• 제목/요약/키워드: Reaction Mechanism Reduction

검색결과 207건 처리시간 0.021초

Generation of a skeletal mechanism of coal combustion based on the chemical pathway analysis

  • Ahn, Seongyool;Watanabe, Hiroaki;Shoji, Tetsuya;Umemoto, Satoshi;Tnno, Kenji
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2014년도 제49회 KOSCO SYMPOSIUM 초록집
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    • pp.5-7
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    • 2014
  • A skeletal mechanism of coal combustion was derived from a detailed coal combustion kinetic mechanism through an importance analysis of chemical pathways. The reduction process consists of roughly two parts. The first process is performed based on a connectivity analysis between species. In this process, DRGEPSA is chosen for reduction process. Strongly connected species and related reactions from the important species set as start species by the operator are sorted into the reduced mechanism. About 70% of species and reactions can be removed with a limited accuracy loss. Subsequently the second reduction process, CSP, is performed. This method focuses on an importance of each reaction and can reduce a volume of mechanism appropriately. Through these analyses, a skeletal mechanism is generated that is including 65 species and 150 reactions. The generated skeletal mechanism is verified through a comparison with the detailed mechanism in the homogeneous reactor model of CHEMKIN-PRO under wide range of conditions. The generated mechanism can give an advantage in the analysis of coal combustion characteristics in detail in large scale simulations such as LES and DNS.

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Reaction Conditions and Mechanism of Electrolytic Reduction of Dibenzoylmethane$^\dag$

  • Kang, Sung-Chul;Chon, Jung-Kyoon
    • Bulletin of the Korean Chemical Society
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    • 제8권5호
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    • pp.414-418
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    • 1987
  • Electrochemical reduction of dibenzoylmethane was studied on mercury electrode by means of cyclic voltammetry, polarography and potentiostatic measurements in ethanol-water system. In acidic solutions monomeric pinacol was produced by irreversible two-electron process while monomeric and dimeric pinacol were competitively produced by the same process in neutral solution. However, in basic solution the dimeric pinacol was mostly produced through radical by irreversible one-electron transfer process. Mechanisms of the reduction of dibenzoylmethane are deduced from Tafel slope, pH dependance and reaction order with respect to the concentration of dibenzoylmethane in the solution of various pH.

경화제 변화에 따른 WLP(Wafer Level Package)용 신규 Epoxy Resin System의 경화특성 (Cure Properties of Novel Epoxy Resin Systems for WLP (Wafer Level Package) According to the Change of Hardeners)

  • 김환건
    • 반도체디스플레이기술학회지
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    • 제21권2호
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    • pp.57-67
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    • 2022
  • The curing characteristics of naphthalene type epoxy resin systems according to the change of curing agent were investigated to develop a new next-generation EMC(Epoxy Molding Compound) with excellent warpage characteristics, low thermal expansion, and excellent fluidity for WLP(Wafer Level Package). As epoxy resins, DGEBA, which are representative bisphenol type epoxy resins, NE-16, which are the base resins of naphthalene type epoxy resins, and NET-OH, NET-MA, and NET-Epoxy resins newly synthesized based on NE-16 were used. As a curing agent, DDM (Diamino Diphenyl Methane) and CBN resin with naphthalene moiety were used. The curing reaction characteristics of these epoxy resin systems with curing agents were analyzed through thermal analysis experiments. In terms of curing reaction mechanism, DGEBA and NET-OH resin systems follow the nth curing reaction mechanism, and NE-16, NET-MA and NET-Epoxy resin systems follow the autocatalytic curing reaction mechanism in the case of epoxy resin systems using DDM as curing agent. On the other hand, it was found that all of them showed the nth curing reaction mechanism in the case of epoxy resin systems using CBN as the curing agent. Comparing the curing reaction rate, the epoxy resin systems using CBN as the curing agent showed a faster curing reaction rate than them with DDM as a hardener in the case of DGEBA and NET-OH epoxy resin systems following the same nth curing reaction mechanism, and the epoxy resin systems with a different curing mechanism using CBN as a curing agent showed a faster curing reaction rate than DDM hardener systems except for the NE-16 epoxy resin system. These reasons were comparatively explained using the reaction rate parameters obtained through thermal analysis experiments. Based on these results, low thermal expansion, warpage reduction, and curing reaction rate in the epoxy resin systems can be improved by using CBN curing agent with a naphthalene moiety.

