• 제목/요약/키워드: simulated catalytic reaction

검색결과 25건 처리시간 0.02초

Rational design of rare-earth orthoferrite LnFeO3 via Ln variation towards high photo-Fenton degradation of organics

  • Thi T. N. Phan;Aleksandar N. Nikoloski;Parisa A. Bahri;Dan Li
    • Advances in nano research
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    • 제16권1호
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    • pp.41-52
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    • 2024
  • In this study, rare-earth orthoferrites LnFeO3 were synthesized using a facile hydrothermal reaction and their visible-light-induced photo-Fenton degradation of organics was optimized through Ln variation (Ln = La, Pr, or Gd). The morphological, structural, and chemical characteristics of as-prepared samples were examined in detail by using different methods, including XRD, SEM, TEM, XPS, etc. On the other side, under visible light illumination, the photo-Fenton-like catalytic activities of LnFeO3 were assessed in terms of the removal of selected organic models, i.e., pharmaceuticals (ketoprofen and tetracycline) and dyes (rhodamine B and methyl orange). As compared with PrFeO3 or GdFeO3, the sample of LaFeO3 displayed more structural distortion, larger specific surface area, and narrower band gap, resulting in its higher photo-Fenton-like catalytic activity toward the degradation of organics. In organic-containing solution, in which the initial solution pH = 5, catalyst dosage = 1 g/L and H2O2 concentration = 10 mM, 98.2% of rhodamine B, 31.1% of methyl orange, 67.7% of ketoprofen, or 96.4% of tetracycline was removed after 90-min exposure to simulated visible light. Our findings revealed that variation of Ln site on rare-earth orthoferrites was an effective strategy for optimizing their organic removal via visible-light-induced photo-Fenton reaction.

모사된 석탄가스화 합성가스를 이용한 La0.9Sr0.1Cr0.7B0.3O3±δ (B=Mn, Ni, Fe, Ru)의 수성가스전이반응 활성 및 특성에 관한 연구 (The Study on the Catalytic Performance and Characterization of La0.9Sr0.1Cr0.7B0.3O3±δ (B=Mn, Ni, Fe, Ru) for High Temperature Water-gas Shift Reaction with Simuated Coal-derived Syngas)

  • 이슬기;곽재훈;손정민
    • 한국수소및신에너지학회논문집
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    • 제24권6호
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    • pp.543-549
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    • 2013
  • In this study, $La_{0.9}Sr_{0.1}Cr_{0.7}M_{0.3}O_{3{\pm}{\delta}}$ (M=Mn, Ru, Fe, Ni) were prepared by sol-gel method and water gas shift reaction with simulated coal-derived syngas between $400{\sim}650^{\circ}C$ was conducted to evaluate the catalytic activity of prepared catalysts. Physico-chemical properties were characterized by XRD, BET, SEM-EDS and TPR. The formation of perovskite crystallite, $LaCrO_3$ was confirmed and the highest surface area was measured with $La_{0.9}Sr_{0.1}Cr_{0.7}Mn_{0.3}O_{3{\pm}{\delta}}$. Equilibrium conversion of CO above $550^{\circ}C$ was achieved except $La_{0.9}Sr_{0.1}Cr_{0.7}Fe_{0.3}O_{3{\pm}{\delta}}$. and methanation reaction was carried out as side reaction of water gas shift reaction with $La_{0.9}Sr_{0.1}Cr_{0.7}Ni_{0.3}O_{3{\pm}{\delta}}$ and $La_{0.9}Sr_{0.1}Cr_{0.7}Ru_{0.3}O_{3{\pm}{\delta}}$. Conclusively, $La_{0.9}Sr_{0.1}Cr_{0.7}M_n{0.3}O_{3{\pm}{\delta}}$ was the most suitable catalyst of water gas shift reaction above $500^{\circ}C$ for CO conversion and hydrogen production.

