• 제목/요약/키워드: partial oxidation

검색결과 308건 처리시간 0.025초

Development of NBCO Coated Conductor by using Superconductor Technology

  • Lee Sang-Heon
    • Transactions on Electrical and Electronic Materials
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    • 제4권4호
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    • pp.10-12
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    • 2003
  • NBCO thin films have been fabricated by magnetron sputtering technique on heated $SrTiO_3$ substrates. The oxidation and crystallization of the films were strongly dependent on the distance between the targets and the substrate, as well as on the oxygen partial pressure. The critical temperatures were above 80K for the films prepared under the condition of a small target to substrate gap, in spite of a very low oxygen pressure of 0.2Pa. The results suggest the importance of the activated oxygen uptake into the films during sputtering.

고농도 페놀 폐수의 습식산화와 호기성 생물학적 통합처리 (Integrated Wet Oxidation and Aerobic Biological Treatment of the Wastewater Containing High Concentration of Phenol)

  • 최호준;이승호;유용호;윤왕래;서일순
    • KSBB Journal
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    • 제22권4호
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    • pp.244-248
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    • 2007
  • 고농도 페놀폐수 전처리 습식산화공정의 반응온도, 초기 pH 및 균일촉매 ($CuSO_4$) 등이 후처리 호기성 생물학적 공정에 미치는 영향을 조사하였다. 습식산화에서의 높은 반응온도와 산성 초기조건이 후처리 생물학적 산화공정에서 높은 산화속도와 최종 COD 제거율을 유발하였다. 습식산화에서 균일촉매를 사용하면 전처리 습식산화반응은 낮은 반응온도에서도 높은 COD 제거속도를 보였으나, 후처리 생물학적 산화공정에서는 낮은 최종 COD 제거율을 나타내었다.

초임계유체 반응매개상에서 VOCs의 촉매산화 전환특성 (Catalytic Oxidation Conversion Characteristics of VOCs in Supercritical Fluid Media)

  • 이승범;홍인권;이재동
    • 환경위생공학
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    • 제16권4호
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    • pp.69-76
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    • 2001
  • The catalytic oxidation of volatile organic compounds (VOCs), which were benzene and toluene, was studied in the supercritical carbon dioxide($SC-CO_2$) media. In $SC-CO_2$ media, the deep oxidation conversion of VOCs was increased with the temperature and pressure. The deep oxidation conversion in SC -$CO_2$ media is better than that in air media at same pressure condition. This can be explained by the solubility of VOCs in $SC-CO_2$. The many intermediates produced by the partial oxidation of VOCs were detected from off-line samples. The intermediates were Identified as benzene, toluene, benzaldehyde, phenol, naphthalene, 1,1`-biphenyl, benzoic acid, 3-methylphenol, 1,1'-(1,2-ethanediyl)bis- benzene, 1,1'-(1,2-ethene- diyl)bis-benzene, anthracene, and so on. The amount of intermediates was decreased as the molar radio of oxygen to carbon dioxide was decreased. When the molar ratio of oxygen to carbon dioxide was 1 : 16, the deep conversion was kept constant. Thus, the catalytic oxidation process in $SC-CO_2$ media can be combined on-line with supercritical fluid extraction of environmental matrices and supercritical regeneration of used adsorbent. Thus, the nontoxic $SC-CO_2$ media process was suggested as the new VOCs control technology.

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열산화법을 이용한 산화구리 나노선 수직성장 (Synthesis of Vertically Aligned CuO Nanorods by Thermal Oxidation)

  • 김지민;정혁;김도진
    • 한국재료학회지
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    • 제23권1호
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    • pp.1-6
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    • 2013
  • A simple thermal oxidation of Cu thin films deposited on planar substrates established a growth of vertically aligned copper oxide (CuO) nanorods. DC sputter-deposited Cu thin films with various thicknesses were oxidized in environments of various oxygen partial pressures to control the kinetics of oxidation. This is a method to synthesize vertically aligned CuO nanorods in a relatively shorter time and at a lower cost than those of other methods such as the popular hydrothermal synthesis. Also, this is a method that does not require a catalyst to synthesize CuO nanorods. The grown CuO nanorods had diameters of ~100 nm and lengths of $1{\sim}25{\mu}m$. We examined the morphology of the synthesized CuO nanorods as a function of the thickness of the Cu films, the gas environment, the oxidation time, the oxidation temperature, the oxygen gas flow rate, etc. The parameters all influence the kinetics of the oxidation, and consequently, the volume expansion in the films. Patterned growth was also carried out to confirm the hypothesis of the CuO nanorod protrusion and growth mechanism. It was found that the compressive stress built up in the Cu film while oxygen molecules incorporated into the film drove CuO nanorods out of the film.

