• 제목/요약/키워드: $CO_2$/Propane

검색결과 80건 처리시간 0.031초

FTP75 모드에 의한 LPG액상분사자동차의 배출가스 및 나노입자배출특성 (Analysis of Nano-particle and Emissions Characteristics for FTP75 Mode in LPLi Vehicle)

  • 이호길;김용태
    • 한국수소및신에너지학회논문집
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    • 제20권2호
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    • pp.161-167
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    • 2009
  • The regulation of the $CO_2$ emit from vehicles have become much more stringent in recent years. This stringent regulation is more request vehicle manufacturers to develop the alternative fuel vehicles for reducing exhaust emissions. LPG fuel is more clean energy compares with gasoline and diesel fuel. Especially, $CO_2$ emission of LPG Vehicle is less than gasoline vehicle and almost equal to diesel vehicle. For this reason, recently korean government is extending LPG fuel for hybrid car and light duty vehicle. In domestic, Propane is mixing $15{\sim}30%$ to butane for improvement of cold start at winter season. Therefore, In this paper was investigated that the characteristics of emissions according to propane mixing rate with 0, 10, 20, 30% were compared and analyzed by the vehicle test using LPG vehicle according to the FTP75 mode. It was also investigated the characteristics of nano-particle emit with propane mixing rate.

유동층 반응기에서 카본블랙 촉매를 이용한 프로판의 촉매 분해에 의한 수소생산 연구 (Hydrogen production by catalytic decomposition of propane over carbon black catalyst in a fluidized bed)

  • 윤용희;이승철;한귀영
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2007년도 춘계학술대회
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    • pp.81-85
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    • 2007
  • A fluidized bed reactor is made with quartz. The size of FBR is 0.055 m I.D. and 1.0 m in height. The FBR was employed for the thermocatalytic decomposition of propane to produce hydrogen without $CO_{2}$. The fluidized bed was proposed for the continuous withdraw of product carbons from the reactor. Carbon black DCC-N330 is used to decompose the propane gas. The propane decomposition reaction over carbon black catalyst in a fluidized bed reactor was carried out the temperature range of 600 ${\sim}$ 800 $^{\circ}C$, propane gas velocity of 1.0 ${\sim}$ 4.0$U_{mf}$($1U_{mf}$ = 0.61cm/s) and the catalyst loading of 100 ${\sim}$ 200g. Production of $H_{2}$ such as other reaction temperature, gas velocity, catalytic loading on the reaction rates was investigated. The carbon depositied on the catalyst surface was observed by FE-SEM. The particle size of the carbon black was observed by Particle size analyzer. Resulting production in the experiment was not only hydrogen but also several by-products such as methane, ethylene, ethane, and propylene.

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유동층 반응기에서 카본블랙 촉매를 이용한 프로판의 촉매 분해에 의한 수소생산 연구 (Hydrogen production by catalytic decomposition of propane over carbon black catalyst in a fluidized bed)

  • 남우석;정재욱;윤기준;이동현;한귀영
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2006년도 추계학술대회
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    • pp.388-391
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    • 2006
  • A fluidized bed reactor made of quartz with 0.055m I.D. and 1.0m in height was employed for the thermocatalytic decomposition of propane to produce $CO_2-free$ hydrogen. The fluidized bed was proposed for the continuous withdraw of product carbons from the reactor The propane decomposition rate used carbon black DCC-N330, Hi-900L as a catalyst. The propane decomposition reaction was carried out at the temperature range of $600-800^{\circ}C$, propane gas velocity of $1.0U_{mf}$ and the operating pressure of 1.0 atm. Effect of operating parameters such as reaction temperature on the reaction rates was investigated. Resulting production in our experiment were not only hydrogen but also several by products such as methane, ethylene, ethane, and propylene.

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합성가스 생성을 위한 글라이딩 아크 플라즈마 개질기에서 프로판 개질 (Propane Reforming in Gliding Arc Plasma Reformer for SynGas Generation)

  • 양윤철;전영남
    • 대한기계학회논문집B
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    • 제33권11호
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    • pp.869-875
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    • 2009
  • The purpose of this paper is to investigate the optimal condition of the syngas production by reforming of propane using Gliding arc plasma reformer. The gliding arc plasma reformer in 3 phases has been newly designed and developed with a quick starting and fast response time. It can be applicable to the various types of fuels (Hydrocarbons $C_xH_y$), and it has a high conversion rate of fuels and high production of hydrogen. The parametric screening studies were carried out according to the changes of a steam feed amount i.e., steam/carbon ratio, total gas flow rate and input electric power. The optimum operating conditions were S/C ratio 2.8, total gas flow rate of 14 L/min and input electric power of 2.4 kW. The result of optimum operating conditions showed the 55 % $H_2$, 14 % CO, 15 % $CO_2$, 10 % $C_3H_8$ and 4 % $CH_4$. Also, $C_3H_8$ conversion, $H_2$ yield and $H_2$ selectivity were 90 %, 42 %, 15 %, respectively. The energy efficiency and specific energy requirements were 37 % and 334 kJ/mol respectively.

