• 제목/요약/키워드: impregnation-reduction method

검색결과 42건 처리시간 0.028초

전기활성 IPMC(ion-exchange Polymer Metal Composite) 구동기 제조 및 구동특성 연구 (Preparation and Characterization of Electro-Active IPMC(Ion-exchange Polymer Metal Composite) Actuator)

  • 이준호;이두성;김홍경;이영관;최혁렬;김훈모;전재욱;탁용석;남재도
    • 폴리머
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    • 제26권1호
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    • pp.105-112
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    • 2002
  • 연구는 electro-active polymer(EAP)의 특성을 가지는 ion-exchange polymer metal composite(IPMC)을 이용하여 지능형 대장내시경 개발에 목적을 두고 있다. IPMC는 낮은 구동전압과 빠른 반응속도로 인하여 매우 매력적인 물질이다. 본 연구에서는 IPMC구동기의 전극을 무전의 도금 방법을 이용하여 용액함침-환원방법(impregnation-reduction method)으로 제조하였으며 코팅된 백금전극의 횟수에 따라 변위와 변화를 측정하였다. 구동특성을 알아보기 위하여 길이, 주파수에 대한 변위, 힘을 측정하였으며, 주파수 대역은 저주파 대역과 공명주파수 대역을 사용하는 것이 적합하다는 결론을 얻었다. 또한 다양한 구동적 특성과 수분의 함량에 따른 영향에 대해 고전적 적층 이론 (classical laminate theory, CLT)을 이용하여 이방성 IPMC의 응력분포와 수분이동에 따른 모멘트, 변형률, 곡률(cuvature)을 모델링 하였다.

Ru-NiOx nanohybrids on TiO2 support prepared by impregnation-reduction method for efficient hydrogenation of lactose to lactitol

  • Mishra, Dinesh Kumar;Dabbawala, Aasif A.;Truong, Cong Chien;Alhassan, Saeed M.;Jegal, Jonggeon;Hwang, Jin Soo
    • Journal of Industrial and Engineering Chemistry
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    • 제68권
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    • pp.325-334
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    • 2018
  • Lactose is a reducing disaccharide consisting of two different monosaccharides such as galactose and glucose. The hydrogenation of lactose to lactitol is a formidable challenge because it is a complex process and several side products are formed. In this work, we synthesized Ru-Ni bimetallic nanohybrids as efficient catalysts for selective lactose hydrogenation to give selective lactitol. Ru-Ni bimetallic nanohybrids with $Ru-NiO_x$ (x = 1, 5, and 10 wt%) are prepared by impregnating Ru and Ni salts precursors with $TiO_2$ used as support material. Ru-Ni bimetallic nanohybrids (represented as $5Ru-5NiO/TiO_2$) catalyst is found to exhibit the remarkably high selectivity of lactitol (99.4%) and turnover frequency i.e. ($374h^{-1}$). In contrast, monometallic $Ru/TiO_2$ catalyst shows poor performance with ($TOF=251h^{-1}$). The detailed characterizations confirmed a strong interaction between Ru and NiO species, demonstrating a synergistic effect on the improvement on lactitol selectivity. The impregnation-reduction method for the preparation of bimetallic $Ru-NiO/TiO_2$ catalyst promoted Ru nanoparticles dispersed on NiO and intensified the interaction between Ru and NiO species. $Ru-NiO/TiO_2$ efficiently catalyzed the hydrogenation of lactose to lactitol with high yield/selectivity at almost complete conversion of lactose at $120^{\circ}C$ and 55 bar of hydrogen ($H_2$) pressure. Moreover, $Ru-NiO/TiO_2$ catalyst could also be easily recovered and reused up to four runs without notable change in original activity.

A Study on the Sulfur-Resistant Catalysts for Water Gas Shift Reaction I. TPR Studies of $Mo/\gamma -Al_2O_3$ Catalysts

  • 박진남;김준희;이호인
    • Bulletin of the Korean Chemical Society
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    • 제19권12호
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    • pp.1363-1368
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    • 1998
  • Mo/γ-Al2O3 catalysts were prepared by impregnation method in various conditions to identify the states of surface Mo species. TPR (Temperature-Programmed Reduction) and Raman spectroscopy were applied to analyze the surface Mo species. TPR analysis revealed that MoO3 was reduced to Mo through MoO2, the intermediate state and the increase of Mo loading enhanced the reducibility of Mo oxide till the formation of monolayer coverage. High temperature calcination induced oxygen defects in MoO3 giving their unstable states for easier reduction. Raman spectroscopy analysis showed that the increase of Mo loading induced the polymeric Mo oxide.

