• 제목/요약/키워드: $TiO_2$ catalyst support

검색결과 61건 처리시간 0.027초

정수처리용 TiO2 고정화 촉매 비교 (Comparision of Immobilized TiO2 Catalyst for Water Purification)

  • 전은주;강성환;김병욱;임재명
    • 상하수도학회지
    • /
    • 제13권3호
    • /
    • pp.101-106
    • /
    • 1999
  • This research aims to compare immobilized catalysts prepared by various methods and determine suitable $TiO_2$ catalyst for water purification. Sol-gel method by Anderson and powder coation method by Tanaka ate famous in the methods to immobilize catalyst. Therefore, the $TiO_2$ catalyst for this research was prepared by sol-gel method and powder coating method. Its structure was tested by X-ray diffractometer (XRD), Scanning electron microseope (SEM). Durability of a catalyst-support couple in an solution was investigated. too. Experimental results were summarized as following; i) Optimum ratio of Ti : $H_2O$ : $H^+$ to obtain stable sol was 1 : 10 : 0.1 and the XRD patterns of $TiO_2$ film immobilized by sol-gel method which were fired at $700^{\circ}C$ showed that the catalyst had an anatase structure. ii) The particle size of $TiO_2$ prepared by sol-gel method was less than $5{\mu}$, but it was observed that coated side was not unifiom. iii) Sol-gel method was very effective to obtain $TiO_2$ catalyst of thin film, but spreadability and durability of a catalyst-support couple in a solution were than $TiO_2$ film immobilized by powder coating method. iv) The particle size of $TiO_2$ immobilized by powder coating method was a little larger than it prepared by sol-gel method, but spreadability and uniformity of $TiO_2$ film and durability of a catalyst-support couple in a solution were better than it immobilized by sol-gel method.

  • PDF

Se-TiO2 지지체를 이용한 V/W/TiO2 NH3-SCR 촉매의 반응 특성 연구 (The Study of Reaction Characteristics of V/W/TiO2 Catalyst Using Se-TiO2 Support On NH3-SCR Reaction)

  • 이연진;원종민;안석현;홍성창
    • 공업화학
    • /
    • 제32권6호
    • /
    • pp.599-606
    • /
    • 2021
  • 본 연구는 질소산화물 제거를 위하여 암모니아를 환원제로 사용하는 선택적 촉매 환원법에 있어 지지체에 셀레늄을 첨가하여 300 ℃ 이하에서 V2O5/WO3/TiO2의 반응 활성을 증진시키기 위한 실험 및 반응특성 연구를 수행하였다. 졸-겔법으로 Se-TiO2 및 TiO2를 합성하였으며, 이를 지지체로 하여 V2O5/WO3/TiO2 및 V2O5/WO3/Se-TiO2 촉매를 제조하여 상용 촉매와 반응 활성을 비교하였다. 실험 결과, 졸-겔법으로 합성한 TiO2를 사용한 촉매의 탈질 효율이 상용 TiO2를 사용하여 제조한 촉매보다 낮은 결과를 보였으나 셀레늄을 첨가함에 따라 탈질 효율이 증진되었다. 따라서 BET, XRD, Raman, H2-TPR 및 FT-IR분석을 통하여 셀레늄의 첨가가 촉매의 구조에 미치는 영향을 분석하였으며 셀레늄 첨가에 의한 비표면적의 증가와 단량체 및 복합체 바나듐 종의 형성이 반응 특성에 미치는 영향을 확인하였다.

NH3-SCR용 나노분산 TiO2 담체상에 제조된 V2O5WO3/TiO2 촉매: TiO2 분산입도와 NOx 최대 분해온도와의 상관성 (V2O5WO3/TiO2 Catalyst Prepared on Nanodispersed TiO2 for NH3-SCR: Relationship between D ispersed Particle Size of TiO2 and Maximum Decomposition Temperature of NOx)

  • 서민채;반세민;허재구;추용식;문경석;김대성
    • 한국재료학회지
    • /
    • 제32권11호
    • /
    • pp.496-507
    • /
    • 2022
  • For the selective catalytic reduction of NOx with ammonia (NH3-SCR), a V2O5WO3/TiO2 (VW/nTi) catalyst was prepared using V2O5 and WO3 on a nanodispersed TiO2 (nTi) support by simple impregnation process. The nTi support was dispersed for 0~3 hrs under controlled bead-milling in ethanol. The average particle size (D50) of nTi was reduced from 582 nm to 93 nm depending on the milling time. The NOx activity of these catalysts with maximum temperature shift was influenced by the dispersion of the TiO2. For the V0.5W2/nTi-0h catalyst, prepared with 582 nm nTi-0h before milling, the decomposition temperature with over 94 % NOx conversion had a narrow temperature window, within the range of 365-391 ℃. Similarly, the V0.5W2/nTi-2h catalyst, prepared with 107 nm nTi-2h bead-milled for 2hrs, showed a broad temperature window in the range of 358~450 ℃. However, the V0.5W2/Ti catalyst (D50 = 2.4 ㎛, aqueous, without milling) was observed at 325-385 ℃. Our results could pave the way for the production of effective NOx decomposition catalysts with a higher temperature range. This approach is also better at facilitating the dispersion on the support material. NH3-TPD, H2-TPR, FT-IR, and XPS were used to investigate the role of nTi in the DeNOx catalyst.