동축류 메탄(CH4), 에탄(C2H6), 프로판(C3H8) 혼합 확산화염내의 수소(H2) 첨가가 화염 형상 및 연소 생성물에 미치는 영향 (Effect of Hydrogen(H2) Addition on Flame Shape and Combustion Products in Mixed Coflow Diffusion Flames of Methane(CH4), Ethane(C2H6) and Propane(C3H8))

  • 박호용;윤성환;노범석;이원주;최재혁
    • 해양환경안전학회지
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    • 제25권6호
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    • pp.780-787
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    • 2019
  • 본 연구에서는 국내외 저탄소 녹색성장을 위한 대안으로서 수소에너지와 그 이용 기술에 대한 관심이 높아지는 추세에 발맞춰 무탄소 연료인 수소를 LNG 의 주성분인 메탄, 메탄-프로판, 메탄-프로판-에탄 동축류 확산화염 내에 첨가하여 화염형상 및 연소생성물에 미치는 영향을 확인하였다. 상온상압 조건의 확산화염에 수소를 단계적으로 첨가하여 실제 생성되는 연소생성물의 변화 추이를 가스 분석기를 이용하여 실험적으로 관찰하였고 확산화염의 형상은 디지털카메라를 이용하여 단계적으로 관찰 하였다. 실험결과에서 확산화염에 수소를 첨가함에 따라 질소산화물의 생성량이 선형에 가깝게 증가하는 경향을 보였다. 이것은 수소의 상대적으로 높은 단열화염온도와 빠른 연소속도가 Thermal NOx의 생성을 촉진했기 때문이다. 반면 이산화탄소의 생성량은 감소하는 경향이 나타났는데 수소를 첨가함에 따라 메탄, 메탄-프로판, 메탄-에탄-프로판의 혼합 확산화염에 포함되어있는 전체 탄소비율이 줄어들어 이산화탄소의 생성량이 감소한 것이다. 이는 선박에서 LNG-수소의 혼합 연료사용으로 인해 온실가스인 이산화탄소를 저감할 수 있는 하나의 방안으로 고려될 수 있다는 것을 의미한다.

$SnO_2$ 소결체 반도체 Gas Sensor에 관한 연구 (On the $SnO_2$ Semiconductor Gas Sensor)

  • 박순자;이재열
    • 한국세라믹학회지
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    • 제20권2호
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    • pp.93-98
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    • 1983
  • The sensitivity characteristics of $SnO_2$-based gas sensor prepared by sintering method have been studied at the presence of CO and Propane gas. Samples mixed with 1wt% $La_2O_3$ and 1wt% $PdCl_2$ showed highest sensitivity to CO and propane gas at 250$^{\circ}$C but the addition of $CeO_2$ did not enhance the sensitivity. For slectivity for gas a $SnO_2-La_2O_3$ (1wt%) sample without $PdCl_2$ showed better results. A sample sintered sintered at 115$0^{\circ}C$ has shown the optimum condition in sensitivity and electroding

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내부 열교환기 부착 $CO_2-C_3H_8$용 캐스케이드 냉동시스템의 성능 특성 (Performance Characteristics of a Cascade Refrigeration System with Internal Heat Exchanger using Carbon Dioxide (R744) and Propane (R290))

  • 손창효
    • 한국수소및신에너지학회논문집
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    • 제20권6호
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    • pp.526-533
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    • 2009
  • In this paper, cycle performance analysis of $CO_2-C_3H_8$ (R744-R290) cascade refrigeration system with internal heat exchanger is presented to offer the basic design data for the operating parameters of the system. The operating parameters considered in this study include subcooling and superheating degree and gas cooling pressure and evaporating temperature in the propane (R290) low temperature cycle and the carbon dioxide (R744) high temperature cycle. The main results were summarized as follows : The COP of cascade refrigeration system of $CO_2-C_3H_8$ (R744-R290) increases with the increasing subcooling degree, but decreases with the increasing superheating degree. The COP of cascade refrigeration system increases with the increasing evaporating temperature, but decreases with the increasing gas cooling pressure. Therefore, superheating and subcooling degree, compressor efficiency, evaporating temperature and gas cooling pressure of $CO_2-C_3H_8$ (R744-R290) cascade refrigeration system have an effect on the COP of this system.