수소 생산용 막반응기의 해석 (Analysis of a Hydrogen Generation Membrane Reactor)

  • 김형규;서정철;백영순
    • 한국가스학회지
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    • 제8권3호
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    • pp.16-23
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    • 2004
  • 현재 많은 연구가 진행되고 있는 막반응기를 이용한 수소 생산기술은 열역학적 평형의 한계(thermodynamic equilibrium limit)를 뛰어 넘는 생산성을 얻을 수 있음과 동시에 생산되는 수소를 별다른 과정이나 장치 없이 분리할 수 있다는 점에서 경제적으로 매우 기대되는 공정이다. 메탄의 개질반응에서 생성되는 합성가스에 수증기를 첨가하면 널리 알려진 수성가스전환반응이 이루어진다. 이 반응은 수소 생산 공정에 사용되는 주요 반응 중 하나이다. 본 연구에서는 새롭게 제안된 cell을 이용한 해석 기법을 통해 막반응기를 모사하여 막을 이용하지 않은 반응기의 모사 결과와 비교 분석하였으며, 막반응기의 우수성을 검증해 보았다. 막을 사용하지 않은 반응기에서 압력의 영향에 따른 반응속도의 변화는 수성가스전환반응에서 무시할 수 있을 만큼 작았다. 막반응기에서 튜브 측(tube side)의 압력은 높을수록, 쉘 측(shell side)의 압력은 낮을수록 CO의 전환율이 좋았다. 낮은 온도에서 반응의 속도가 낮았으며, 온도가 증가함에 따라 점차 증가하여 600$\pm$30K에서 최대의 CO전환율을 가졌으며 더 증가하면 열역학적 평형의 감소로 인하여 점차 감소하였다. Cell을 이용한 막반응기 모델은 미분방정식을 이용한 모델보다 간단하게 모사를 할 수 있었으며, 신뢰할만한 모사 결과를 얻을 수 있었다.

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폐기물 가스화 합성가스로부터 수소 생산을 위한 수성가스전이 반응용 Cu 기반 촉매 연구 (A Study on Cu Based Catalysts for Water Gas Shift Reaction to Produce Hydrogen from Waste-Derived Synthesis Gas)

  • 나현석;정대운;장원준;이열림;노현석
    • 한국수소및신에너지학회논문집
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    • 제25권3호
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    • pp.227-233
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    • 2014
  • Simulated waste-derived synthesis gas has been tested for hydrogen production through water-gas shift (WGS) reaction over supported Cu catalysts prepared by co-precipitation method. $CeO_2$, $ZrO_2$, MgO, and $Al_2O_3$ were employed as supports for WGS reaction in this study. $Cu-CeO_2$ catalyst exhibited excellent catalytic activity as well as 100% $CO_2$ selectivity for WGS in severe conditions ($GHSV=40,206h^{-1}$ and CO concentration = 38.0%). In addition, $Cu-CeO_2$ catalyst showed stable CO conversion for 20h without detectable catalyst deactivation. The high activity and stability of $Cu-CeO_2$ catalyst are correlated to its easier reducibility, high oxygen mobility/storage capacity of $CeO_2$.

질소산화물 제거용 상용 $V_2O_5-WO_3/TiO_2$ SCR 폐 촉매의 재생 효과 고찰 (A Study on the Regeneration Effects of Commercial $V_2O_5-WO_3/TiO_2$ SCR Catalyst for the Reduction of NOx)

  • 박해경
    • 대한환경공학회지
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    • 제27권8호
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    • pp.859-869
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    • 2005
  • 소각장 off gas에 장기간 노출이 되어 활성이 저하된 상용 $V_2O_5-WO_3/TiO_2$ aged 촉매를 물리화학적 방법으로 재생 처리를 수행한 후, 재생 처리에 따른 촉매의 물성 변화를 확인하고 이에 따른 촉매 활성변화를 고찰하였다. 촉매의 특성분석은 XRD(x-ray diffractometer), BET, POROSIMETER, EDX(energy dispersive x-ray spectrometer), ICP(inductively coupled plasma), TGA(thermogravimetric Analyze,), SEM(scanning electron microscopy)등을 이용하여 수행하였고 NOx 전환반응실험은 소각장 off gas를 모사하여 $NH_3$에 의한 SCR 반응을 통해 수행하였다. 본 연구에서 수행된 재생처리 방법 중, 열처리 방법으로 재생처리를 수행 할 경우 fresh 촉매환성의 95% 이상을 회복하였으며, 화학적 재생 처리 방법으로는 산성용액의 경우는 pH가 5인 용액으로 재생 처리된 촉매가, 염기성 용액의 경우는 pH가 12인 용액으로 재생 처리된 촉매가 fresh 촉매활성의 90% 이상의 촉매 활성을 회복 하였다. 촉매 특성 분석 결과, 상기와 같은 방법으로 재생 처리된 촉매의 경우 비표면적은 fresh 촉매의 $85{\sim}95%$ 수준으로 회복 되었으며, aged 촉매 표면에 축적되어 있던 촉매 비활성 물질로 잘 알려진 황(S)이나 칼슘(Ca)등은 최대 99%이상 제거 되었다. Aged 촉매 표면상의 인(P), 크롬(Cr), 아연(Zn) 등과 같은 중금속의 경우는 최대 95% 이상 제거 되었으나 납(Pb)의 경우는 제거율이 $10{\sim}30%$ 수준으로 매우 미흡한 것으로 나타났다.

