• Title/Summary/Keyword: 고체 촉매

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Promoter Effect on Ni/YSZ Anode Catalyst of Solid Oxide Fuel Cell for Suppressing Coke Formation in the Methane Internal Reforming (고체산화물 연료전지용 Ni/YSZ 음극 촉매에서의 메탄 내부개질 반응 시 탄소 침적 억제를 위한 첨가제 영향)

  • Kim, Hye-Roung;Choi, Ji-Eun;Youn, Hyun-Ki;Chung, Jong-Shik
    • Korean Chemical Engineering Research
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    • v.46 no.4
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    • pp.813-818
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    • 2008
  • Various additives were added in small amounts on Ni/YSZ anode of SOFC (solid oxide fuel cell) in order to improve reactivity and to inhibit deactivation due to coke deposition during methane reforming using a low mole ratio steam ($H_2O/CH_4=1.5$) at $800^{\circ}C$. Ni/YSZ catalysts added with various perovskites did not show any improvement but exhibited a gradual decrease in the methane conversion. K-doped Ni/YSZ showed a steady increase and maintenance of the conversion up to 42 hours, after which there was an abrupt deactivation of catalyst owing to potassium loss by volatilization. Addition of 5% of $K_2Ti_2O_5$ on Ni/YSZ showed a stable maintenance of the conversion without K loss, and was able to prevent coke formation during a long time operation. Deactivation of catalyst during the reaction was mainly caused by the accumulation of graphidic carbon on the catalyst surface.

Reactivity Study on the Kideco Coal Catalytic Coal Gasification under CO2 Atmosphere Using Gas-Solid Kinetic Models (기-고체 반응 모델을 이용한 Kideco탄의 이산화탄소 촉매 석탄가스화 반응 특성)

  • Lee, Do Kyun;Kim, Sang Kyum;Hwang, Soon Cheol;Lee, Si Hyun;Rhee, Young Woo
    • Clean Technology
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    • v.21 no.1
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    • pp.53-61
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    • 2015
  • In this study, we have investigated the kinetics on the char-CO2 catalytic gasification reaction. Thermogravimetric analysis (TGA) experiments were carried out for char-CO2 catalytic gasification of an Indonesian Kideco sub-bituminous. Na2CO3 and K2CO3 were selected as catalysts which were physically mixed with coal. The char-CO2 catalytic gasification reaction showed a rapid increase of carbon conversion rate at 850 ℃, 60 vol% CO2, and 7 wt% Na2CO3. At the isothermal conditions ranging from 750 ℃ to 900 ℃, the carbon conversion rates increased as the temperature increased. Four kinetic models for gas-solid reaction including the shrinking core model (SCM), random pore model (RPM), volumetric reaction model (VRM), and modified volumetric reaction model (MVRM) were applied to the experimental data against the measured kinetic data. The gasification kinetics were suitably described by the MVRM for the Kideco sub-bituminous. The activation energies for each char mixed with Na2CO3 and K2CO3 were found 55-71 kJ/mol and 69-87 kJ/mol.

Effects of water on the esterification of oil with high content of free fatty acids (고유리지방산 함량 오일의 바이오디젤 전환 반응에서 수분의 영향)