유동층 반응기에서 카본블랙 촉매를 이용한 프로판의 촉매 분해에 의한 수소생산 연구 (Hydrogen production by catalytic decomposition of propane over carbon black catalyst in a fluidized bed)

  • 정재욱;남우석;윤기준;이동현;한귀영
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2006년도 춘계학술대회
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    • pp.85-88
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    • 2006
  • A fluidized bed reactor made of quartz with 0.055m I.D. and 1.0m in height was employed for the thermocatalytic decomposition of propane to produce $CO_2$-free hydrogen. The fluidized bed was proposed for the continuous withdraw of product carbons from the reactor. The propane decomposition rate used carbon black N33O as a catalyst. The propane decomposition reaction was carried out at the temperature range of $600{\sim}800^{\circ}C$, paropane gas velocity of $1.0 U_{mf}\;3.0U_{mf}$ and the operating pressure of 1.0 atm. Effect of operating parameters such as reaction temperature, gas velocity on the reaction rates was investigated. The carbon which was by-product of methane decomposition reaction was deposited on the catalyst surface that was observed by SEM. Resulting production in our experiment were not only hydrogen but also several by products such as methane, ethylene, ethane, and propylene.

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불균일계 촉매를 통한 프로판 고부가화 (Value-added Chemicals Derived from Propane Using Heterogeneous Catalysts)

  • 윤지선;서동진;박태진;조영상;서영웅
    • 청정기술
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    • 제14권2호
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    • pp.71-86
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    • 2008
  • 본고에서는 산업적으로 효용가치가 막대함에도 불구하고 아직까지 에너지원으로만 사용되고 있는 프로판을 불균일계 촉매를 사용하여 고부가화시키는 방안에 대하여 다루고자 한다. 특히 프로판으로부터 생산 가능하면서도 경제적 가치가 뛰어난 물질이라고 판단되는 프로필렌 및 아크릴로니트릴을 중심으로 서술하였다. 프로필렌의 경우 지금까지 프로판 탈수소화반응을 통하여 제조 가능하였으나 열역학적인 한계를 극복하기 위하여 산소, 이산화탄소 등의 산화제를 이용하는 산화적 탈수소화반응에 대한 현황을 논하였다. 한편 암모니아첨가 산화반응을 통하여 제조할 수 있는 아크릴로니트릴은 지금까지 출발물질로서 프로필렌을 사용하였으나 저렴한 가격에 공급이 가능한 프로판을 원료로 사용하는 경우 경제적 가치가 뛰어나다. 최근 프로판의 암모니아첨가 산화반응에 성능이 우수한 $MoVTeNbO_x$ 촉매가 개발되었지만 그에 대한 추가 연구가 필요한 실정이다. 상기 반응들에 있어서 최대의 관건은 성능이 우수한 불균일계 촉매를 개발하는 것으로서, 촉매 개발 시 파일럿 규모 이상의 공정에 적용시킬 수 있을 것으로 전망한다.

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탄소계 촉매를 이용한 프로판 분해 반응에 의한 수소 생산 (Hydorgen Production by Catalytic Decomposition of Propane Over Cabon-Based Catalyst)

  • 윤석훈;한기보;이종대;박노국;류시옥;이태진;윤기준;한귀영
    • Korean Chemical Engineering Research
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    • 제43권6호
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    • pp.668-674
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    • 2005
  • 카본블랙을 이용한 프로판 분해는 메탄보다 분해가 용이하여 효과적인 수소생산방법으로 알려졌다. 특히, 프로판 직접 분해 반응에 의한 수소생산은 CO나 $CO_2$와 같은 부산물이 생성되지 않으므로 환경친화적인 수소 생산기술이다. 본 연구에서는 국내에서 상용화되어 시판되고 있는 활성탄 및 카본블랙을 탄소계 촉매로 사용하여 프로판 직접 분해반응특성을 조사하였다. 프로판의 직접 분해반응은 대기압 하, $500{\sim}1,000^{\circ}C$ 온도영역에서 실험이 수행되었으며, 프로판 분해반응에 의한 생성물로 수소뿐만 아니라 메탄, 에틸렌, 에탄, 프로필렌 등의 부산물의 생성이 확인되었다. 이러한 부산물들은 고온으로 갈수록 줄어들어 상대적으로 수소 수율이 증가함을 알 수 있었다. 다양한 상용촉매를 프로판 분해 반응에 적용하여 본 결과로서 DCC N330을 촉매로 이용하였을 경우, $750^{\circ}C$에서 22.47%의 수소 수율을 얻었다.