• Title/Summary/Keyword: 매체순환연소

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Characteristics of Carbon Deposition and Cyclic Test of Oxygen Carrier Particle for Chemical-Looping Combustor (매체순환식 가스연소기 산소공여입자의 탄소침적 및 반복실험 특성)

  • 김민수;임남윤;류호정;배달희;진경태
    • Proceedings of the Korea Society for Energy Engineering kosee Conference
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    • 2002.05a
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    • pp.79-83
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    • 2002
  • 새로운 가스연소 개념인 매체순환식 가스연소기(Chemical-Looping Combustor, CLC)는 공기와 기체연료(H$_2$, CO, CH$_4$ 등)가 직접 접촉하여 연소하는 기존의 연소-발전 시스템에 비해 많은 장점들을 가지고 있다. 매체순환식 가스연소기의 기본개념은 Fig. 1에 나타내었다.(중략)

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Reaction Characteristics of Oxygen Carrier Perticle for Chemical-Looping Combustor in Fixed Bed and Pressurized Fluidized Bed (고정층과 가압유동층에서 매체순환식 가스연소기 산소공여입자의 반응특성)

  • 류호정;배달희;진경태
    • Proceedings of the Korea Society for Energy Engineering kosee Conference
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    • 2002.05a
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    • pp.173-177
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    • 2002
  • 두 개의 유동층 사이를 순환하는 금속매체(Metal or Metal oxide)를 이용하여 공기에 의한 금속매체의 산화와 기체연료(H$_2$, CO, CH$_4$등)에 의한 금속산화물의 환원반응이 별개의 반응기에서 일어나게 하는 새로운 개념의 연소기술인 매체순환식 가스연소기술은 공기와 기체연료를 직접 접촉시켜 반응하는 기존의 가스연소기에 비해 많은 장점을 가지고 있다.(중략)

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Conceptual Design of 50 kW thermal Chemical-Looping Combustor and Analysis of Variables (열량기준 50kW급 매체순환식 가스연소기의 개념설계 및 변수해석)

  • 류호정;진경태
    • Journal of Energy Engineering
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    • v.12 no.4
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    • pp.289-301
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    • 2003
  • To develop a chemical-looping combustion technology, conceptual design of 50 kW thermal chemical-looping combustor, which is composed of two interconnected pressurized circulating fluidized beds, was performed by means of mass and energy balance calculations. A riser type fast fluidized bed was selected as an oxidizer and a bubbling fluidized bed was selected as a reducer by mass balance for the chemical-looping combustor. Calculated values of bed mass, solid circulation flux, and reactor dimension by mass and energy balance calculations were suitable for construction and operation of chemical-looping combustor. It is concluded from the comparison of the design results and operating values of commercial circulating fluidized bed that the process outline is realistic. Moreover, the previous results support that oxygen carrier particle, NiO/bentonite, fulfills the conversion rates needed for the proposed design. The effects of system capacity, metal oxide content in a oxygen carrier particle, amount of steam input, gas velocity, and solid depth on design values were investigated and the changes in the system performance can be estimated by proposed design tool.

Comparison of Reactivity of Oxygen Carrier Particles by TGA (TGA를 이용한 매체순환식 가스연소기 산소공여입자의 반응성 비교)

  • 임남윤;류호정;진경태;배성렬
    • Proceedings of the Korea Society for Energy Engineering kosee Conference
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    • 2003.05a
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    • pp.621-625
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    • 2003
  • 최근 지구온난화 문제와 관련하여 국제적으로 이슈가 되고 있는 $CO_2$ 저감 및 처리기술 중에서 연소 후 처리가 아닌 신개념 연소기술로서 NO$_{x}$가 배출되지 않고 $CO_2$의 고농도 원천분리가 가능하여 새로운 연소 및 발전기술로 부상하고 있는 매체순환식 가스연소기술(Chemical-Looping Combustion Technology, CLC)에 대한 연구가 국내외적으로 활발하게 진행되고 있다.(중략)

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Particle Filtration by Ceramic Candle Filter at High Temperature Conditions (고온조건에서 세라믹 캔들필터에 부착된 입자제거)

  • 이동근;박석주;박영옥;유정인
    • Proceedings of the Korea Air Pollution Research Association Conference
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    • 2003.11a
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    • pp.473-474
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    • 2003
  • 최근 수 십 년간 발전소의 연소효율은 급속히 향상되어왔으나 $CO_2$, NOx 등과 같은 온실 유해가스의 제어에 관한 심각한 문제점들을 직면한 상태이다. 발전공정에서 발생되는 온실 유해가스의 저감 방법으로 매체순환식 가스 연소발전 공정이 최근에 새로운 대안으로 제시되고 있다 그러나 매체순환식 가스연소시스템 내부의 bead상 매체입자들이 입자간 혹은 입자와 반응기 벽간의 충돌과 마찰에 의하여 마모가 되게 되고, 그 결과 원하지 않는 량의 마모입자가 배출가스와 함께 배출되게 된다. 세라믹 캔들필터는 고온고압 연소공정 등에서 배출되는 가스내의 입자상 오염물질을 회수 처리하는데 효과적인 장치로써 널리 개발되고 있다. (중략)

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Solid Circulation Characteristics in a 3 kW Chemical-looping Combustor (3 kW급 매체순환식 가스연소기의 고체순환특성)

