• 제목/요약/키워드: Bimetallic catalysts

검색결과 51건 처리시간 0.036초

Ni계 이원금속 촉매에 의한 혼합 바이오오일의 안정화를 위한 수소첨가 반응 (Hydrotreating for Stabilization of Bio-oil Mixture over Ni-based Bimetallic Catalysts)

  • 이성찬;;우희철
    • 청정기술
    • /
    • 제27권1호
    • /
    • pp.69-78
    • /
    • 2021
  • 팜유(palm oil)와 캐슈넛 껍질액(cashew nut shell liquid, CNSL)과 같은 식물유는 한국에서 수송용 바이오-디젤 혹은 발전용 바이오-중유의 주요 원료로서 사용되고 있다. 그러나, 이들은 탄화수소의 이중결합에 의한 높은 불포화도와 더불어 카르복실산에 기인한 높은 산소의 함량으로 인하여 연료유로서의 적용 범위에 한계가 있다. 이러한 관점에서, 본 연구는 팜유와 CNSL이 1/1 v/v%으로 이루어진 혼합 바이오오일에 포함된 불포화탄화수소를 포화시키고 산소 성분을 제거하기 위한 수소화처리 반응을 단일금속촉매(Ni과 Cu)와 이원금속촉매(Ni-Zn, Ni-Fe, Ni-Cu Ni-Co, Ni-Pd와 Ni-Pt) 들을 적용하여 완화된 반응조건(온도 250 ~ 400 ℃, 압력 5 ~ 80 bar와 LHSV 1 h-1) 하에서 수행하였다. Ni 활성성분에 대한 귀금속과 전이금속의 첨가는 수소화반응(HYD)과 탈산소반응(HDO)의 두 반응에 대한 활성을 증가시키는 시너지 효과를 보였다. 가장 활성이 뛰어난 유망한 촉매는 Ni-Cu/��-Al2O3으로서 Ni/Cu의 원소비가 9/1 ~ 1/4의 넓은 범위에서 HYD반응과 HDO반응에 대한 전환율이 각각 90 ~ 93%와 95 ~ 99%을 보였다. 이와 같이 Ni/Cu의 원소 비율이 넓은 범위에서 일정한 촉매반응활성을 보임에 따라 전형적인 구조비민감성 반응임을 알 수 있다. 그리고, 수소화처리 반응에 의해 정제된 혼합 바이오오일은 원료 혼합 바이오오일에 비해 요오드가, 산가 및 동점도가 크게 낮아졌으며, 고위발열량은 약 10% 증가되었다.

CO2 Reforming of Methane over Co-Pd/Al2O3 Catalysts

  • Itkulova, Sh. S.;Zhunusova, K.Z.;Zakumbaeva, G.D.
    • Bulletin of the Korean Chemical Society
    • /
    • 제26권12호
    • /
    • pp.2017-2020
    • /
    • 2005
  • The supported bimetallic Co-containing catalysts promoted by the different amount of noble metal (Pd) have been studied in the dry reforming of methane. The activity, selectivity, stability and resistance to the carbon deposition of Co-Pd/$Al_2O_3$ catalysts depend on both the catalyst composition and process conditions. It has been observed that the Co-Pd/$Al_2O_3$ catalysts produce the various oxygenates from $CO_2$ + $CH_4$ at moderate pressures.

Enhanced Electrocatalytic Activity of Low Ni Content Nano Structured NiPd Electrocatalysts Prepared by Electrodeposition Method for Borohydride Oxidation