  • Park, Ji-Yeon;Kim, Deog-Keun;Lee, Jin-Suk
    • 한국신재생에너지학회:학술대회논문집
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    • 2010.06a
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    • pp.248.1-248.1
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    • 2010
  • 수송용 바이오연료로써 바이오디젤의 보급 활성화에 따른 원료인 식물성 기름의 가격 상승 및 수급 불안정성 문제를 해결하고자 그동안 활용되지 않았던 폐유지를 바이오디젤 생산 원료로 사용하여 바이오디젤 생산 단가를 낮추고 원료의 수급 안정성도 확보하려는 시도가 이루어지고 있다. 폐유지의 경우 대부분 유리지방산 함량이 높아 염기 촉매를 적용하는 방법으로는 비누의 생성으로 전환이 힘들며 산 촉매를 적용하여 유리지방산을 에스테르화하는 공정을 필요로 한다. 에스테르화 반응에서는 반응 부산물로 물이 생성되며, 생성된 물은 바이오디젤 생산 반응을 저해하고 역반응을 유도하며 촉매의 활성을 감소시킨다. 본 연구에서는 고유리지방산 함량 오일의 에스테르화 반응에서 수분의 영향을 검토하였다. 산 촉매로 액상 촉매인 황산과 고체 산 촉매인 Amberlyst-15를 사용하였다. 초기 수분 함량이 0, 1, 2, 5, 10, 20%로 증가하였을 때, 지방산 메틸 에스테르 함량이 크게 감소하였으며, 1%의 수분 함량에서도 반응이 크게 저해받는 것으로 나타났다. 따라서 고유리지방산 함량 오일의 에스테르화 반응에서 수분에 의한 저해가 중요한 변수라는 것을 알 수 있다. Amberlyst-15는 황산보다 수분의 영향에 의해 지방산 메틸 에스테르 함량이 빠르게 감소하였다. 이는 다공성의 Amberlyst-15에서 생성된 물이 반응물질들이 active site에 접근하는 것을 방해하였기 때문인 것으로 생각된다. 황산을 사용하였을 경우에는 오일 대 메탄올 몰비를 1:3에서 1:6으로 증가시킴으로써 정반응 속도가 증가하여 수분에 대한 영향이 감소하는 현상이 나타났다. 에스테르화 반응 종료 12시간 후에 바이오디젤과 메탄올 내에 수분 함량을 분석한 결과 12%의 수분이 바이오디젤 층에 존재하며 88%의 수분은 메탄올 층에 존재하였다. 반응 중에 생성된 수분을 제거하기 위해, 에스테르화 반응 30분 후에 물을 포함하는 메탄올과 촉매 층을 새 메탄올과 촉매로 교환하는 2단계 반응을 수행함으로써 지방산 메틸 에스테르 함량을 향상시킬 수 있었다. 반응 초기에는 황산이 Amberlyst-15보다 높은 활성을 보였지만, 시간이 지날수록 두 촉매 사이의 에스테르화 성능 차이는 감소하였다. 따라서 2단계 에스테르화 반응이 수분의 저해작용을 줄이는 한 가지 대안으로 제안될 수 있다. 또한 에스테르화 반응에서 물의 저해 작용을 줄이기 위해 앞으로 투과증발막의 적용 또는 물에 저해작용을 받지 않는 구조의 촉매 사용을 검토할 필요가 있다.

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Decomposition of Dibenzothiophene Sulfone over KF/MgO Catalysts (KF/MgO 촉매를 이용한 Dibenzothiophene Sulfone 분해반응)

  • Kim, Hyeon-Joo;Jeong, Kwang-Eun;Jeong, Soon-Yong;Park, Young-Kwon;Jeon, Jong-Ki
    • Clean Technology
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    • v.16 no.1
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    • pp.12-18
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    • 2010
  • The object of the present study is to apply KF/MgO catalysts to remove sulfur dioxide from dibenzothiophene sulfone, a by-product of oxidative desulfurization. Potassium fluoride was deposited via an impregnation method on MgO. The effects KF loading and calcination on the characteristics of the KF/MgO catalysts were investigated through the BET surface area, XRF, XRD, and temperature-programmed desorption of $CO_2$. The catalytic performances of the samples were investigated during the decomposition of dibenzothiophene sulfone to biphenyl and sulfur dioxide gas. KF loaded on MgO prepared by the impregnation method showed high catalytic activities for the decomposition of dibenzothiophene sulfone. The higher activity of KF/MgO just dried at 373 K, avoiding the usual activation at high temperature, than that over the calcined catalyst is ascribed to increase of the amount of basic sites. The high basicity probably may be due to the coordinately unsaturated $F^-$. The simply dried 10 % KF/MgO catalyst, without the usual activation at high temperature, showed the optimal catalytic properties.