MnOx/Sewage Sludge Char를 이용한 저온 NH3 SCR의 반응 메커니즘 (Reaction Mechanism of Low Temperature NH3 SCR over MnOx/Sewage Sludge Char)

  • 차진선;박영권;박성훈;전종기
    • 공업화학
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    • 제22권3호
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    • pp.308-311
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    • 2011
  • 하수슬러지 촤에 MnOx를 담지한 촉매를 사용하여 $NH_3$를 환원제로 하는 선택적 촉매 환원반응의 반응 메커니즘 분석을 수행하였다. XRD 분석 결과 활성 Mn phase는 $Mn_3O_4$인 것으로 여겨졌다. 또한 $150^{\circ}C$ 이하에서는 흡착반응이 주요한 질소산화물 저감 메커니즘으로 작동하였으나, $100{\sim}150^{\circ}C$에서는 환원반응도 질소산화물 저감에 관여하는 것으로 보여졌다. 실험결과에 기초하여 활성 촤와 여기에 MnOx를 담지한 촤에서의 반응속도상수를 비교하였다. MnOx 담지촤는 높은 충돌계수와 낮은 활성화 에너지에 기인하여 높은 반응속도 상수와 높은 NOx 제거 효율을 나타내었다. 두 가지 촤 모두 본 실험 조건하에서 활성화 에너지는 상대적으로 낮았다(10~12 kJ/mol).

MoO3 분말의 수소환원거동 (The Hydrogen Reduction Behavior of MoO3 Powder)

  • 구원범;유경근;김행구
    • 자원리싸이클링
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    • 제31권1호
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    • pp.29-36
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    • 2022
  • 수평관상로를 사용하여 산화몰리브덴의 수소환원거동을 연구하였으며, 환원은 MoO3 → MoO2과 MoO2 → Mo의 두 단계로 진행되었다. 첫 번째 단계에서는 높은 발열반응을 고려하여 MoO3 환원을 위해 30 vol% H2와 70 vol% Ar의 혼합 가스를 선택하였다. 온도 범위는 550~600℃이고 체류 시간 범위는 30~150분으로 진행하였다. 두 번째 단계에서는 MoO2의 환원을 위해 순수한 H2 가스를 사용하였으며, 온도와 체류시간의 범위는 각각 700~750℃와 30~150분이었다. 몰리브덴 산화물의 두 단계의 수소환원과정에서 각각 다른 환원거동이 관찰되었다. 1단계에서는 반응속도의 온도 의존성이 관찰되었으며, 본 연구의 조건에서 중간 산화물의 존재에도 불구하고 표면반응율 속 메커니즘이 결과와 잘 일치하는 것으로 나타났다. 이 메커니즘을 기반으로 활성화 에너지와 빈도인자는 각각 85.0 kJ/mol 및 9.18×107로 계산되었다. 또한, 입자 내 기공 크기는 온도 및 체류 시간에 따라 증가했다. 2단계 환원의 경우 반응속도의 온도 의존성이 관찰되었으나 표면반응율속 메커니즘은 초기에만 부합하였다. 이는 환원과정 후반부에 상변태 MoO2→ Mo가 진행됨에 따라 부피 변화에 의한 산화물 결정구조의 붕괴에 기인한다고 생각할 수 있다.

고압에서 예혼합 CH4-Air 화염의 축소 반응 메카니즘 (Short Reaction Mechanism for Premixed CH4-Air Flames at High Pressure)

  • 이수각;이기용
    • 대한기계학회논문집B
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    • 제36권6호
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    • pp.647-653
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    • 2012
  • 에러 최소 연결 방법(SEM-CM) 및 반복적 화학종 제거 민감도를 적용한 반응 메카니즘 감소 방법을 갖고, 고압에서 메탄-공기 예혼합 화염에 대한 축소 반응 메카니즘을 개발하였다. 최대 5% 이내의 에러 조건에서 얻어진 축소 반응 매카니즘은 43개 화학종과 554개 기초반응식으로 구성되어 있다. 고압조건에서 다양한 초기온도, 당량비를 갖는 메탄-공기 화염에 대하여 상세 화학반응 메카니즘과 축소 반응 메카니즘으로부터 얻어진 화염구조는 비교되었고, 결과는 잘 일치하였다. 따라서 개발된 축소 반응 메카니즘은 고압에서 화염속도, 화염온도, 주 화학종 및 부 화학종의 농도 등을 재생할 수 있다.