  • Zolfaghari, Mahdieh;Arab, Ali;Asghari, Alireza
    • Journal of Electrochemical Science and Technology
    • /
    • 제11권3호
    • /
    • pp.238-247
    • /
    • 2020
  • Some nano structured bimetallic NiPd electrocatalysts were electrodeposited on glassy carbon electrodes using a double potential step chronoamperometry. The morphology of the electrodeposited samples was investigated by field emission-scanning electron microscopy, while their compositions were evaluated using energy dispersive X-ray spectroscopy. It was observed that the electrodeposited samples contained a low Ni content, in the range of 0.80 - 7.10%. The electrodeposited samples were employed as the anode electro-catalysts for the oxidation of sodium borohydride in NaOH solution (1.0 M) using cyclic voltammetry, chronoamperometry, rotating disk electrode, and impedance spectroscopy. The number of exchanged electrons, charge transfer resistances, apparent rate constants, and double layer capacitances were calculated for the oxidation of borohydride on the prepared catalysts. According to the results obtained, the NiPd-2 sample with the lowest Ni content (0.80%), presented the highest catalytic activity for borohydride oxidation compared with the other NiPd samples as well as the pure Pd sample. The anodic peak current density was obtained to be about 1.3 times higher on the NiPd-2 sample compared with that for the Pd sample.

Pt 및 Pd 2금속 나노촉매를 증착한 탄소나노튜브의 수소저장특성 연구 (Hydrogen storage of multiwall carbon nanotube decorated with bimetallic Pt-Pd nano catalysts using thermal vapor deposition)

  • 황상운;소창수;;남기석
    • 에너지공학
    • /
    • 제18권2호
    • /
    • pp.141-146
    • /
    • 2009
  • 본 연구에서는 열화학증착법을 이용하여Pt 및 Pd 전이금속 촉매를 각각 5nm, 3nm로 탄소나노튜브에 증착하여 수소저장특성을 연구하였다. 제작한 시료를 수소분위기에서 $200^{\circ}C$의 조건에서 1시간동안 열처리한 후 $25^{\circ}C$, 33~34atm의 조건에서 수소저장량을 측정하였다. 이 조건에서 수소저장량은 3.2wt%로 나타났고 동일 조건에서 반복 수행결과 수소저장과 탈착을 반복하여도 3.1wt%의 저장량을 보여 수소저장량의 변화가 거의 없음을 관찰하였다. 그러나 4번째 저장cycle이후에는 수소저장량이 1.5wt%로 급격히 감소하였다. 이는 증착된 전이금속촉매의 조대화로 인해 저장량이 감소함을 확인하였다. 실험결과를 근거로 Pt 및 Pd 2금속을 증착한 탄소나노튜브의 수소저장메커니즘을 제시하였다.

SBA-15 Supported Fe, Ni, Fe-Ni Bimetallic Catalysts for Wet Oxidation of Bisphenol-A

  • Mayani, Suranjana V.;Mayani, Vishal J.;Kim, Sang Wook
    • Bulletin of the Korean Chemical Society
    • /
    • 제35권12호
    • /
    • pp.3535-3541
    • /
    • 2014
  • Bisphenol A is considered as pollutant, because it is toxic and hazardous to living organisms even at very low concentrations. Biological oxidation used for removing this organic from waste water is not suitable and consequently application of catalytic wet oxidation has been considered as one of the best options for treating bisphenol A. We have developed Fe/SBA-15, Ni/SBA-15 and Fe-Ni/SBA-15 as heterogeneous catalysts using the advanced impregnation method for oxidation of bisphenol A in water. The catalysts were characterized with physico-chemical characterization methods such as, powder X-ray diffraction (PXRD), FT-IR measurements, N2 adsorption-desorption isotherm, thermo-gravimetric analysis (TGA), scanning electron microscopy (SEM), transmission electron microscopy (TEM) and inductively coupled plasma optical emission spectroscopy (ICP-OES) analysis. This work illustrates activity of the catalysts for heterogeneous catalytic degradation reaction revealed with excellent conversion and recyclability. The degradation products identified were not persistent pollutants. GC-MS analysis identified the products: 2,4-hexadienedioic acid, 2,4-pentadienic acid and isopropanol or acetic acid. The leachability study indicated that the catalysts release very little metals to water. Therefore, the possibility of water contamination through metal leaching was almost negligible.