NO REDUCTION PROPERTY OF Pt-V2O5-WO3/TiO2 CATALYST SUPPORTED ON PRD-66 CERAMIC FILTER

  • Kim, Young-Ae;Choi, Joo-Hong;Bak, Young-Cheol
    • Environmental Engineering Research
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    • 제10권5호
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    • pp.239-246
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    • 2005
  • The effect of Pt addition over $V_2O_5-WO_3/TiO_2$ catalyst supported on PRO-66 was investigated for NO reduction in order to develop the catalytic filter working at low temperature. Catalytic filters, $Pt-V_2O_5-WO_3/TiO_2/PRD$, were prepared by co-impregnation of Pt, V, and W precursors on $TiO_2$-coated ceramic filter named PRD (PRD-66). Titania was coated onto the pore surface of the ceramic filter using a vacuum aided-dip coating method. The Pt-loaded catalytic filter shifted the optimum working temperature from $260-320^{\circ}C$(for the catalytic filter without Pt addition) to $190-240^{\circ}C$, reducing 700 ppm NO to achieve the $N_x$ slip concentration($N_x\;=\;NO+N_2O+NO_2+NH_3$) less than 20 ppm at the face velocity of 2 cm/s. $Pt-V_2O_5-WO_3/TiO_2$ supported on PRD showed the similar catalytic activity for NO reduction with that supported on SiC filter as reported in a previous study, which implies the ceramic filter itself has no considerable interaction for the catalytic activity.

산 처리 및 LiOH 첨착 활성탄에서 이산화탄소의 흡착 특성에 대한 연구 (Study of CO2 Adsorption Characteristics on Acid Treated and LiOH Impregnated Activated Carbons)

  • 한재욱;김대중;강민;김진원;김지만;이재의
    • 공업화학
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    • 제16권3호
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    • pp.312-316
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    • 2005
  • 본 연구에서는 원시 활성탄에 질산을 이용한 산 처리 또는 LiOH를 첨착한 후, 이에 대한 이산화탄소의 흡착 특성을 수분의 공존 유, 무 상태에서 고정층 파과 실험을 통해 평가하였다. 질산 처리 및 LiOH 첨착에 따른 활성탄의 표면 성상 및 물리, 화학적 특성은 SEM, EDS, 질소 흡착, FTIR, XRD를 이용하여 고찰하였다. 질산 처리로 인해 원시 활성탄의 비표면적은 감소하였지만 활성탄 표면에서 산소 함량은 증가하였으며, 질산의 산화 반응으로 활성탄 표면에 탄소 및 산소 외에 질소를 포함한 새로운 관능기가 생성되었다. LiOH 첨착으로 인한 비표면적의 감소 폭은 질산 처리한 활성탄이 원시 활성탄에 비해 작게 나타났다. LiOH를 2 wt% 이상으로 첨착하면 상당 부분의 LiOH가 활성탄 세공 내부에 들어가지 못하고 외부 표면에 존재하였다. 고정층 파과 실험을 통해 질산 처리 및 LiOH 첨착량 증가에 따라 활성탄의 이산화탄소 흡착 성능은 향상되었다. 또한 공급가스 내에 수분이 공존함에 따라 이산화탄소 흡착량이 증가하였다. LiOH가 첨착된 활성탄에서 이산화탄소 흡착 후 LiOH는 화학반응에 의해 $Li_2CO_3$로 전환함을 확인하였다.

수전해용 Pt/PEM/Pt-Ru MEA의 전기화학적 특성 (Electrochemical Characteristics of Pt/PEM/Pt-Ru MEA for Water Electrolysis)

  • 권오환;김경언;장인영;황용구;정장훈;문상봉;강안수
    • 한국수소및신에너지학회논문집
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    • 제19권1호
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    • pp.18-25
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    • 2008
  • The membrane electrode assembly(MEA) was prepared by a nonequilibrium impregnation- reduction (I-R) method. Nafion 117 and covalently cross-linked sulfonated polyetherether with tungsto- phosphoric acid (CL-SPEEK/TPA30) prepared by our laboratory, were chosen as polymer electrolyte membrane(PEM). $Pt(NH_3)_4Cl_2$, $RuCl_3$ and reducing agent $(NaBH_4)$ were used as electrocatalytic materials. Electrochemical activity surface area(ESA) and specific surface area(SSA) of Pt cathodic electrode with Nafion 117 were $22.48m^2/g$ and $23.50m^2/g$ respectively under the condition of 0.8 M $NaBH_4$. But Pt electrode prepared by CL-SPEEK/TPA30 membrane exhibited higher ESA $23.46m^2/g$ than that of Nafion 117. In case of Pt-Ru anodic electrode, the higher concentration of Ru was, the lower potential of oxygen reduction and region of hydrogen desorption was, and Pt-Ru electrode using 10 mM $RuCl_3$ showed best properties of SSA $34.09m^2/g$ with Nafion 117. In water electrolysis performance, the cell voltage of Pt/PEM/Pt-Ru MEA with Nafion 117 showed cell property of 1.75 V at $1A/cm^2$ and $80{\circ}C$. On the same condition, the cell voltage with CL-SPEEK/TPA30 was the best of 1.73 V at $1A/cm^2$.