벽유동 방식 담체를 사용하는 SCR 촉매 반응기에서 재 퇴적이 변환 효율에 미치는 영향에 대한 연구 (Impact of Ash Deposit on Conversion Efficiency of Wall Flow Type Monolithic SCR Reactor)

  • 박수열
    • 동력기계공학회지
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    • 제17권1호
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    • pp.27-35
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    • 2013
  • SCR (Selective Catalytic Reduction) on DPF (Diesel Particulate Filter) is a multi-functional after-treatment device which integrates soot filtration and DeNOx function into a single can. Because of its advantage in package and cost, the SCR on DPF is considered as a potential candidate for future application. It inherently employes wall flow type monolithic reactor so ash included in exhaust gas may deposit inside the inlet channel of this device. This study is intended to identify the impact of ash deposit on SCR reaction under wall flow type monolithic reactor. Simulation approach is used so relevant species transport equations for wall flow type monolith is derived. These equations can be solved together with momentum conservation equations and give solution for conversion performance. Both ash deposit and clean catalyst case are simulated and comparison of these two cases gives an insight for the impact of ash deposit on conversion performance. Ash deposit can be classified as ash layer and ash plug. and impact of ash deposit is described along with different morphology of ash deposit.

복합촉매를 이용한 플라즈마 반응에 의한 황산화물의 제거에 관한 연구 (A study of decomposition of sulfur oxides using Composite catalyst by plasma reactions)

  • 우인성;황명환;김다영;김관중;김성태;박화용
    • 대한안전경영과학회:학술대회논문집
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    • 대한안전경영과학회 2013년 춘계학술대회
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    • pp.655-668
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    • 2013
  • In this study, a combination of the plasma discharge in the reactor by the reaction surface discharge reactor complex catalytic reactor and air pollutants, hazardous gas SOx, change in frequency, residence time, and the thickness of the electrode, the addition of simulated composite catalyst composed of a variety of gases, including decomposition experiments were performed by varying the process parameters. 20W power consumption 10kHz frequency decomposition removal rate of 99% in the decomposition of sulfur oxides removal experiment that is attached to the titanium dioxide catalyst reactor experimental results than if you had more than 5% increase. If added to methane gas was added, the removal efficiency increased decomposition, the oxygen concentration increased with increasing degradation rate in the case of adding carbon dioxide decreased.

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The Effect of Promoters Addition on NOx Removal by $NH_3$ over V$V_2O_5/TiO_2$