NiFe2O4의 수소환원에 의한 나노구조 Fe-Ni 합금의 제조 및 자성특성 (Synthesis and Magnetic Properties of Nanocrystalline Fe-Ni Alloys During Hydrogen Reduction of NiFe2O4)

  • 백민규;도경효;;박종진
    • 대한금속재료학회지
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    • 제49권1호
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    • pp.52-57
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    • 2011
  • Nickel ferrite ($NiFe_2O_4$) powder was prepared through the ceramic route by calcination of a stoichiometric mixture of nickel oxide (NiO) and iron oxide ($Fe_2O_3$). The pressed pellets of $NiFe_2O_4$ were isothermally reduced in pure hydrogen at 800, 900, 1000 and $1100^{\circ}C$. Based on thermogravimetric analysis, the reduction behavior and the kinetic reaction mechanisms of the synthesized ferrite were studied. The initial ferrite powder and various reduction products were characterized by XRD, SEM, reflected light microscope and VSM to reveal the effect of hydrogen reduction on the composition, microstructure, magnetic properties and reaction kinetics of the produced Fe-Ni alloy. Complete reduction of the $NiFe_2O_4$ was achieved with synthesis of homogeneous nanocrystalline Fe-Ni alloys. Arrhenius equation with the approved mathematical formulations for a gas-solid reaction was applied for calculating the activation energy ($E_a$) values and detecting the controlling reaction mechanism.

Study the Electrochemical Reduction of Some Triazines in N,N-Dimethylformamide at Glassy Carbon Electrode

  • Fotouhi, L.;Farzinnegad, N.;Heravi, M.M.;Khaleghi, Sh.
    • Bulletin of the Korean Chemical Society
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    • 제24권12호
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    • pp.1751-1756
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    • 2003
  • An electrochemical study related to the electroreduction of 4-amino-6-methyl-3-thio-1,2,4-triazin-5-one(I), 6-methyl-3-thio-1,2,4-triazin-5-one(II), and 2,4-dimetoxy-6-methyl-1,3,5-triazine(III) in dimethylformamide at glassy carbon electrode has been performed. A variety of electrochemical techniques, such as differential pulse voltammetry (DPV), cyclic voltammetry (CV), chronoamperometry, and coulometry were employed to clarify the mechanism of the electrode process. The compounds I and II with thiol group exhibited similar redox behavior. Both displayed two cathodic peaks, whereas the third compound, III, without thiol group showed only one cathodic peak in the same potential range of the second peak of I and II. The results of this study suggest that in the first step the one electron reduction of thiol produced a disulfide derivative and in the second reduction step the azomethane in the triazine ring was reduced in two electron processes. A reduction mechanism for all three compounds is proposed on this basis. In addition, some numerical constants, such as diffusion constant, transfer coefficient, and rate constant of coupled chemical reaction in the first reduction peak were also reported.

Electrochemical Reduction of Nitrobenzene and Substituted Nitrobenzenes on Lead Electrode

  • Chon, Jung-Kyoon;Paik, Woon-Kie
    • Bulletin of the Korean Chemical Society
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    • 제2권1호
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    • pp.1-8
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    • 1981
  • Electrochemical reduction of nitrobenzene and substituted nitrobenzenes on lead electrode was studied by galvano-static measurements and cyclic voltammetry in basic ethanol-water solvents. Nitroso compounds or hydroxylamines were detected as the main reduction product depending on the potential. Mechanisms of production and further reduction of substituted and unsubstituted nitrosobenzenes are deduced from Tafel slope, pH dependence and reaction order. The reduction of most of the substituted nitrobenzenes to corresponding nitrosobenzene derivatives seemed to follow the reaction mechanism of nitrobenzene reduction with a few exceptions. A Hammett type relationship between the magnitude of the reduction current and the kinds of substituents was found with the ${\rho}$ value of 0.54.

A Review of Ac-impedance Models for the Analysis of the Oxygen Reduction Reaction on the Porous Cathode Electrode for Solid Oxide Fuel Cell

  • Kim, Ju-Sik;Pyun, Su-Il
    • 전기화학회지
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    • 제8권2호
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    • pp.106-114
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    • 2005
  • This article covers the theoretical ac-impedance models for the analysis of oxygen reduction on the porous cathode electrode f3r solid oxide fuel cell (SOFC). Firstly, ac-impedance models were explained on the basis of the mechanism of oxygen reduction, which were classified into the rate-determining steps; (i) adsorption of oxygen atom on the electrode surface, (ii) diffusion of adsorbed oxygen atom along the electrode surface towards the three-phase (electrode/electrolyte/gas) boundaries, (iii) surface diffusion of adsorbed oxygen atom m ixed with the adsorption reaction of oxygen atom on the electrode surface and (iv) diffusion of oxygen vacancy through the electrode coupled with the charge transfer reaction at the electrode/gas interface. In each section for ac-impedance model, the representative impedance plots and the interpretation of important parameters attributed to the oxygen reduction reaction were explained. Finally, we discussed in detail the applications of the proposed theoretical ac-impedance models to the real electrode of SOFC system.