• 제목/요약/키워드: Catalyst slurry

검색결과 49건 처리시간 0.024초

고분자 연료전지용 MEA 연속 코팅공정 개발 (Continuous Coating Process Development for PEFC Membrane Electrode Assembly)

  • 박석희;윤영기;김창수;이원용
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2006년도 춘계학술대회
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    • pp.110-112
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    • 2006
  • Membrane electrode assembly (MEA) for polymer electrolyte fuel cell (PEFC) are commonly prepared in the research laboratory by spraying, screen-printing and brushing catalyst slurry onto membrane or other support material like carbon paper or polyimide film in a batch style. These hand applications of the catalyst slurry are painstaking process with respect to precision of catalyst loading and reproducibility. It has been generally mentioned that the adoption of continuous process is very helpful to develop the reliable product. In the present work, we report the results of using continuous type coater with doctor-blade to coat catalyst slurry for preparing the MEA catalyst layers In a faster and highly reproducible fashion. We show that while expectedly faster than batch style, the machine coater requires the use of slurry of appropriate composition and a properly selected transfer decal material in order to achieve superior MEA plat lnw loading reproducibility. To make highly viscous catalyst slurry that is imperative for using coater, we use 40wt.% Nafion solution and minimize the content of organic solvent. And the choice of proper high surface area catalyst is important in the viewpoint of making well-dispersed slurry. After catalyst coating onto the support material, we transferred the catalyst layer to both sides of Nafion membrane by hot-pressing In this case, the degree of transfer was Influenced by hot-pressing condition including temperature, pressure, and time. To compare the transferring ability, we compared so many films and detaching papers. And among the support, polyethylene terephthalate(PET) film shows the prominent result.

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알코올계 촉매 슬러리를 활용한 바 코팅으로 제조된 PTFE 전극의 형성 및 특성 조사 (Characterization of PTFE Electrode Made by Bar-Coating Method Using Alcohol-Based Catalyst Slurry)

  • 정현승;김도형;박찬호
    • 한국수소및신에너지학회논문집
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    • 제31권3호
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    • pp.276-283
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    • 2020
  • Alcohol-based solvents including ethanol (EtOH) and tert-butyl alcohol (TBA) are investigated instead of isopropanol (IPA), which is a common solvent for polytetrafluoroethylene (PTFE), as an alternative solvent for preparing the catalyst slurry with PTFE binder. As a result, the performance at 0.2 A/㎠ from the single cells from using catalyst slurries based on EtOH and TBA showed very similar value to that from the slurry using IPA, which implies the EtOH and TBA can be used as a solvent for the catalyst slurry. It is also confirmed by the very close values of the total resistance of the membrane electrode assemblies from the slurries using different solvents. In the energy dispersive spectrometry (EDS) image, the shape of crack and dispersion of PTFE are changed according to the vapor pressure of the solvent.

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.

메탈로센 촉매를 이용한 신디오탁틱 폴리스타이렌의 벌크 중합에 관한 연구 (Multiple Injection Method for Bulk Syndiospecific Polymerization of Styrene with Homogeneous Metallocene Catalyst)

  • 임진형;손영곤
    • 한국산학기술학회논문지
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    • 제11권4호
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    • pp.1348-1353
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    • 2010
  • 신디오탁틱 폴리스타이렌의 벌크 중합 시, 반응의 초기단계에서 균일하던 반응혼합물은 반응이 진행됨에 따라 점차 침전된 고형 sPS와 액체 반응생성물로 형성된 슬러리 상태로 변해간다. 반응이 더 진행되면 고형 침전물의 양이 많아지고 반응물이 엉겨 붙는 현상을 적절한 방법으로 해소하면 슬러리 상태에서 젖은 분말 형태 더 나가서는 마른 분말 형태의 반응 생성물을 얻게 된다. 전화율을 높이기 위해 촉매와 조촉매의 양을 늘리는 경우 반응성생물은 어느 순간 한 덩어리가 되어 더 이상의 반응 제어가 불가능해진다. 이 연구에서는 이렇게 덩어리로 응집되는 현상을 막고 고 전화율의 반응이 가능하도록 특별한 방법을 사용하였다. 촉매와 조촉매를 한 번에 투입하지 않고 여러 단계로 나누어 투입하는 경우 반응물의 응집을 막고 전화율을 높게 유지할 수 있었다. 또한 이 방법은 sPS의 분자량을 높이는데도 도움이 되는 것을 알 수 있었다.

