• 제목/요약/키워드: Hybrid Catalyst

검색결과 120건 처리시간 0.04초

Hybrid type Na-air battery를 위한 촉매들의 제조 및 전극 계면 반응 성능 비교 (Preparation of Electrocatalysts and Comparison of Electrode Interface Reaction for Hybrid Type Na-air Battery)

  • 김경호
    • 접착 및 계면
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    • 제22권1호
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    • pp.1-7
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    • 2021
  • 신재생 에너지 발전을 통한 안정적인 전력 공급을 위해 대용량 에너지 저장 장치의 중요성이 최근 부각되고 있다. 이러한 관점에서 차세대 이차 전지인 Na-air battery (NAB)는 풍부하고 저렴한 원재료를 통해 대용량을 구현할 수 있어 많은 관심을 받고 있다. 본 연구에서는 Hybrid type Na-air battery를 위한 활성탄 기반 촉매들을 제조하여 이들의 특성을 비교 분석하였다. 특히, 자원 재활용의 관점에서 버려진 오렌지 껍질을 사용하여 활성탄(Orange-C)과 이를 질소를 이용하여 도핑한 활성탄(N-doped-Carbon, Nd-C)을 제조하였으며, 널리 사용되고 있는 Vulcan카본과 성능을 비교하였다. 또한, 제조한 활성탄(Nd-C)이 지지 촉매로 활용 가능한지 확인하기 위해 수정된 폴리올법을 사용하여 Pt/C 촉매(homemade-Pt/C, HM-Pt/C)를 합성하였으며, 상용화된 Pt/C 촉매(Commercial Pt/C)와 전기화학적 성능을 비교하였다. 제조된 Orange-C와 Nd-C는 전형적인 H3 타입 BET isotherm을 보였으며, 이는 마이크로 기공과 메조기공이 존재한다는 증거이다. 또한, HM-Pt/C의 경우, 활성탄(Nd-C) 지지 촉매 위에 Pt 입자가 고르게 분포하고 있음을 TEM 분석을 통해 확인할 수 있었다. 특히, HM-Pt/C 기반의 NAB의 경우, 1st galvanostatic charge-discharge 시험에서 가장 작은 Voltage gap (0.224V)과 우수한 Voltage efficiency (92.34%)를 보였다. 또한, 20사이클 동안 진행한 사이클 성능 시험에서도 가장 안정적인 성능을 보였다.

플라즈마 충진 촉매 시스템을 이용한 에틸렌 저감 연구 (Decomposition of Ethylene using a Hybrid Catalyst-packed Bed Plasma Reactor System)

  • 이상백;조진오;장동룡;목영선
    • 한국대기환경학회지
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    • 제30권6호
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    • pp.577-585
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    • 2014
  • A series of experiments using atmospheric-pressure non-thermal plasma coupled with transition metal catalysts were performed to remove ethylene from agricultural storage facilities. The non-thermal plasma was created by dielectric barrier discharge, which was in direct contact with the catalyst pellets. The transition metals such as Ag and $V_2O_5$ were supported on ${\gamma}-Al_2O_3$. The effect of catalyst type, specific input energy (SIE) and oxygen content on the removal of ethylene was examined to understand the behavior of the hybrid plasma-catalytic reactor system. With the other parameters kept constant, the plasma-catalytic activity for the removal of ethylene was in order of $V_2O_5/{\gamma}-Al_2O_3$ > $Ag/{\gamma}-Al_2O_3$ > ${\gamma}-Al_2O_3$ from high to low. Interestingly, the rate of plasma-catalytic ozone generation was in order of $V_2O_5/{\gamma}-Al_2O_3$ > ${\gamma}-Al_2O_3$ > $Ag/{\gamma}-Al_2O_3$, implying that the catalyst activation mechanisms by plasma are different for different catalysts. The results obtained by varying the oxygen content indicated that nitrogen-derived reactive species dominated the removal of ethylene under oxygen-lean condition, while ozone and oxygen atoms were mainly involved in the removal under oxygen-rich condition. When the plasma was coupled with $V_2O_5/{\gamma}-Al_2O_3$, nearly complete removal of ethylene was achieved at oxygen contents higher than 5% by volume (inlet ethylene: 250 ppm; gas flow rate: $1.0Lmin^{-1}$; SIE: ${\sim}355JL^{-1}$).