A Study on the Sulfur-Resistant Catalysts for Water Gas Shift Reaction III. Modification of $Mo/γ-Al_2O_3$ Catalyst with Iron Group Metals

  • 박진남;김재현;이호인
    • Bulletin of the Korean Chemical Society
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    • 제21권12호
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    • pp.1233-1238
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    • 2000
  • $Mo/{\gamma}-Al_2O_3catalysts$ modified with Fe, Co, and Ni were prepared by impregnation method and catalytic activity for water gas shift reaction was examined. The optimum amount of Mo loaded for the reaction was 10 wt% $MoO_3$ to ${\gamma}-Al_2O_3.$ The catalytic activity of $MoO_3/{\gamma}-Al_2O_3was$ increased by modifying with Fe, Co, and Ni in the order of Co${\thickapprox}$ Ni > Fe. The optimum amounts of Co and Ni added were 3 wt% based on CoO and NiO to 10 wt% $MoO_3/{\gamma}-Al_2O_3$, restectively. The TPR (temperature-programmed reduction) analysis revealed that the addition of Co and Ni enganced the reducibility of the catalysts. The results of both catalytic activity and TPR experiments strongly suggest that the redox property of the catalyst is an important factor in water gas shift reaction on the sulfided Mo catalysts, which could be an evidence of oxy-sulfide redox mechanism.

Caffeine as a source for nitrogen doped graphene, and its functionalization with silver nanowires in-situ

  • Ramirez-Gonzalez, Daniel;Cruz-Rivera, Jose de J.;Tiznado, Hugo;Rodriguez, Angel G.;Guillen-Escamilla, Ivan;Zamudio-Ojeda, Adalberto
    • Advances in nano research
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    • 제9권1호
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    • pp.25-32
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    • 2020
  • In this work, we report the use of caffeine as an alternative source of nitrogen to successfully dope graphene (quaternary 400.6 eV and pyridinic at 398 eV according XPS), as well as the growth of silver nanowires (in-situ) in the surface of nitrogen doped graphene (NG) sheets. We used the improved graphene oxide method (IGO), chemical reduction of graphene oxide (GOx), and impregnation with caffeine as source of nitrogen for doping and subsequently, silver nanowires (NW) grow in the surface by the reduction of silver salts in the presence of NG, achieving a numerous of growth of NW in the graphene sheets. As supporting experimental evidence, the samples were analyzed using conventional characterization techniques: SEM-EDX, XRD, FT-IR, micro RAMAN, TEM, and XPS.

메탄올 환원법에 의한 연료전지용 백금담지 전극제조 -촉매담지시 계면활성제 첨가와 열처리 온도 효과- (Preparation of Fuel Cell Electrode Impregnated Platinum by Methanol Reduction Method -Effect of Surfactant and Heat Treatment at Pt Impregnation-)

  • 정윤이;유덕영;은영찬;이주성
    • 공업화학
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    • 제8권1호
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    • pp.16-22
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    • 1997
  • 메탄올에 의해 백금을 환원시켜 carbon상에 담지할 때 계면활성제의 첨가가 환원된 백금 colloid의 안정화에 큰 영향을 미치며 계면활성제의 첨가량이 증가할수록 백금 colloid의 안정성이 증가하여 백금을 미립화하여 carbon상에 담지할 수 있었다. 그러나 계면활성제의 양이 증가할수록 열처리 후 잔존하는 계면활성제 잔유물이 전극 내에서 불순물로 작용하여 산소환원 성능은 감소하였다. 계면활성제 제거를 위해 열처리 온도를 증가시킬수록 백금의 응집현상이 크게 증가하여 백금의 입자 크기가 증가하여 전류밀도는 감소하였다.

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K and Cs Doped Ag/Al2O3 Catalyst for Selective Catalytic Reduction of NOx by Methane

  • Rao, Komateedi N.;Yu, Chang-Yong;Lack, Choi-Hee;Ha, Heon-Phil
    • 한국분말재료학회지
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    • 제18권6호
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    • pp.510-516
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    • 2011
  • In the present study, potassium and caesium doped Ag/$Al_2O_3$ catalysts were synthesized by simple wet impregnation method and evaluated for selective catalytic reduction (SCR) of NOx using methane. TEM analysis and diffraction patterns demonstrated the finely dispersed Ag particles. BET surface measurements reveal that the prepared materials have moderate to high surface area and the metal amount found from ICP analysis was well matching with the theoretical loadings. The synthesized K-Ag/$Al_2O_3$ and Cs-Ag/$Al_2O_3$ catalysts exhibited a promotional effect on deNOx activity in the presence of $SO_2$ and $H_2O$. The long-term isothermal studies at $550^{\circ}C$ under oxygen rich condition showed the superior catalytic properties of the both alkali promoted samples. The crucial catalytic properties of materials are attributed to NO adsorption properties detected by the NO TPD.