석탄가스 전환용 액상 메탄올 합성 공정 개발 (Development of a Liquid-Phase Methanol Synthesis Process for Coal-derived Syngas)

  • 신장식;정헌;이종대
    • 한국응용과학기술학회지
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    • 제19권4호
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    • pp.251-257
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    • 2002
  • Liquid-phase methanol synthesis via methyl formate using coal-derived syngas was carried out in a bench-scale(diameter 173 mm and dispersion height 1200 mm) slurry bubble column reactor(SBCR) Under the condition of $180^{\circ}$. 61 atm, 30 L/min, $H_{2}$/CO=2 and a slurry mixture of 2 kg of copper chromite and 0.5 kg of $KOCH_{3}$ suspended in 14 L of methanol, the per pass conversions of syngas is 6 %, maximum concentration of methyl formate 3.088 mol% and maximum synthesis, rate of methanol 0.8 gmole/kg ${\cdot}$ hr. It is a significant evidence that copper chromite powder as heterogeneous catalyst didn't active for the hydrogenolysis of methyl formate to methanol, resulting copper chromite powder was not efficiently suspended in a slurry mixture. To enhance the hydrogenolysis of methyl formate in liquid-phase methanol synthesis process, the designed SBCR have need to use the higher specific gravity solvent and/or decrease the catalyst particle size.

텅스텐 CMP에서 산화제 영향에 관한 연구 (A Study on Oxidizer Effects in Tungsten CMP)

  • 박범영;이현섭;박기현;정석훈;서헌덕;정해도;김호윤;김형재
    • 한국전기전자재료학회논문지
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    • 제18권9호
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    • pp.787-792
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    • 2005
  • Chemical mechanical polishing(CMP) has become the process of choice for modem semiconductor devices to achieve both local and global planarization. CMP is a complex process which depends on numerous variables such as macro, micro and nano-geometry of pad, relative velocity between pad and wafer stiffness and dampening characteristics of pad, slurry, pH, chemical components of slurry, abrasive concentration, abrasive size, abrasive shape, etc. Especially, an oxidizer of chemical components is very important remove a target material in metal CMP process. This paper introduces the effect of oxidizer such as $H_2O_2,\;Fe(NO_3)_3\;and\;KIO_3$ in slurry for tungsten which is used in via or/and plug. Finally the duplex reacting mechanism of $oxidizer(H_2O_2)$ through adding the $catalyst(Fe(NO_3)_3)$ could acquire the sufficient removal rate in tungsten CMP.

Compositional Characterization of Petroleum Heavy Oils Generated from Vacuum Distillation and Catalytic Cracking by Positive-mode APPI FT-ICR Mass Spectrometry

  • Kim, Eun-Kyoung;No, Myoung-Han;Koh, Jae-Suk;Kim, Sung-Whan
    • Mass Spectrometry Letters
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    • 제2권2호
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    • pp.41-44
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    • 2011
  • Molecular compositions of two types of heavy oil were studied using positive atmospheric pressure photoionization (APPI) Fourier transform ion cyclotron resonance mass spectrometry (FT-ICR MS). Vacuum gas oil (VGO) was generated from vacuum distillation of atmospheric residual oil (AR), and slurry oil (SLO) was generated from catalytic cracking of AR. These heavy oils have similar boiling point ranges in the range of 210-$650^{\circ}C$, but they showed different mass ranges and double-bond equivalent (DBE) distributions. Using DBE and carbon number distributions, aromatic ring distributions, and the extent of alkyl side chains were estimated. In addition to the main aromatic hydrocarbon compounds, those containing sulfur, nitrogen, and oxygen heteroatoms were identified using simple sample preparation and ultra-high mass resolution FT-ICR MS analysis. VGO is primarily composed of mono- and di-aromatic hydrocarbons as well as sulfur-containing hydrocarbons, whereas SLO contained mainly polyaromatic hydrocarbons and sulfur-containing hydrocarbons. Both heavy oils contain polyaromatic nitrogen components. SLO inludes shorter aromatic alkyl side chains than VGO. This study demonstrates that APPI FT-ICR MS is useful for molecular composition characterization of petroleum heavy oils obtained from different refining processes.

