• 제목/요약/키워드: Synthesis gas

검색결과 867건 처리시간 0.023초

지중 석탄가스화 공정 시뮬레이션을 통한 산화제 주입조건에 따른 합성가스 특성에 대한 연구 (The Study on Synthesis Gas Characteristics Following Different Injection Condition of Oxidizing Agent Through Simulation of Underground Coal Gasification)

  • 장동하;윤상필;김형택;김정규;조원준;주우성;이진욱;이찬
    • 한국가스학회지
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    • 제17권5호
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    • pp.28-36
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    • 2013
  • 에너지 보안의 위기를 타파하기 위한 가장 많은 관심을 가지고 있는 것 중 하나가 지중 속 매장되어 있는 석탄이다. 본 연구에서는 지중에서 석탄을 직접 채굴을 하지 않고 지중 내 석탄 가스화를 직접 진행할 수 있는 지중 석탄가스화 공정에 대하여 화학 반응 공정 모사를 진행하였다. 본 연구는 1980년대 말에 미국의 Rocky Mountain 1 지중 석탄가스화 프로젝트를 참고로 진행을 하여 기본 모델을 완성하였다. 그리고 산화제 주입조건에 따른 민감도 분석을 통하여 합성가스의 조성 결과를 확인하였다. 반응 모델은 건조, 열분해, 촤 가스화로 나누어 모델이 구현되었고 실제 실험값에서의 생산된 가스량, 가스화 된 탄소량, 가스 수율 등의 값으로 결과를 확인하였다.

액상 슬러리 반응기에서 합성가스로부터 DME 직접 제조 (Direct Synthesis of Dimethyl Ether From Syngas in Slurry Phase Reactor)

  • 황갑진;김정민;이상호;박주식;김영호;김종원
    • 한국수소및신에너지학회논문집
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    • 제15권2호
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    • pp.119-128
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    • 2004
  • DME(Dimethyl Ether) was directly produced from the synthesis gas using the slurry phase reactor. The catalyst for DME production prepared two types (A type; Cu:Zn:Al=57:33:10, B type; Cu:Zn:Al=40:45:15, molar ratio). It was evaluated for the effect of the reaction medium oil using the small size slurry phase reactor. DME production yield and the methanol selectivity decreased in the order: n-hexadecane oil> mineral oil> therminol oil. The long-term test of DME production was carried out using A and B type catalyst, and n-hexadecane oil and mineral oil, respectively. It was confirmed that the use of A type for the catalyst and n-hexadecane for the reaction medium oil was very useful for the viewpoint of the DME production form the synthesis gas.

SHS법에 의한 고온발열체용 $MoSi_2$의 합성 및 소결 (Synthesis and Sinteirng of $MoSi_2$ by SHS Process)

  • 이승재;장윤식;김인술;박홍채;오기동
    • 한국세라믹학회지
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    • 제32권9호
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    • pp.1085-1091
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    • 1995
  • Molybdenum disilicide (MoSi2) was synthesized from Mo, MoO3, Si and Al powders by self-propagating high temperature synthesis (SHS). The effect of processing parameters such as Mo/MoO3 molar ratio, Ar gas pressure in the reactor and pressing pressure of compacts in synthesis of MoSi2 were investigated. h-MoSi2 was transformed into t-MoSi2 with increasing the Mo/MoO3 mole ratio, and only t-MoSi2 phase was identified above 3.5 : 1 (molar ratio). The synthesized phases did not change with the variation of Ar gas pressure and pressing pressure of compacts. It was found that the combustion temperature was above 2,50$0^{\circ}C$. The products were separated into MoSi2 (s) and $\alpha$-Al2O3 by the difference of their specific grativities. Bending strength, hardness and density of sintered specimen exhibited 82 MPa, 5.368 GPa and 5.43 g/㎤, respectively.

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자전고온 반응 합성법에 의한 AlN 분말의 제조 I.AlN 분말의 제조 (Fabrication of AlN Powder by Self-propagating High-temperature Synthesis I. Synthesis of AlN Powder)

  • 신재선;안도환;김석윤;김용석
    • 한국세라믹학회지
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    • 제33권9호
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    • pp.961-968
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    • 1996
  • The aluminum nitride was synthesized by the self-propagating high-temperature synthesis(SHS). The synthe-sis was used aluminum powder mixed with AlN powder as reactant and the control factors affected to synthesis were considered compact density pressure of reaction gas AlN diluent content and aluminum powder size. The SHS reaction conducted with a reactant containing 50% AlN diluent under 0.8MPa nitrogen gas pressure yielded a complete conversion of aluminum powder to AlN powders. The size and purity of AlN produced were found to be comparable with that of AlN produced by the carbothermal nitrogen method.