Ni 박막 위 20 nm급 고정렬 Pt 크로스-바 구조물의 형성 방법 (Pattern Formation of Highly Ordered Sub-20 nm Pt Cross-Bar on Ni Thin Film)

  • 박태완;정현성;조영래;이정우;박운익
    • 대한금속재료학회지
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    • 제56권12호
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    • pp.910-914
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    • 2018
  • Since catalyst technology is one of the promising technologies to improve the working performance of next generation energy and electronic devices, many efforts have been made to develop various catalysts with high efficiency at a low cost. However, there are remaining challenges to be resolved in order to use the suggested catalytic materials, such as platinum (Pt), gold (Au), and palladium (Pd), due to their poor cost-effectiveness for device applications. In this study, to overcome these challenges, we suggest a useful method to increase the surface area of a noble metal catalyst material, resulting in a reduction of the total amount of catalyst usage. By employing block copolymer (BCP) self-assembly and nano-transfer printing (n-TP) processes, we successfully fabricated sub-20 nm Pt line and cross-bar patterns. Furthermore, we obtained a highly ordered Pt cross-bar pattern on a Ni thin film and a Pt-embedded Ni thin film, which can be used as hetero hybrid alloy catalyst structure. For a detailed analysis of the hybrid catalytic material, we used scanning electron microscope (SEM), transmission electron microscope (TEM) and energy-dispersive X-ray spectroscopy (EDS), which revealed a well-defined nanoporous Pt nanostructure on the Ni thin film. Based on these results, we expect that the successful hybridization of various catalytic nanostructures can be extended to other material systems and devices in the near future.

Peroxopolyoxotungsten-based Ionic Hybrid as a Highly Efficient Recyclable Catalyst for Epoxidation of Vegetable oil with H2O2

  • Wu, Jianghao;Jiang, Pingping;Qin, Xiaojie;Ye, Yuanyuan;Leng, Yan
    • Bulletin of the Korean Chemical Society
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    • 제35권6호
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    • pp.1675-1680
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    • 2014
  • A peroxopolyoxotungsten-based ionic hybrid was synthesized by anion-change of peroxopolyoxometalate (POM) $PW_4O{_{24}}^{3-}$ with dicationic long-chain alkyl imidazolium ionic liquids. The characterization was conducted by FT-IR, TGA, $^1H$-NMR and CHN Elemental analyses. Its catalytic performance was evaluated by the epoxidation of soybean oil with $H_2O_2$ under solvent-free condition, including testing of organic cations influence, catalytic reusability and reaction conditions. The catalyst was proved to be a highly efficient recyclable catalyst for epoxidation of various vegetable oils with $H_2O_2$, showing high $H_2O_2$ utilization efficiency, high catalytic activity, convenient recovery and good reuse ability.

고정층 반응기에서 DME 직접합성에 관한 실험 연구 (The Experimental Study on the Direct Synthesis of DME (Dimethyl Ether) in the Fixed Bed Reactor.)

  • 최창우;조원일;주우성;이승호;백영순;노경호
    • 한국수소및신에너지학회논문집
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    • 제15권4호
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    • pp.283-290
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    • 2004
  • The single-step process for conversion of syngas to DME give higher conversion than the syngas-to-methanol process. This arises because of a synergy among the three simultaneous reaction, methanol synthesis, methanol dehydration and water gas shift reaction, in the process. we would find the optimal condition of the process which these advantages. The optimal condition of DME synthesis reaction over a commercial $Cu/Zn/Al_2O_3$ catalyst and Hybrid catalyst in a fixed bed reactor. The syngas-to-dimethyl ether conversion was examined on various reaction condition (Temperature 473~553K, $H_2/CO$ ratio 1~3, Pressure 30'50atm, GHSV 1000~4000).

초소형 연소기를 위한 촉매 합성, 담지방법 및 담지체 (Catalyst preparations, coating methods, and supports for micro combustor)

  • 진정근;김충기;권세진
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2006년도 제33회 KOSCO SYMPOSIUM 논문집
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    • pp.235-241
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    • 2006
  • Catalytic combustion is one of the suitable methods for micro power source due to high energy density and no flame quenching. Catalyst loading in the micro structured combustion chamber is one of the most important issues in the development of micro catalytic combustors. In this research, to coat catalyst on the chamber wall, two methods were investigated. First, $Al_2O_3$ was selected as a support of Pt and $Pt/Al_2O_3$ was synthesized through the alumina sol-gel procedure. To improve the coating thickness and adhesion between catalyst and substrate, heat resistant and water solvable organic-inorganic hybrid binder was used. Porous silicon was also investigated as a catalyst support for platinum. Through the parametric studies of current density and etching time, fabrication process of $1{\sim}2{\mu}m$ of diameter and about $25{\mu}m$ depth pores was confirmed. Coated substrates were test in the micro channel combustor which was fabricated by the wet etching and machining of SUS 304. Using $Pt/Al_2O_3$ coated substrate and Pt coated porous silicon substrate, conversion rate of fuel was over 95% for $H_2$/Air premixed gas.