이동전원용 직접 붕소 연료전지 개발 (Development of the Direct Borohydride Fuel Cell for Portable Power Source)

  • 양태현;이정우;박진수;이원용;김창수
    • 신재생에너지
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    • 제3권1호
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    • pp.68-74
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    • 2007
  • The fuel cells for portable application are attracted using a liquid fuel such as methanol and chemical hydride solutions. Recently, DBFC [Direct Borohydride Fuel Cell] is a candidate for power of portable electronic devices. In this work, the anion exchange membrane and non-precious catalyst for the DBFC were concerned. Anion-exchange membrane was fabricated by amination of polysulfone followed chloromethylation. Non-precious catalysts such as raney-Ni and Ag were used as an anode and cathode catalyst. The optimum conditions of catalyst slurry mixing and MEA fabrication were developed. The single cell performance using anion exchange membrane and non-precious catalyst was evaluated and the results were compared with cation exchange membrane [Nafion membrane] and precious catalysts.

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KIER 액화 기술 개발 현황 (KIER Liquefaction R & D's status)

  • 양정일;양정훈;이호태;천동현;김학주;정헌
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2010년도 춘계학술대회 초록집
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    • pp.110.1-110.1
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    • 2010
  • A bench scale slurry bubble column reactor (SBCR) with active-Fe based catalyst was developed for the Fischer-Tropsch synthesis (FTS) reaction. Considering the highly exothermic reaction heat generated in the bench scale SBCR, an effective cooling system was devised consisting of a U-type dip tube submerged in the reactor. Also, the physical and chemical properties of the catalyst were controlled so as to achieve high activity for the CO conversion and liquid oil ($C_{5+}$) production. Firstly, the FTS performance of the FeCuK/$SiO_2$ catalyst in the SBCR under reaction conditions of $265^{\circ}C$, 2.5 MPa, and $H_2/CO=1$ was investigated. The CO conversion and liquid oil ($C_{5+}$) productivity in the reaction were 88.6% and 0.226 $g/g_{cat}-h$, respectively, corresponding to a liquid oil ($C_{5+}$) production rate of 0.03 bbl/day. To investigate the FTS reaction behavior in the bench scale SBCR, the effects of the space velocity and superficial velocity of the synthesis gas and reaction temperature were also studied. The liquid oil production rate increased upto 0.057 bbl/day with increasing space velocity from 2.61 to 3.92 $SL/h-g_{Fe}$ and it was confirmed that the SBCR bench system developed in this research precisely simulated the FTS reaction behavior reported in the small scale slurry reactor.

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Pd/C촉매하 파라니트로아닐린 수소첨가에 의한 고순도 파라페닐렌디아민의 합성공정 (Synthesis of High Purity p-Phenylenediamine from p-Nitroaniline by Catalytic Hydrogenation)

  • 조철군;정광보
    • 공업화학
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    • 제10권8호
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    • pp.1210-1215
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    • 1999
  • Pd/C촉매가 부유되어 있는 3상 슬러리 반응기에서 원료 p-nitroaniline(PNA)를 수소 첨가시켜 고순도의 p-phenylenediamine(PPD)를 합성하는 최적 반응조건을 구하였다. 수소첨가 반응시 활성점에서 수소부족을 줄이고 불순물의 생성을 감소시킬 수 있도록, 기체-액체, 액체-촉매사이의 물질전달 저항을 최소화하고 표면반응속도가 율속할 수 있게 반응조건을 설정하였다. 이 반응조건은 온도 $60^{\circ}C$, 압력 60~70 psig, 촉매농도 1~2 g-cat/L일 때가 최적이었으며, 반응속도는 PNA 농도에 0차, 수소 반응압력에 1차를 각각 보여주었으며, 총괄반응속도식은 $R_A=6.44{\times}10^6{\cdot}H{\cdot}P{\cdot}m{\cdot}$exp(-4659/T)로 나타났다.

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