석유화학공장 방류수내 난분해성 유기물의 Fenton 산화처리 (Fenton난s Reagent Oxidation of Refractory Organics in Petrochemical Plant Effluent)

  • 이규훈;정대영;박태주
    • 한국환경과학회지
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    • 제5권1호
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    • pp.51-59
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    • 1996
  • The purpose of this study was to evaluate the partial oxidation of the biological treatment plant effluents using Fenton's reagent as a pretreatment step prior to a tertiary biological oxidation of these effluents. Fenton's reagent was evaluated as a pretreatment process for inhibitory or refractory organics. Based on the Fenton oxidation system, the petrochemical wastewater treatment plant effluent was shown to have significant improvement in toxicity after oxidation with hydrogen peroxide. For example, at ranee of 42 ∼ 184 mg/L COD of petrochemical plant effluents, the COD removal efficiencies were from 38.2% to 60.1% after reaction with hydrogen peroxide 200 mg/L and Fe2+ 100 mg/L and reaction time was 30 minutes. The total TOC reduction were about 15.8∼22.4% with same test condition and difference between the overall removal rate and BOD/COD ratio after Fenton's oxidation estabilished in the biodegradation and otherwise meets the discharge standard or reuse for cooling tower make-up water.

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메탄올 산화 반응 메커니즘과 전기화학 산화 촉매 최신 동향 (The Trends in Methanol Oxidation Reaction Mechanisms and Electrochemical Oxidation Catalysts)

  • 봉성율
    • 공업화학
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    • 제35권2호
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    • pp.79-84
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    • 2024
  • 메탄은 풍부하고 재생 가능한 탄화수소이지만, 온실가스로서 지구 온난화를 발생시킨다. 따라서 메탄을 유용한 화학물질이나 에너지원으로의 변환이 필요하다. 메탄올은 메탄의 부분 산화 반응을 통해 합성할 수 있는 간단하고 풍부한화학물질이다. 메탄올은 화학 공급 원료나 수송 연료로 사용될 뿐만 아니라, 저온 연료 전지의 연료로도 적합하다. 그러나 메탄올의 전기화학 산화는 복잡하고 다단계의 반응이므로, 이 반응을 이해하고 최적화하기 위해서는 새로운 전기화학촉매와 반응 메커니즘의 연구가 필요하다. 본 총설에서는 메탄올 산화 반응 메커니즘 및 최근 연구 동향과 향후 연구 방향을 고찰하였다.

메탄의 부분산화를 이용한 이중 혼합금속산화물 촉매 반응시스템의 N2O 분해 특성 연구 (N2O Decomposition Characteristics of Dual Bed Mixed Metal Oxide Catalytic System using Partial Oxidation of Methane)

  • 이난영;우제완
    • Korean Chemical Engineering Research
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    • 제46권1호
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    • pp.82-87
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    • 2008
  • Methane의 부분산화에 의하여 일산화탄소를 발생시키고 이를 이용하여 온실가스로 알려져 있는 $N_2O$를 분해시키기 위한 이중 촉매 반응시스템의 반응 특성을 살펴보았다. 일산화탄소를 발생시키기 위한 제1 반응기의 조건은 Co-Rh-Al (1/0.2/1) 촉매를 사용할 때 $500^{\circ}C$의 온도에서 methane과 산소의 비율이 5:1이고 GHSV $8,000h^{-1}$ 일때 가장 적합하였다. 제1 반응기에서 methane을 부분산화시켜 얻은 혼합 가스를 사용하는 이중 반응시스템에서 제2 반응기에 촉매로 Co-Rh-Al(1/0.2/1)과 Co-Rh-Zr-Al(1/0.2/0.3/1)을 사용한 경우 Co-Rh-Al(1/0.2/1) 촉매를 사용한 single bed system 보다 $250^{\circ}C$ 이하의 저온에서 우수한 분해성능을 나타내었다. 두 경우 모두 $250^{\circ}C$ 이상의 온도에서는 $N_2O$가 100% 분해되었다. 또한, 제2 반응기에서 $N_2O$ 분해성능은 NO의 존재 유무에 관계없이 산소의 농도가 증가할수록 감소함을 보여주었다. 다만 NO가 존재할 경우 산소의 농도가 10,000 ppm 이하일 때 100% 분해율을 보이며 그 이상일 경우 급격히 감소하였다.

