• Title/Summary/Keyword: 산화, 환원 분위기 안정성

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Calcination Properties of Cement Raw Meal and Limestone with Oxidation/Reduction Condition (산화/환원 소성분위기에서 석회석 및 시멘트 원료물질의 소성거동 특성)

  • Moon, Ki-Yeon;Choi, Moon-Kwan;Cho, Jin-Sang;Cho, Kye-Hong
    • Resources Recycling
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    • v.29 no.5
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    • pp.64-72
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    • 2020
  • When the multi-stage combustion process is applied to the cement kiln to reduce nitrogen oxide emissions in the cement industry, oxidation/reduction section that can increase combustion efficiency by reducing NOx to NO and completely burning unburned materials is essential In this study, when applied the oxidation/reduction system of the cement kiln preheater and calciner, the optimal oxidation/reduction calcination crisis that can secure the quality stability of the final product, cement clinker, was to be observed macroscopically, and the mass change of raw materials according to the burning conditions, decarbonation rate, and calcination rate were investigated. The results showed that the thermal decomposition of raw materials tends to be promoted in the oxidation condition rather than in the reduction condition, and that the thermal decomposition of limestone, which has a relatively high CaO content, is carried out later than that of cement raw meal, which is thought to be caused by the CO2 fractionation in the kiln. The thermal decomposition properties of raw materials according to oxidation/reducing burning condition showed a relatively large difference in temperature range lower than normal limestone themal decomposition temperature, which is thought to be expected to improve the thermal efficiency of raw materials according to the formation of oxidation condition in the section 750℃ of burning temperature. However, for this study, lab scale. Because there is a difference from the field process as a scale study, it is deemed necessary to verify the actual test results of the pilot scale.

A study on formation mechanism of a microstructure and on morphological stability of a Ni-Cr anode improved creep resistance (Creep 저항성이 향상된 Ni-Cr anode의 미세조직 형성 mechanism 및 구조 안정성에 관한 연구)

  • 정도원;이인성;이덕열;임희천
    • 한국전기화학회:학술대회논문집
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    • 2002.07a
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    • pp.251-258
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    • 2002
  • [ $Ni-10wt.\%Cr$ ] green sheet를 불활성분위기로 $900^{\circ}C$까지 승온시킨 다음 부분산화$(P_{H2}/P_{H2O}=10^{-2})$$1100^{\circ}C$에서 3시간 환원처리를 시키는 소결공정으로 Ni-Cr 고용체 기지 주변에 작은 $Cr_2O_3$ 알갱이가 고르게 분포하는 anode(Anode Sintered in Partial oxidation - Reduction atmosphere; ASPR)를 제조하였으며, creep 변형률이 $2.8\%$로서 미세구조에 따른 creep 특성의 비교를 위해 기존의 환원분위기에서만 소결시킨 anode(Anode Sintered in Reduction atmosphere only; ASR)의 $11\%$보다 우수한 creep 저항성을 나타내었다. $Cr_2O_3$ 알갱이가 분산된 미세구조른 부분산화 시 Cr과 Ni의 산화속도 및 확산속도의 차이로 인해 형성되는 것으로 사료되며, creep 전${\cdot}$후 ASPR 시편의 SEM 및 기공률 분석결과 매우 안정적으로 그 형상 및 구조를 유지하고 있음을 확인할 수 있었다. 또한 ASPR 시편의 전기전도도는 약 $15\times10^6\;S/m$로서 기존 ASR 시편의 전기전도도와 유사함을 알 수 있었다.

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Effect of variation with heating pattern on the galvanizability of high strength steel (열처리 온도 및 시간 변화가 고장력강의 도금성에 미치는 영향에 관한 연구)

  • Park, Min-Seo;Baek, Du-Hyeon;Sim, Yeong-Jun;Im, Hui-Jung
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2013.05a
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    • pp.174-174
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    • 2013
  • 현재 자동차 강판 시장에서는 승객들의 안전 확보와 연비 향상을 위하여 자동차 강판의 경량화 및 고장력화가 급속히 진행되고 있다. 더불어 소비자는 더욱 아름답고 멋있는 외관을 추구하면서 정교한 디자인이 가능할 수 있도록 높은 성형성을 갖는 강판에 대한 요구도 또한 증대되고 있다. 따라서 강도와 성형성을 동시에 확보할 수 있는 DP형, TRIP형 등의 다양한 컨셉을 갖는 변태강화형 고장력강에 대한 개발 요구가 점점 심화되고 있으나 이들 고장력강의 상 제어를 위하여 첨가된 Si, Mn등의 성분들이 표면에 안정한 산화물을 형성하기 때문에 이러한 고장력강은 표면 품질이 열위한 것으로 보고 되고 있다. 따라서 기존 연구에서는 열처리중 표면으로 확산되어 올라오는 Si, Mn 산화물의 저감을 위하여 분위기 중 산소농도나 노점등을 조절하거나, 산화전처리, 선도금처리 등을 통하여 Si, Mn 의 표면 선택산화를 제어하여 도금 결함을 최소화하려는 연구가 많이 진행되고 있다. 그러나 이러한 연구들은 대부분 강판 표면에서의 산화/환원의 반응에 대한 분위기 요인을 제어하는 연구들이며 실제 Si, Mn등의 산화성 원소들이 어떠한 조건에서 어떠한 경로들을 통해서 이동하여 표면으로 올라오는지에 대한 연구는 부족한 상황이다. 따라서 본 연구에서는 산화성 원소들의 표면 확산 거동에 대한 고찰을 위하여 다양한 열처리 온도 조건을 통한 표면 도금성 경향, 합급화 경향 및 표면 분석결과를 바탕으로 확산 거동에 대한 경향을 밝히고자 하였다.