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초소형 연소기를 위한 촉매 합성, 담지방법 및 담지체 (Catalyst Preparations, Coating Methods, and Supports for Micro Combustor)

  • 진정근;김충기;이성호;권세진
    • 한국연소학회지
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    • 제11권2호
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    • pp.7-14
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    • 2006
  • Catalytic combustion is one of the suitable methods for micro power source due to high energy density and it can be applied to micro structured chamber without consideration of quenching since it is flameless combustion. Catalyst loading in the micro structured combustion chamber is one of the most important issues in the development of micro catalytic combustors. In this research, to coat catalyst on the chamber wall, two methods were investigated. First, $Al_2O_3$ was selected as a support of Pt and $Pt/Al_2O_3$ was synthesized through the alumina sol-gel procedure. To improve the coating thickness and adhesion between catalyst and substrate, heat resistant and water solvable organic-inorganic hybrid binder was used. Porous silicon was also investigated as a catalyst support for platinum. Through the parametric studies of current density and etching time, fabrication process of $1{\sim}2{\mu}m$ of diameter and about $25{\mu}m$ depth pores was confirmed. Coated substrates were test in the micro channel combustor which was fabricated by the wet etching and machining of SUS 304. Using $Pt/Al_2O_3$ coated substrate and Pt coated porous silicon substrate, conversion rate of fuel was over 95 % for $H_2/Air$ premixed gas.

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졸-겔 공정에 의한 PVP/Silica 하이브리드 필름의 제조 및 특성 (Preparation and Characteristics of PVP/Silica Hybrid Film by Sol-Gel Process)

  • 김태형;이동규
    • 한국응용과학기술학회지
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    • 제18권3호
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    • pp.233-240
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    • 2001
  • The transparent organic-inorganic hybrid films were prepared by the Sol-Gel process. PVP(polyvinylpyrrolidone) was used in organic component and TEOS(tetraethoxysilane) was used in inorganic component. HCI, $CH_{3}COOH$, and $NH_{4}OH$ were used as the Sol-Gel catalyst. The characteristics according to not only the variation of organic and inorganic contents but also the variation of catalyst species and contents were investigated. On the whole, the compatibility was remained between organic and inorganic components, and also as the TEOS contents were increased, mostly the transparency and the mechanical, thermal properties were improved. In addition, as content of catalysts was increased, the films showed characteristics that were closer to PVP than silica. Although the transparency of films was preserved in HCI and $CH_{3}COOH$, only the film containing more than 40wt% TEOS in $NH_{4}OH$ showed different phenomena.

150kW급 열병합발전 하이브리드 시스템 최적화 연구 (Optimization of 150kW Cogeneration Hybrid System)

  • 최재준;김혁주;정대헌;박화춘
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2008년도 동계학술발표대회 논문집
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    • pp.340-344
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    • 2008
  • The importance of the more efficient cogeneration system is emphasized. Also the more clean energy is needed at recent energy system. The cogeneration system using Lean burn engine is more preferred to the system using Rich burn engine because of the electrical efficiency. Although the cogeneration system using Lean burn engine is economically preferred, because of the NOx emission level, the system using Rich burn engine with 3-way catalyst can only be used in Korea. The NOx regulation level is 50ppm at oxygen level 13%. The cogeneration hybrid system using Lean burn engine is up to be optimized because of the large amount of the extra-fuel at the after-burner system. The after-burner system at different concept was applied. The reduction time for the activation temperature of the DeNOx catalyst was achieved by making a hole between the combustor and boiler. Because of the lowered fuel consumption, the lowered temperature level was optimized by blocking the hole of the boiler The optimized cogeneration hybrid system consumes $76Nm^3/h$ LNG to produce 150kW electricity compared to before optimization $103Nm^3/h$ LNG. The system was accurately evaluated and the result is following ; 90% total efficiency, below 10 ppm NOx, 50ppm CO, 25ppm HC. The cogeneration hybrid system can meet the current NOx level and exhaust gas regulation. It can achieve the clean combustion gas and efficient cogeneration system.

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