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철 촉매를 이용한 Fischer-Tropsch 합성 반응과 수성 가스 전환 반응에 대한 반응 속도 연구 (Kinetic Study of the Fischer-Tropsch Synthesis and Water Gas Shift Reactions over a Precipitated Iron Catalyst)

  • 양정일;천동현;박지찬;정헌
    • Korean Chemical Engineering Research
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    • 제50권2호
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    • pp.358-364
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    • 2012
  • 철 촉매를 이용한 Fischer-Tropsch 합성 반응과 수성 가스 전환 반응에 대한 반응 메커니즘과 반응 속도식을 5 채널 고정층 반응기를 이용하여 조사하였다. 실험 조건은, 반응물 합성가스 $H_2$/CO 비 0.5~2, 반응물 공급 유량 60~80 ml/min, 반응 온도 $255{\sim}275^{\circ}C$로서 반응 압력은 1.5 MPa을 유지하였다. F-T 합성 반응의 반응 속도식($r_{FT}$)은 반응 속도 결정 단계로서 분자로 흡착된 CO와 기상의 수소 분자와의 반응을 바탕으로 하는 Eley-Rideal 반응 메카니즘을 통해 계산되었고, WGS 반응의 반응 속도식($r_{WGS}$)은 formate 중간체 생성 반응을 반응 속도 결정 단계로 가정하여 결정되었다. 실험 결과, F-T 합성 반응의 반응 속도식과 WGS 반응의 반응 속도식은 각각 탄화수소 생성과 $CO_2$ 생성에 대한 반응 속도 실험값을 잘 모사하였고, 또한 power law에 근거한 CO 전환 반응에 대한 반응 속도식도 실험값과 잘 일치하였다. 이처럼, 각각의 반응 메카니즘을 바탕으로 도출된 반응 속도식($r_{FT}$, $r_{WGS}$, $-r_{CO}$)은 실험값과 여러 가지 기존 문헌에서 보고된 반응 속도식 모델과 잘 일치하였다.

LPG 폭발사고 예방을 위한 Maghemite의 영향 (Effects of the Maghemite for Explosive accident Prevention to Liquefied Petroleum Gas)

  • 박영구
    • 한국안전학회지
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    • 제11권2호
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    • pp.67-78
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    • 1996
  • Gas sensing element, $\gamma-Fe_2O_3$was synthesized by dehydration, reduction, and oxidation of $$${\gamma}$-FeOOH, which was synthesized with $FeSO_4\;{\cdot}\;7H_2O$ and NaOH. They were produced as a bulk-type, a thick film-type. Then, their responses and mechanisms of response to the gas of liquefied-petroleum were studied. The qualities of gas sensing elements are decided by the structure and the relative surface area. In the process of $\alpha-FeOOH $synthesis, the effects of reaction conditions as the equivalent ratio, on the structure and the relative surface area of gas sensing element were observed. The changes of the structure were measured with XRD, SEM, TG-DTA and BET. The resistance changes of the synthesized gas sensor in the air were measured. The response ratio were also measured for the changes of working temperature and gas concentration. As a result of analysis with XRD, it was confirmed that the the best conditions for the synthesis of $\alpha -FeOOH$ were equivalent ratio 0.65. The thick film-type element of $\gamma-Fe_2O_3$responded more quickly than the bulk-type did. The structure and the relative surface area of the $\alpha-FeOOH $were confirmed as the important factors deciding gas response charcteristics.

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Application of nanoparticles in extending the life of oil and gas transmission pipeline

  • Yunye, Liu;Hai, Zhu;Jianfeng, Niu
    • Structural Engineering and Mechanics
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    • 제84권6호
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    • pp.733-741
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    • 2022
  • The amount of natural gas that is used on a worldwide scale is continuously going up. Natural gas and acidic components, such as hydrogen sulfide and carbon dioxide, cause significant corrosion damage to transmission lines and equipment in various quantities. One of the fundamental processes in natural gas processing is the separation of acid gases, among which the safety and environmental needs due to the high toxicity of hydrogen sulfide and also to prevent wear and corrosion of pipelines and gas transmission and distribution equipment, the necessity of sulfide separation Hydrogen is more essential than carbon dioxide and other compounds. Given this problem's significance, this endeavor aims to extend the lifespan of the transmission lines' pipes for gas and oil. Zinc oxide nanoparticles made from the environmentally friendly source of Allium scabriscapum have been employed to accomplish this crucial purpose. This is a simple, safe and cheap synthesis method compared to other methods, especially chemical methods. The formation of zinc oxide nanoparticles was shown by forming an absorption peak at a wavelength of about 355 nm using a spectrophotometric device and an X-ray diffraction pattern. The size and morphology of synthesized nanoparticles were determined by scanning and transmission electron microscope, and the range of size changes of nanoparticles was determined by dynamic light scattering device.