Environmentally Friendly Synthesis of Amide by Metal-catalyzed Nitrile Hydration in Aqueous Medium (수중에서 금속 촉매의 니트릴 수화 반응에 의한 환경친화적 아미드 합성)

  • Hussain, Muhammad Asif;Kim, Jung Won
    • Applied Chemistry for Engineering
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    • v.26 no.2
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    • pp.128-131
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    • 2015
  • Hydration of nitriles in the environmentally benign neutral conditions is the most economical and attractive way to produce amides. Substantial research works have been carried out to apply the solid metal oxides and transition metal supported catalytic systems to promote the hydration of nitriles. The most significant feature of these catalysts is the applicability to a wide range of substrates including aromatic, alicyclic, hetero-atomic, and aliphatic nitriles. These catalysts are also characterized by the easy isolation from the reaction mixture and the reusability while maintaining the high catalytic activity. This review accounts over the detailed survey of the metal oxide and solid supported metal catalysts for preparing amides from the hydration of nitriles.

Green Catalysts for Isobutane Alkylation Process (이소부탄 알킬레이션 공정을 위한 친환경 촉매)

  • Yoo, Kye Sang
    • Applied Chemistry for Engineering
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    • v.22 no.6
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    • pp.587-593
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    • 2011
  • As a result of increasing environmental concerns related to air quality and maintenance of automobiles, the alkylation of isobutane with olefins has become an even more important process for production of high quality gasoline. However, the widespread use of the alkylation process is limited by the polluting and corrosive liquid acid catalysts (HF and $H_2SO_4$) currently used in industry. For the reason, a large number of solid catalysts, especially zeolites, have been studied as an environmental friendly catalyst in this process. Recently, mesoporous solid acids and ionic liquids have been investigated as a green catalyst. In this review, the research of environmental friendly catalysts for an isobutane alkylation is summarized.

Study on Coating Agent Composition for Adhesion of Solid Propellant(I) (고체 추진제 접착용 코팅제 조성 연구(I))

  • Jeong, Jae-Yun;Kim, Kyung Min;Park, Jung-Ho;Choi, Sung-Han
    • Journal of the Korean Society of Propulsion Engineers
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    • v.24 no.5
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    • pp.84-90
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    • 2020
  • The adhesion strength of two konds of solid propellants(primary propellant/secondary propellant) was studied by coating agent of adhesion composition composed of organic solvent, curing agent, and cure catalyst. The coating agent using FeAA, cure catalyst, resulted propellant breaking at more 0.14 wt% and interface breaking at less 0.10 wt%. The TPB cure catalyst of confirmed the result of the interface breaking immediately after curing of the secondary propellant. In addition, the coating agent using TPB was found to increase the adhesion strength between the primary propellant and the secondary propellant over time.

Supported Metal Nanoparticles: Their Catalytic Applications to Selective Alcohol Oxidation (금속 나노 촉매를 활용한 선택적 알코올 산화 반응)

  • Hussain, Muhammad Asif;Joseph, Nyanzi;Kang, Onyu;Cho, Young-Hun;Um, Byung-Hun;Kim, Jung Won
    • Applied Chemistry for Engineering
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    • v.27 no.3
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    • pp.227-238
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    • 2016
  • This review article highlights different types of nano-sized catalysts for the selective alcohol oxidation to form aldehydes (or ketones) with supported or immobilized metal nanoparticles. Metal nanoparticle catalysts are obtained through dispersing metal nanoparticles over a solid support with a large surface area. The nanocatalysts have wide technological applications to industrial and academic fields such as organic synthesis, fuel cells, biodiesel production, oil cracking, energy conversion and storage, medicine, water treatment, solid rocket propellants, chemicals and dyes. One of main reactions for the nanocatalyst is an aerobic oxidation of alcohols to produce important intermediates for various applications. The oxidation of alcohols by supported nanocatalysts including gold, palladium, ruthenium, and vanadium is very economical, green and environmentally benign reaction leading to decrease byproducts and reduce the cost of reagents as opposed to stoichiometric reactions. In addition, the room temperature alcohol oxidation using nanocatalysts is introduced.