  • Lee, Keon-Joo
    • Journal of Korean Society for Atmospheric Environment
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    • 제18권E1호
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    • pp.29-36
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    • 2002
  • The selective catalytic reduction (SCR) reaction of promoter catalysts was investigated in this study. A pure anatase type of TiO$_2$ was used as support. Activation measurement of prepared catalysts was practiced on a fixed reactor packing by the glass bead after filling up catalysts in 1/4 inch stainless tube. The reaction temperature was measured by K-type thermocouple and catalyst was heated by electric furnace. The standard compositions of the simulated flue gas mixture in this study were as follows: NO 1,780ppm, NH$_3$1,780ppm, $O_2$1% and $N_2$ as balance gas. In this study, gas analyzer was used to measure the outgassing gas. Catalyst bed was handled for 1hr at 45$0^{\circ}C$, and the reactivity of the various catalyst was determined in a wide temperature range. Conversion of NH$_3$/NO ratio and of $O_2$ concentration was practiced at 1,1.5 and 2, respectively. The respective space velocity were as follows . 10,000, 15,000 and 17,000 hr-1. It was found that the maximum conversion temperature range was in a 5$0^{\circ}C$. It was also found toi be very sensitive at space velocity, $O_2$ concentration, and NH$_3$/NO ratio. We also noticed that the maximum conversion temperature of (W, Mo, Sn) -V$_2$O$_{5}$/TiO$_2$ catalysts was broad. Specially WO$_3$-V$_2$O$_{5}$TiO$_2$2 catalyst appeared nearly 100% conversion at not only above 30$0^{\circ}C$ ut also below 25$0^{\circ}C$. At over 30$0^{\circ}C$, NH$_3$ oxidation decreased with decrease of surface excess oxygen. In addition, WO$_3$-V$_2$O$_{5}$TiO$_2$ catalyst did not appear to affect space velocity, $O_2$ concentration, and NH$_3$/NO ratio.ratio.

n-옥탄의 촉매 분해반응에서 제올라이트의 세공구조가 생성물 분포와 활성저하에 미치는 영향 (The Effect of Pore Structure of Zeolites on their Product Distribution and Deactivation in the Catalytic Cracking of n-Octane)

  • 민병구;이재열;송요순;서곤
    • Korean Chemical Engineering Research
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    • 제45권6호
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    • pp.547-553
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    • 2007
  • FER, MFI, MOR, BEA 제올라이트 촉매에서 n-옥탄의 분해반응을 양성자 분해반응(protolytic cracking mechanism) 기구로 해석하여 제올라이트의 세공구조가 생성물 분포와 활성저하에 미치는 영향을 고찰하였다. 세공이 작으면 분해반응이 많이 진행되어 $C_3$$C_3{^=}$가 주로 생성되나, 세공이 큰 제올라이트에서는 초기 생성물인 $C_4$$C_4{^=}$가 주로 생성된다. MFI 제올라이트에서는 탄소 침적이 억제되어 활성저하가 느리나, FER 제올라이트에서는 탄소가 많이 침적되어 촉매 활성이 빠르게 저하되었다. BEA 제올라이트에서는 탄소가 많이 침적되어도 활성저하가 느리나, MOR 제올라이트에서는 탄소가 조금만 침적되어도 활성저하가 빨랐다. n-옥탄 분해반응의 기구를 단순화하고 탄소 침적에 의한 세공 차폐 정도를 활성저하와 연관지어 반응시간에 따른 전환율 저하 과정을 모사하였다.

바나듐 계열 촉매를 통한 NOx의 NH3-SCR에 관한 실험적 연구 (An Experimental Study on the NH3-SCR of NOx over a Vanadium-based Catlayst)

  • 정희찬;심성민;김영득;정수진;김우승
    • 한국자동차공학회논문집
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    • 제20권1호
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    • pp.20-27
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    • 2012
  • The $NH_3$-SCR characteristics of $NO_X$ over a V-based catalyst are experimentally examined over a wide range of operating conditions, i.e., $170-590^{\circ}C$ and $30,000-50,000h^{-1}$, with a simulated diesel exhaust containing $NH_3$, NO, $NO_2$, $O_2$, $H_2O$, and $N_2$. The influences of the space velocity and oxygen concentration on the standard-SCR reaction are analyzed, and it is shown that the low space velocity and high oxygen concentration promote the SCR activity by ammonia. The best $deNO_X$ efficiency is obtained with a $NO_2/NO_X$ ratio of 0.5 because of an enhanced chemical activity induced by the fast-SCR reaction, while at the $NO_2/NO_X$ ratios above 0.5 the $deNO_x$ activity decreases due to the slow-SCR reaction. The oxidation of ammonia begins to take place at about $300^{\circ}C$ and the reaction products, such as $N_2$, NO, $NO_2$, $N_2O$, and $H_2O$, are produced by the undesirable oxidation reactions of ammonia, particularly at high temperatures above $450^{\circ}C$. Also, $NO_2$ decomposes to NO and $O_2$ at temperatures above $240^{\circ}C$. Therefore, $NO_2$ decomposition and ammonia oxidation reactions deteriorate significantly the SCR catalytic activity at high temperatures.