고 탄화수소 개질을 위한 Pt-Ru, Pt-Ni 이원금속촉매에 관한 연구 (Pt-Ru, Pt-Ni bi-metallic catalysts for heavy hydrocarbon reforming)

  • 이상호;배중면
    • 한국신재생에너지학회:학술대회논문집
    • /
    • 한국신재생에너지학회 2011년도 추계학술대회 초록집
    • /
    • pp.97.2-97.2
    • /
    • 2011
  • Pt-Ru and Pt-Ni bimetallic catalysts were prepared and tested for heavy hydrocarbon reforming. Metals were supported on CGO($Ce_{0.8}Gd_{0.2}O_{2.0-x}$) by incipient wetness method. The prepared catalysts were characterized by Temperature programmed reduction(TPR). Oxidative steam reforming of n-dodecane was conducted to compare the activity of the catalysts. The reforming temperature was varied from $500^{\circ}C$ to $800^{\circ}C$ at fixed $O_2$/C of 0.3, $H_2O$/C of 3.0 and GHSV of 5,000/h.Reduction peaks of metal oxide, surface CGO and bulk CGO were detected. Reduction temperature of metal oxide decreased over the bi-metallic catalysts. It is considered that interaction between metals leads to decrease interaction between metal and oxygen. On the other hands, reduction temperatures of surface CGO were dectected in the order of Pt-Ru > Pt-Ni > Pt. low reduction temperatures of surface CGO indicates the low activation energy for oxygen ion conduction to metal. Oxygen ion conduction is known as de-coking mechanism of ionic conducting supports such as CGO. In activity test, fuel conversion was in the same order of Pt-Ru > Pt-Ni > Pt. Especially, 100% of fuel conversion was obtained over Pt-Ru catalysts at $500^{\circ}C$.

  • PDF

Study of CO Oxidation on Well-Characterized Pt-Ru/C Electrocatalysts Having Different Composition

  • Min, Myoung-Ki;Kim, Joo-Hoon;Kim, Ha-Suck
    • Bulletin of the Korean Chemical Society
    • /
    • 제31권1호
    • /
    • pp.151-156
    • /
    • 2010
  • In this paper, we characterized bimetallic Pt-Ru/C alloy catalysts having four different compositions and compared the catalytic activities of the prepared alloys for CO oxidation. ICP-AES, EDS, XRD, TEM, and XAS were used to investigate the composition, degree of alloying, particle size, and electronic structure of the prepared Pt-Ru/C catalysts. Those results indicated the synthesis of the alloy catalysts with intended composition and uniform size. The electrochemical study of the characterized alloys showed higher catalytic activity for CO oxidation than that of the commercial Pt/C (E-TEK, Inc., 20 wt %) catalyst. Especially, it was shown that the alloy catalyst with Ru composition of 50 atomic % gave the highest catalytic activity for CO oxidation.

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
    • /
    • 제68권
    • /
    • pp.325-334
    • /
    • 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.

TiO2에 담지된 금속 산화물 촉매상에서 TCE 산화분해반응 (Oxidative Decomposition of TCE over TiO2-Supported Metal Oxide Catalysts)

  • 양원호;김문현
    • 한국환경과학회지
    • /
    • 제15권3호
    • /
    • pp.221-227
    • /
    • 2006
  • Oxidative TCE decomposition over $TiO_2$-supported single and complex metal oxide catalysts has been conducted using a continuous flow type fixed-bed reactor system. Different types of commercial $TiO_2$ were used for obtaining the supported catalysts via an incipient wetness technique. Among a variety of titanias and metal oxides used, a DT51D $TiO_2\;and\;CrO_x$ would be the respective promising support and active ingredient for the oxidative TCE decomposition. The $TiO_2-based\;CrO_x$ catalyst gave a significant dependence of the catalytic activity in TCE oxidation reaction on the metal loadings. The use of high $CrO_x$ contents for preparing $CrO_x/TiO_2$ catalysts might produce $Cr_2O_3$ crystallites on the surface of $TiO_2$, thereby decreasing catalytic performance in the oxidative decomposition at low reaction temperatures. Supported $CrO_x$-based bimetallic oxide systems offered a very useful approach to lower the $CrO_x$ amounts without any loss in their catalytic activity for the catalytic TCE oxidation and to minimize the formation of Cl-containing organic products in the course of the catalytic reaction.