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Study on Oxidation or Reduction Behavior of Cs-Te-O System with Gas Conditions of Voloxidation Process (휘발산화 공정 조건에 따른 Cs-Te-O 시스템의 산화 환원 거동 연구)

  • Park, Byung Heung
    • Korean Chemical Engineering Research
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    • v.51 no.6
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    • pp.700-708
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    • 2013
  • Pyroprocessing has been developed for the purpose of resolving the current spent nuclear fuel management issue and enhancing the recycle of valuable resources. Pyroprocessing has been developed with the dry technologies which are performed under high temperature conditions excluding any aqueous processes. Pyro-processes which are based on the electrochemical principles require pretreatment processes and a voloxidation process is considered as a pretreatment step for an electrolytic reduction process. Various kinds of gas conditions are applicable to the voloxidation process and the understanding of Cs behavior during the process is of importance for the analyses of waste characteristics and heat load on the overall pyroprocessing. In this study, the changes of chemical compounds with the gas conditions were calculated by analyzing gas-solid reaction behavior based on the chemical equilibria on a Cs-Te-O system. $Cs_2TeO_3$ and $Cs_2TeO_4$ were selected after a Tpp diagram analysis and it was confirmed that they are relatively stable under oxidizing atmospheres while it was shown that Cs and Te would be removed by volatilization under reducing atmosphere at a high temperature. This work provided basic data for predicting Cs behavior during the voloxidation process at which compounds are chemically distributed as the first stage in the pyroprocessing and it is expected that the results would be used for setting up material balances and related purposes.

Redox Stability and Electrochemical Performances of La0.6Sr0.4Fe1-xScxO3-δ for Solid Oxide Cells Interconnector (고체산화물전지 접속자용 La0.6Sr0.4Fe1-xScxO3-δ의 상 안정성 및 전기화학 성능)

  • KWAK, MINJUN;CHOI, HYUN-JONG;KIM, TAE WOO;SEO, DOO-WON;WOO, SANG-KUK;KIM, SUN-DONG
    • Journal of Hydrogen and New Energy
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    • v.29 no.3
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    • pp.274-279
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    • 2018
  • Sc-substituted $La_{0.6}Sr_{0.4}FeO_{3-{\delta}}$(LSFSc) has synthesized for ceramic interconnector of tubular solid oxide cells (SOCs). For improving the redox stability and electric conductivity of LSFSc, the compositions of Sc, pH value of mixed precursors, calcination temperature and times were optimizing. The electrochemical performances of $La_{0.6}Sr_{0.4}Fe_{1-x}Sc_xO_{3-{\delta}}$ powders were measured as depending on Sc composition. The electric conductivity and redox stability of $La_{0.6}Sr_{0.4}Fe_{1-x}Sc_xO_{3-{\delta}}$ was determined by Sc concentration. $La_{0.6}Sr_{0.4}Fe_{0.9}Sc_{0.1}O_{3-{\delta}}$ powders can be one of the stable composition for ceramic interconnector of tubular-SOCs.

Reactivity and Preparation of Perovskite-Type Mixed Oxides LaBO3(B = Mn, Fe, Co) by Citrate Sol-Gel Method (Citrate Sol-Gel법에 의한 Perovskite형 복합 산화물 LaBO3(B = Mn, Fe, Co)의 생성 및 환원 반응성)

  • Hwang, Ho Sun;Park, Il Hyeon
    • Journal of the Korean Chemical Society
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    • v.38 no.4
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    • pp.276-282
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    • 1994
  • Perovskite-type mixed oxides LaBO$_3$(B = Mn, Fe, Co) were prepared by citrate sol-gel method in $air(850^{\circ}C$, 24h). The oxygen stoichiometries and structures of these oxides were determined by XRD and TPR results as followings; LaMnO$_{3.16}$(a = 5.507, c = 13.329 $\AA$, hexagonal), LaFeO$_{3.17}$(a = 5.554, b = 5.555, c = 7.863 $\AA$, orthorhomibic), LaCoO$_{3.0}$(a = 5.436, c = 13.095 $\AA$, hexagonal). The temperature programmed reduction(TPR) experiments in static 300 torr H$_2$ atmosphere shows that the reduction reaction of LaBO$_3$(B = Mn, Fe, Co) proceeds into two stages, and thermal stabilities of these oxides decreased in the order of LaMnO$_3$ > LaFeO$_3$ > LaCoO$_3$. According to the kinetic analysis the lowest activation energy was obtained for LaCoO$_3$.