유동층에서의 촉매 석탄가스화 공정 모델 모사를 위한 kinetics에 대한 연구 (The study on kinetic value for simulation in fluidized catalytic gasification)

  • 장동하;전영신;김형택
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2011년도 추계학술대회 초록집
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    • pp.74.1-74.1
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    • 2011
  • As a demand for energy, many studies are increasing about energy resource. One of these resources is coal which reserves of underground. A lot of research to use coal is going on as method of IGCC (Integrated Gasification Combined Cycle). In addition, SNG(Substitute Natural Gas) and IGFC (Integrated Gasification Fuel Cell) are also being developed for fuel & electricity. This technology which uses synthesis gas after gasification is to produce electricity from the Fuel Cell. At this point, important thing is the components of synthesis gas. The main objective is to increase the proportion of methane and hydrogen in synthesis gas. The catalytic gasification is suitable to enhance the composition of methane and hydrogen. In this study, Exxon Predevelopment catalyst gasification study was served as a good reference and then catalytic gasification simulation process is conducting using Aspen Plus in this research. For this modelling, kinetic value should be calculated from Exxon's report which is used for modeling catalytic gasification. Catalytic gasification model was performed by following above method and was analyzed by thermodynamic method through simulation results.

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기체분리용 금속유기구조체 분리막의 최근 연구 동향 및 성과 (Recent Progress on Metal-Organic Framework Membranes for Gas Separations: Conventional Synthesis vs. Microwave-Assisted Synthesis)

  • 고쿨라크리쉬난 라무;정해권
    • 멤브레인
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    • 제27권1호
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    • pp.1-42
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    • 2017
  • 금속유기구조체(metal-organic framework)는 유기물와 무기물로 구성된 나노다공성 결정물질로서 일정한 세공 구조를 가지고 있다. 합성시 유기 리간드의 다양한 선택이 가능함으로 인해 다양한 세공 사이즈와 물리적/화학적 성질들을 나타내는 금속유기구조체가 가능하다. 이러한 특성들로 인해 다공성 금속유기구조체는 새로운 기체분리용 막 재료로 각광받고 있다. 그러나 고품질의 다결정 금속유기구조체막을 재조하는 것은 상당히 어려운 일인데, 이것은 지지체 표면에 금속유기구조체 결정을 자라게 하는 것이 쉽지 않기 때문이다. 지난 이십여 년 동안 마이크로 전자파를 이용한 물질 합성에 대한 연구가 상당히 진행되었는데 특히 마이크로 전자파를 이용하면 전통적인 합성법에 비해 금속유기구조체 분리막을 제조하는 과정에서의 어려움들을 극복할 수 있다. 마이크로 전자파를 이용한 다결정 분리막 제조 공정은 단시간 합성, 복잡한 구조체 합성 및 나노 결정체 합성 등의 장점이 있다. 본 총설에서는 금속유기구조체 분리막 제조 및 기체 분리에 관한 최근 연구성과들을 살펴보고 특히 마이크로 전자파를 이용한 분리막 제조 공정을 중심으로 정리한다.

메탄가스 흡착을 위한 메조포러스 카본 합성과 표면 특성 연구 (Synthesis and surface characterization of mesoporous carbon for the adsorption of methane gas)

  • 박상원;이갑두;노민수
    • 한국환경과학회지
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    • 제22권7호
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    • pp.837-845
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    • 2013
  • This study was designed to synthesize mesoporous carbon, porous carbonic material and to characterize its surface in an attempt to adsorption methane gas($CH_4$). Synthesis of mesoporous carbon was carried out under two steps ; 1. forming a RF-silica complex with a mold using CTMABr, a surfactant, and TEOS, raw material of silica, and 2. eliminating silica through carbonization and HF treatment. The mesoporous carbon was synthesized under various conditions of synthesis time and calcination. Eight different types of mesoporous carbon, which were designated as MC1, MC2, MC3, MC4, MCT1, MCT2, MCT3, and MCT4, were prepared depending upon preparation conditions. The analysis of mesoporous carbon characteristics showed that the calcination of silica stabilized the mixed structure of silica and carbonic complex, and made the particle uniform. The results also showed that hydrothermal synthesis time did not have a strong influence on the size of pore. The bigger specific surface area was obtained as the hydrothermal synthesis time was extended. However, the specific surface area was getting smaller again after a certain period of time. In adsorption experiments, $CH_4$ was used as adsorbate. For the case of $CH_4$, MCT3 showed the highest adsorption efficiency.