수전해용 Ir/TiO2 산소 발생 촉매의 제조 및 성능 평가 (Synthesis and Evaluation of Ir/TiO2 OER catalyst for PEM water electrolysis)

  • 송민아;정혜영;이해지;최윤기;문상봉
    • 한국수소및신에너지학회논문집
    • /
    • 제27권5호
    • /
    • pp.471-477
    • /
    • 2016
  • In this research, the Ir supported $TiO_2$ (P25) catalyst was prepared by precipitation method for oxygen evolution reaction. The $Ir/TiO_2$ catalyst was synthesised by reduction reaction using reducing agent. Physiochemical characterizations of synthesized $Ir/TiO_2$ catalyst was studied by means of SEM, EDS mapping, TEM and XRD. The Electrochemical characterizations were tested by using the technique of CV and LSV by RDE and Potentiostat. Physicochemical properties were characterized with XRD where Iridium metal morphology and Ir(111) and Ir(222) peaks were founded. $Ir0.2Ru0.8O_2$ exhibited higher OER activity than $Ir0.5Ru0.5O_2$ followed by $Ir/TiO_2$ and $IrO_2$.

Carbon Dioxide Reforming of Methane Over Mesoporous $Ni/SiO_2$ Catalyst

  • Kim, Dae Han;Sim, Jong Ki;Seo, Hyun Ook;Jeong, Myung-Geun;Kim, Young Dok;Lim, Dong Chan;Kim, Sang Hoon
    • 한국진공학회:학술대회논문집
    • /
    • 한국진공학회 2013년도 제44회 동계 정기학술대회 초록집
    • /
    • pp.166-166
    • /
    • 2013
  • Mesoporous $SiO_2$-supported Ni catalysts (Ni/$SiO_2$ and Ni/$TiO_2$/$SiO_2$) were fabricated by atomic layer deposition (ALD), and their catalytic activity and stability were investigated in carbon dioxide reforming of methane (CRM) reaction at $800^{\circ}C$ The Ni/$SiO_2$ catalysts showed high stability as a result of confinement of Ni particles with a mean size of ~10 nm within the pores of $SiO_2$ support. Besides, X-ray photoelectron spectroscopy (XPS), X-ray diffraction (XRD) and transmission electron microscopy (TEM) results showed that the Ni nanoparticles were partially buried inside the $SiO_2$ support. The strong interaction between Ni and the $SiO_2$ support could also be advantageous for long-term stability of the catalyst. In case of the Ni/$TiO_2$/$SiO_2$ catalyst, it was found that the catalytic activity of 10 nm-sized Ni nanoparticles was not much influenced by $TiO_2$ addition.

  • PDF

Ni-K2TixOy 촉매를 이용한 해조류 유래 수열 액화 원료의 수증기 개질 반응 연구 (Steam Reforming of Hydrothermal Liquefaction Liquid from Macro Algae over Ni-K2TixOy Catalysts)

  • 박용범;임한권;우희철
    • 청정기술
    • /
    • 제23권1호
    • /
    • pp.104-112
    • /
    • 2017
  • 해조류로부터 수열 액화 반응을 통해 생성된 원료를 이용하여 수소가스를 생산하기 위해 개질 반응용 상용화 촉매와 $K_2Ti_xO_y$가 첨가된 니켈(Ni) 제조 촉매를 사용하여 반응온도에 따른 수증기 개질 반응을 수행하였다. 반응원료는 해조류 바이오매스를 503 K의 반응온도에서 2시간 동안 수열 액화를 통해 생성된 액화 원료를 사용하였으며, 상용화 촉매(FCR-4-02)와 제조 촉매($Ni/K_2Ti_xO_y-Al_2O_3$, $Ni/K_2Ti_xO_y-SiO_2$, $Ni/K_2Ti_xO_y-ZrO_2/CeO_2$, Ni/$K_2Ti_xO_y$-MgO) 및 반응온도에 따른 수증기 개질 반응의 활성을 비교 연구하였다. 실험결과 제조 촉매 4종 모두 상용화 촉매와 비교하여 반응활성이 높게 나타나는 것이 확인되었으며, 제조 촉매의 지지체에 따라 생성되는 가스의 조성이 달라지는 것이 확인되었다. 특히, 산성이나 염기성을 띄는 $Al_2O_3$와 MgO의 지지체와 중성을 띄는 $SiO_2$의 지지체에서는 CO가 선택적으로 높게 생성이 되었으며 환원성을 띄는 $CeO_2$를 포함하는 지지체에서는 수성가스 전환 반응이 일어나 $CO_2$가 높게 생성됨을 보였다.