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A Study on the Removal of Nitrate Nitrogens by Redox Reaction of Zinc Ball (아연볼의 산화·환원 반응을 통한 연속식 질산성질소 처리에 관한 연구)

  • Kim, Joon Hwan;Kim, Jong Hwa;Song, Ju Yeong
    • Journal of the Korean Applied Science and Technology
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    • v.34 no.3
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    • pp.487-494
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    • 2017
  • Since nitrate nitrogen is quite stable in aqueous solution, considerable skill is required to remove it. Low concentrations of nitrate nitrogen are easily removed, while high concentrations of nitrate nitrogen are difficult to remove. This study is to show that nitrate nitrogen in the form of gaseous nitrogen can be removed by using zinc ball with a diameter of about 3mm and to test the removal characteristics of nitrate nitrogen under various reaction conditions. As a result of this study, the treatment efficiency of nitrate nitrogen by continuous treatment with zinc ball was about 80%. However, there is a problem that the wastewater must be maintained in an acidic atmosphere of about pH 2, and the treated wastewater must be neutralized and discharged.

Study on uranium metalization yield of spent pressurized water reactor fuels and oxidation behavior of fission products in uranium metals (사용후핵연료의 우라늄 금속 전환율 측정 및 전환체 내 핵분열생성물의 산화거동 연구)

  • Choi, Ke Chon;Lee, Chang Heon;Kim, Won Ho
    • Analytical Science and Technology
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    • v.16 no.6
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    • pp.431-437
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    • 2003
  • Metalization yield of uranium oxide to uranium metal from lithium reduction process of spent pressurized water reactor (PWR) fuels was measured using thermogravimetric analyzer. A reduced metal produced in the process was divided into a solid and a powder part, and each metalization yield was measured. Metalization yield of the solid part was 90.7~95.9 wt%, and the powder being 77.8~71.5 wt% individually. Oxidation behaviour of the quartemary alloy was investigated to take data on the thermal oxidation stability necessary for the study on dry storage of the reduced metal. At $600{\sim}700^{\circ}C$, weight increments of alloy of Mo, Ru, Rh and Pd was 0.40~0.55 wt%. Phase change on the surface of the alloy was started at $750^{\circ}C$. In particular, Mo was rapidly oxidized and then the alloy lost 0.76~25.22 wt% in weight.

Photoelectrochemical Water Splitting Using GaN (GaN를 이용한 광전기화학적 물분해)

  • Oh, Ilwhan
    • Journal of the Korean Electrochemical Society
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    • v.17 no.1
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    • pp.1-6
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    • 2014
  • This review article summarizes photoelectrochemical water splitting using gallium nitride (GaN). GaN materials have been studied as novel photoelectrode material due to its chemical stability and easy band gap engineering. Unlike other semiconductor materials that are easily corroded in strongly acidic or alkaline electrolyte, n-type GaN is chemically stable enough to be used as photoanode in oxygen evolution reaction. Furthermore, studies on p-type GaN have been recently reported. This review briefly discusses problems that need to be solved before GaN materials find widespread use in solar fuel application.

Corrosion Behavior of $Y_2O_3$ Coating in an Electrolytic Reduction Process (전해환원공정에서 $Y_2O_2$ 코팅층의 부식거동)

  • Cho, Soo-Haeng;Hong, Sun-Seok;Kang, Dae-Seung;Jeong, Myeong-Soo;Park, Byung-Heong;Hur, Jin-Mok;Lee, Han-Soo
    • Journal of Nuclear Fuel Cycle and Waste Technology(JNFCWT)
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    • v.8 no.1
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    • pp.33-39
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    • 2010
  • The electrolytic reduction of a spent oxide fuel involves a liberation of the oxygen in a molten LiCl electrolyte, which results in a chemically aggressive environment that is too corrosive for typical structural materials. Accordingly, it is essential to choose the optimum material for the processing equipment that handles the high molten salt. In this study, hot corrosion studies were performed on bare as well as coated superalloy specimens after exposure to lithium molten salt at $675^{\circ}C$ for 216 h under an oxidizing atmosphere. The IN713LC superalloy specimens were sprayed with an aluminized NiCrAlY bond coat and then with an $Y_2O_3$ top coat. The bare superalloy reveals an obvious weight loss due to spalling of the scale by the rapid scale growth and thermal stress. The chemical and thermal stability of the top coat has been found to be beneficial for increasing to the corrosion resistance of the structural materials for handling high temperature lithium molten salts.