Ni-Pd/CeO2-ZrO2 금속모노리스 촉매체를 사용한 부분산화반응에 의한 합성가스 제조 (Syngas Production by Partial Oxidation Reaction over Ni-Pd/CeO2-ZrO2 Metallic Monolith Catalysts)

  • 양정민;최정은;김용진;이종대
    • Korean Chemical Engineering Research
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    • 제51권3호
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    • pp.319-324
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    • 2013
  • 합성가스를 생산하기 위한 메탄의 부분산화반응 특성을 $Ni/CeO_2-ZrO_2$, $Ni-Ru/CeO_2-ZrO_2$$Ni-Pd/CeO_2-ZrO_2$ 촉매체를 이용하여 조사하였다. 메탄의 부분 산화 개질 반응에서 촉매의 높은 활성과 안정성을 위하여 허니컴 구조의 금속모노리스 촉매 체를 적용하였다. 촉매분석은 XRD와 FE-SEM을 사용하였으며, 제조된 촉매들의 합성가스 제조 특성은 반응물 비(O/C), GHSV와 온도를 변화시키면서 연구하였다. 개질 실험에서 사용된 촉매 중에서 $Ni-Pd/CeO_2-ZrO_2$ 촉매 체가 가장 높은 활성을 보여 주었으며, $900^{\circ}C$, GHSV=10,000 $h^{-1}$과 O/C=0.55에서 99%의 메탄 전환율을 얻었다. O/C 비가 증가함에 따라 수소 yield는 증가되고, 반면에 CO yield는 거의 일정하게 유지됨을 확인할 수 있었다. 또한 GHSV가 증가할수록 메탄의 전환율은 감소하였으며, 높은 메탄의 전환율을 얻을 수 있는 GHSV의 범위는 10,000 $h^{-1}$ 이하임을 알 수 있었다.

산소 농도에 따른 Alloy 617의 고온헬륨환경에서의 크립 및 산화거동 (Creep and Oxidation Behaviors of Alloy 617 in High Temperature Helium Environments with Various Oxygen Concentrations)

  • 구자현;김대종;장창희
    • 한국압력기기공학회 논문집
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    • 제7권2호
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    • pp.34-41
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    • 2011
  • Wrought nickel-base superalloys are being considered as the structural materials in very-high temperature gas-cooled reactors. To understand the effects of impurities, especially oxygen, in helium coolant on the mechanical properties of Alloy 617, creep tests were performed in high temperature flowing He environments with varying $O_2$ contents at 800, 900, and $1000^{\circ}C$. Also, creep life in static He was measured to simulate the pseudo-inert environment. Creep life was the longest in static He, while the shortest in flowing helium. In static He, impurities like $O_2$ and moisture were quickly consumed by oxidation in the early stage of creep test, which prevented further oxidation during creep test. Without oxidation, microstructural change detrimental to creep such as decarburization and internal oxidation were prevented, which resulted in longer creep life. On the other hand, in flowing He environment, surface oxides were not stable enough to act as diffusion barriers for oxidation. Therefore, extensive decarburization and internal oxidation under tensile load contributed to premature failure resulting in short creep life. Limited test in flowing He+200ppm $O_2$ resulted in even shorter creep life. The oxidation samples showed extensive spallation which resulted in severe decarburization and internal oxidation in those environments. Further test and analysis are underway to clarify the relationship between oxidation and creep resistance.

$La_xCe_{1-x}Co_yCu_{1-y}O_{3-{\alpha}}$ Perovskite촉매의 선택적 CO 산화반응에 관한 연구 (Study on the Selective CO Oxidation Using $La_xCe_{1-x}Co_yCu_{1-y}O_{3-{\alpha}}$ Perovskite Catalysts)

  • 강대규;이영일;손정민
    • 한국수소및신에너지학회논문집
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    • 제18권1호
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    • pp.32-39
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    • 2007
  • CO oxidation and selective CO oxidation of $La_xCe_{1-x}Co_yCu_{1-y}O_{3-{\alpha}}$ perovskite(x=1, 0.9, 0.7. 0.5; y=1, 0.9, 0.7, 0.5) were investigated. For CO oxidation, catalytic activities were studied according to different preparation conditions such as pH and calcination temperature. The influence of the change of the $O_2$ concentration for selective CO oxidation was studied, too. The substitution of Ce for La improved the catalytic activity for CO oxidation and selective CO oxidation and best activity was observed for $La_{0.7}Ce_{0.3}CoO_3$ prepared at pH 11 and calcined at $600^{\circ}C$. The temperature of 90% CO conversion for CO oxidation using $La_{0.7}Ce_{0.3}CoO_3$ was $230^{\circ}C$. In contrast to the enhancement effect by Ce substitution, the partial substitution of Cu for Co in $LaCo_yCu_{1-y}O_{3-{\alpha}}$ decreased catalytic activities for CO oxidation reaction compared to that using $LaCoO_3$. For selective CO oxidation, the best CO conversion was 66% at $230^{\circ}C$ for $La_{0.7}Ce_{0.3}CoO_3$. The CO conversion of $La_{0.7}Ce_{0.3}CoO_3$ was greatly increased from 66% to 91% as increasing $O_2$ concentration from 1% to 2%.