  • Ryu, Ho-Jung;Park, Jaehyeon;Kim, Hong-Ki;Park, Moon-Hee
    • Korean Chemical Engineering Research
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    • v.46 no.6
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    • pp.1057-1062
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    • 2008
  • To overcome disadvantages of conventional two interconnected fluidized beds system, a novel two-interconnected fluidized bed process has been adopted to 3kW chemical-looping combustor. This system has two bubbling beds, solid injection nozzles, solid conveying lines, and downcomers. In this study, effects of operating variables such as gas velocity through the solid injection nozzle, fluidizing velocity, solid height, geometry of solid intake hole, bed temperature on solid circulation rate have been investigated in a 3kW chemical-looping combustor. The solid circulation rate increased as the solid height and the opening area of solid intake holes increased. The effect of the fluidizing velocity and the bed temperature were negligible. Moreover, long-term operation of continuous solid circulation up to 50 hours has been performed to check feasibility of stable operation. The pressure drop profiles in the bubbling beds and the downcomers were maintained steadily and solid circulation was smooth and stable.

Redox activities of spinel type metal oxides as oxygen carriers (산소공여매체로서의 스핀넬 구조 금속산화물의 redox 활성 연구)

  • Jeong, J.H.;Park, J.W.;Joo, Y.K.;Park, J.S.;Jung, H.;Lee, H.T.;Yoon, W.L.
    • Proceedings of the Korea Society for Energy Engineering kosee Conference
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    • 2002.11a
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    • pp.191-194
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    • 2002
  • 매체 순환식 연소(Chemical-Looping Combustion, CLC)는 금속 산화물(산소공여매체, oxygen carrier)의 산소를 이용하여 화석연료를 산화(연료 연소 공정)시키고, 환원된 금속을 다시 산화(매체 산화 공정)시키는 간접적인 연소 공정의 하나이다. 이 방식은 온실효과의 주발생원인 $CO_2$를 원천적으로 회수할 수 있고, 또한 화염이 없는 상태에서 연소반응이 진행됨으로 thermal NOx의 발생을 미연에 방지할 수 있어 고효율의 환경친화적인 연소공정이다.(중략)

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Packed Bed Methane Chemical-Looping Reforming System Modeling for the Application to the Hydrogen Production (수소 생성을 위한 고정상 메탄 매체 순환 개질 시스템 모델링)

  • HA, JONGJU;SONG, SOONHO
    • Transactions of the Korean hydrogen and new energy society
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    • v.28 no.5
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    • pp.453-458
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    • 2017
  • A study on the modeling of the methane Chemical Looping Reforming system was carried out. It is aimed to predict the temperature and concentration behavior of the product through modeling of oxygen carrier fixed bed reactors composed of multiple stacks. In order to design the reaction system, first of all, the flow rate of the hydrogen to be produced was calculated. The flow rate ratio of the oxidation/reduction reactor was calculated considering the heat of reaction between adjacent reactors. Finally, in this paper, kinetic model including empirical coefficients was suggested.

Natural Gas Combustion Characteristics of Mass Produced Oxygen Carrier Particles for Chemical-looping Combustor in a Batch Type Fluidized Bed Reactor (회분식 유동층 반응기에서 매체순환식 가스연소기용 대량생산 산소공여입자들의 천연가스 연소특성)

  • Ryu, Ho-Jung;Kim, Kyung-Su;Park, Yeong-Seong;Park, Moon-Hee
    • Transactions of the Korean hydrogen and new energy society
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    • v.20 no.2
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    • pp.151-160
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    • 2009
  • Natural gas combustion characteristics of mass produced oxygen carrier particles were investigated in a batch type bubbling fluidized bed reactor. Five particles, NiO/bentonite, OCN601-650, OCN702-1100, OCN703-950, OCN703-1100 were used as oxygen carrier particles. Natural gas and air were used as reactants for reduction and oxidation, respectively. During reduction reaction, high fuel conversion and high $CO_2$ selectivity were achieved for most of oxygen carriers. During oxidation, NO emission was very low. These results indicate that inherent $CO_2$ separation and low NOx combustion are feasible for the natural gas fueled chemical-looping combustion system. Among the five oxygen carriers, OCN703-1100 particle was selected as the best candidate for demonstration of long-term operation in large-scale chemical-looping combustor from the viewpoints of fuel conversion, $CO_2$ selectivity, $CH_4$ concentration, and CO concentration.

Reduction Characteristics of Oxygen Carrier Particles for Chemical-looping Combustor with Different Fuels (매체순환식 가스연소기용 산소공여입자들의 연료별 연소특성)

  • Ryu, Ho-Jung;Kim, Kyung-Su;Park, Yeong-Seong;Park, Moon-Hee
    • Transactions of the Korean hydrogen and new energy society
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    • v.20 no.1
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    • pp.45-54
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    • 2009
  • Reduction reactivity and carbon deposition characteristics of three oxygen carrier particles(OCN01, OCN02, OCN03) have been investigated by using hydrogen, methane, syngas, and natural gas as fuels. For all particles, the maximum conversion, the oxygen transfer capacity, and the degree of carbon deposition increased as the reactive carbon contents increased. The reduction rate and the oxygen transfer rate increased as the moles of required oxygen per input gas increased. The change of maximum conversion, reduction rate, oxygen transfer capacity, oxygen transfer rate and degree of carbon deposition for different fuels can be explained consistently by using parameters such as the reactive carbon contents and the moles of require oxygen per input gas.