열처리 온도가 전기방사방법을 이용하여 제조한 PEMFC용 TiO2 담체의 물리적 특성에 미치는 영향 (Effects of Calcination Temperature on Characteristics of Electrospun TiO2 Catalyst Supports for PEMFCs)

  • 권초롱;유성종;장종현;김형준;김지현;조은애
    • 한국수소및신에너지학회논문집
    • /
    • 제24권3호
    • /
    • pp.223-229
    • /
    • 2013
  • Polymer Electrolyte Membrane Fuel Cell (PEMFC) is a power generation system to convert chemical energy of fuels and oxidants to electricity directly by electrochemical reactions. As a catalyst support for PEMFCs, carbon black has been generally used due to its large surface area and high electrical conductivity. However, under certain circumstances (start up/shut down, fuel starvation, ice formation etc.), carbon supports are subjected to serve corrosion in the presence of water. Therefore, it would be desirable to switch carbon supports to corrosion-resistive support materials such as metal oxide. $TiO_2$ has been attractive as a support with its stability in fuel cell operation atmosphere, low cost, commercial availability, and the ease to control size and structure. However, low electrical conductivity of $TiO_2$ still inhibits its application to catalyst support for PEMFCs. In this paper, to explore feasibility of $TiO_2$ as a catalyst support for PEMFCs, $TiO_2$ nanofibers were synthesized by electrospinning and calcinated at 600, 700, 800 and $900^{\circ}C$. Effects of calcination temperature on crystal structure and electrical conductivity of electrospun $TiO_2$ nanofibers were examined. Electrical conductivity of $TiO_2$ nanofibers increased significantly with increasing calcination temperature from $600^{\circ}C$ to $700^{\circ}C$ and then increased gradually with increasing the calcination temperature from $700^{\circ}C$ to $900^{\circ}C$. It was revealed that the remarkable increase in electrical conductivity could be attributed to phase transition of $TiO_2$ nanofibers from anatase to rutile at the temperature range from $600^{\circ}C$ to $700^{\circ}C$.

La2O3가 첨가된 Pd/TiO2 촉매의 개발 및 H2 상온산화 반응에서의 성능 향상 연구 (Development of Pd/TiO2 Catalysts with La2O3 Addition and Study on the Performance Improvement of H2 Oxidation at Room Temperature)

  • 이동윤;김성철;이상문;김성수
    • 공업화학
    • /
    • 제31권6호
    • /
    • pp.674-678
    • /
    • 2020
  • 본 연구에서는 상온 조건에서 추가적인 에너지원 없이 H2 산화가 가능한 Pd/TiO2 촉매를 제조하였고, 지지체인 TiO2의 비표면적은 Pd/TiO2 촉매의 H2 산화 반응 성능과 비례하지는 않은 것을 확인하였다. 또한 촉매의 물성 변화에 의한 성능 영향 평가를 위하여 La2O3를 Pd/TiO2 촉매에 첨가하였다. La2O3를 TiO2에 함량별로 첨가하여 Pd/La2O3-TiO2를 제조하였고, CO chemisorption 분석을 진행하였다. Pd/TiO2(G) 촉매의 전환율(14% at 0.5% H2)과 비교하여 Pd/La2O3-TiO2 촉매가 74% 전환율로 5배 이상의 성능 증진이 나타났다. Pd/La2O3-TiO2 촉매는 활성금속인 Pd의 metal dispersion이 클수록 H2 산화반응에 유리한 것으로 분석되었다. 하지만 첨가되는 La2O3가 10%를 초과하게 되면 촉매 성능이 다시 감소하는 것을 알 수 있었다. 마지막으로 Pd/La2O3-TiO2 촉매의 물성이 지배적인 영향을 미치는 것은 주입되는 H2가 0.3~0.5% 농도 조건까지이며, 1% 이상의 H2 농도부터는 물질전달이 촉매 반응속도를 지배하는 것으로 판단된다.

탄소 담지체(CNTs)에 따른 직접메탄올연료전지용 Pt/Au/TiO2 촉매 제조와 평가 (Effect of Carbon Support (CNTs) on Pt/Au/TiO2 Catalyst Preparation and Characterization for Direct Methanol Fuel Cell (DMFC))

  • 유선경;김한주;김태일;강경석;박수길
    • 전기화학회지
    • /
    • 제12권3호
    • /
    • pp.282-286
    • /
    • 2009
  • MWNT(CNTs)를 지지체로 촉매를 합성하고 특성평가를 진행하였다. $Pt/Au/TiO_2$는 CNTs(cabon 나노 튜브) 탄소 지지체에 첨가되어 직접 메탄올 연료 전지의 성능을 개선하였다. XRD와 SEM을 통해 아나타제 $TiO_2$와 Pt/Au를 확인하였고 각각의 입자 사이즈는 200 nm와 20${\sim}$25 nm 이다. 혼성 촉매의 활성은 CV를 통해 측정되었으며 제조된 촉매는 연료전지 이용에 유망하다.

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.