 10,000K 이상의 초고온 RF 열플라즈마 처리에 관한 연구를 수행하였다. 방전가스는 Ar을 사용하고, 특성 개선을 위하여 첨가가스로 $H_2$, $CH_4$을 첨가하여 흑연의 열플라즈마 처리에 의한 특성을 고찰하였다. Energy Dispersion Spectroscopy을 이용한 탄소 함량 분석 결과, 75wt% 저급 흑연에 함유된 유무기 불순물은 고온의 플라즈마에 의해 제거되어 99wt% 이상으로 순도가 개선되었고, XRD 및 Raman 분석으로부터 고온 열처리를 통한 탄소원자의 재배열로 흑연의 $sp^2$결함이 감소되고, 결정성이 향상됨을 확인하였다. 또한 열플라즈마로 처리된 흑연입자에 대한 분체저항 측정 결과, $10^{-3}{\Omega}{\cdot}cm$에서 $10{-4}{\Omega}{\cdot}cm$로 감소되었다.

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Heat Flux Evaluation of KSR-III Sub-scale Chamber (KSR-III 축소형 연소기의 열유속 평가)

  • 조원국;문일윤;김종규
    • Journal of the Korean Society of Propulsion Engineers
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    • v.8 no.1
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    • pp.81-84
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    • 2004
  • A water-cooled calorimeter chamber with 8 cooling channels based on KSR-III sub-scale chamber has been designed and manufactured. One dimensional empirical correlation has been used at the design stage and full three-dimensional CFD analysis has been conducted to confirm the cooling condition for hot fire test is safe. Predicted heat flux is accurate around the nozzle throat when the thermal resistance of carbon deposit is considered. However relatively large difference is observed in chamber part.

Fabrication of counter electrodes for dye-sensitized solar cells by using surface modified and dispersion controlled multi-walled carbon nanotubes (표면개질 및 분산제어된 다중벽 탄소나노튜브를 이용한 염료감응태양전지 대전극의 제조)

  • Choi, Hee-Jung;Lee, Gi-Won;Park, Nam-Kyu;Kim, Kyung-Kon;Hong, Sung-Chul
    • 한국신재생에너지학회:학술대회논문집
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    • 2008.05a
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    • pp.445-447
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    • 2008
  • 본 연구에서는 다중벽 탄소나노튜브용 표면개질제를 리빙라디칼중합법을 통하여 제조하고, 이를 이용하여 표면개질되고 분산제어된 다중벽탄소나노튜브를 제조하고 염료감응형 태양전지의 대전극 재료로 사용하였다. 우선 리빙라디칼중합법 중 nitroxide mediated polymerization (NMP) 기술을 이용하여 poly(maleic anhydride-co-p-acetoxystyrene)-block-poly(p-acetoxystyrene)를 합성하고, 공중합체중의 maleic anhydride기에 이미드화 반응을 통하여 pyrene기를 도입하였다. 공중합체 중의 p-acetoxystyrene 반복단위들은 가수분해 반응을 통하여 p-hydroxystyrene 반복단위로 변환하였으며, 제조된 공중합체의 구조와 열 특성 등을 GPC, GC, $^1H$-NMR, TGA을 통하여 분석하였다. 제조된 공중합체를 이용하여 다중벽 탄소나노튜브의 표면을 polymer wrapping법으로 처리하였고, 표면개질된 탄소나노튜브의 분산성을 다양한 용매에서 비교분석하였다. 표면이 개질되고 페이스트 내에의 분산성이 향상된 다중벽탄소나노튜브를 염료감응태양전지의 대전극 제조에 응용하였으며, 표면처리 및 분산제어 여부에 따른 제작 특성 및 동작특성 등을 평가하였다.

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Biochar for soil carbon sequestration (토양탄소격리를 위한 바이오차)

  • Woo, Seung Han
    • Clean Technology
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    • v.19 no.3
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    • pp.201-211
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    • 2013
  • Biochar is charred materials generated during pyrolysis processes in the absence of oxygen using biomass, resulting in high carbon contents. In recent years, biochar has attracted more increasingly due to its potential role in carbon sequestration, renewable energy, waste management, soil amendment for agricultural use, and environmental remediation. Since biochar has a long-term stability in soil for thousands of years, biochar can be carbon negative compared to carbon-neutral biomass energy that decomposes eventually. Moreover, when biochar is applied to soil, crop production can be largely improved due to its high pH and its superior ability to retain water and nutrients. This paper review the research trends of biochar including the principles of carbon sequestration by biochar, its physico-chemical properties, and its applications on agricultural and environmental area.

Synthesis Long Multi-Walled Carbon Nanotubes by Water-Assisted Thermal-CVD (물 첨가 열화학기상증착을 이용하여 긴 다중벽 탄소나노튜브의 합성)

  • Jeon, Hong-Jun;Kim, Young-Rae;Lee, Nae-Sung
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2008.06a
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    • pp.220-220
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    • 2008
  • 물 첨가 열화학기상증착을 이용하여 750도에서 길고 수직 성장한 다중벽 탄소나노튜브를 합성하였다. 사용된 기판으로는 우선 실리콘 웨이퍼에 열 증착기로 확산 방지층으로 Ti 50 nm를 입히고 그 위에 Al 15 nm를 입히고 난 후 촉매 층으로 Invar 36 (63 wt% Fe, 37 wt% Ni)을 1 nm 얇게 증착하였다. 탄소나노튜브의 성장에 사용된 가스는 Ar, $C_2H_2$ 이다. Ar은 분위기 가스로 사용되었고, $C_2H_2$는 탄소나노튜브의 성장에 관여하는 가스이다. 또한, 합성중에 약간의 물을 첨가함으로 기존의 탄소나노튜브 성장 길이보다 10배 가량 더 성장 하였다. 이것은 합성 중의 물 첨가로 인해 촉매 입자들의 활동성이 기존에 비해 더 증가했다는 것을 보여준다. 합성된 탄소나노튜브의 길이와 정렬도를 보기 위해 주사전자현미경 (scanning electron microscopy, SEM)을 이용하였고, 탄소나노튜브의 지름과 벽의 개수를 파악하기 위해 투과전자현미경 (transmission electron microscopy)을 이용하였다.

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