• Title/Summary/Keyword: 마이크로웨이브 가스화

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Mineralogical and Drying Characteristics of Chinese Low Rank Coal for Coal Gasification (석탄가스화를 위한 중국산 저급 석탄의 광물학적 및 건조 특성)

  • Park, Chong-Lyuck;Kim, Byoung-Gon;Jeon, Ho-Seok;Kim, Sang-Bae;Park, Suk-Hwan;Lee, Jae-Ryeong
    • Journal of the Mineralogical Society of Korea
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    • v.23 no.3
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    • pp.199-209
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    • 2010
  • Coal gasification technology in the sector of domestic clean coal technologies is being into the limelight since recent dramatic rise of international oil price. In this study, we used a low rank coal from Inner Mongolia, China as a starting material for gasification. Various properties including optical, mineralogical, X-ray spectroscopic, X-ray diffraction, and drying property were measured and tested in order to estimate the suitability of the coal to gasification. The coal was identified as a brown coal of lignite group from the measurement of vitrinite reflectance. The coal has very low slagging and fouling potentials, and the ignition temperature is about $250^{\circ}C$. The major impurities consist of quartz, siderite, and clay minerals. Additionally, the coal had moisture content above 28%. Tests for finding effective drying method showed that the microwave drying is more effective than thermal drying.

Characteristics of Carbon Dioxide Gasification for Sewage Sludge in Microwave (마이크로웨이브에 의한 하수 슬러지 이산화탄소 가스화 특성)

  • JEONG, BYEORI;YOON, SOOHYUK;CHUN, YOUNGNAM
    • Transactions of the Korean hydrogen and new energy society
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    • v.27 no.2
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    • pp.192-200
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    • 2016
  • A characteristics of microwave drying-gasification was analyzed for converting a dewatered sewage sludge generated a wastewater treatment plant. Gas (60%) was the largest component of the product of microwave gasification, followed by sludge char (33%) and tar (2%). The main components of the producer gas were hydrogen (33%) and carbon monoxide (40%), and there was some methane and hydrocarbons ($C_2H_4$, $C_2H_6$, $C_3H_8$). Larger nitrogen and smaller oxygen amounts were generated. Gravimetric tar generated $414g/m^3$. This means a total tar which is a heavy hydrocarbons from the volatile organic substance in the sewage sludge. Selected light tars were benzene, anthracene, naphthalene, pyrene, showing lower concentrations as 2.62, 0.37, 0.49, $0.28g/m^3$, respectively. Sludge char has larger meso pores which is a mean pore size of $50.85{\AA}$ and has high adsorptivity. An amount of adsorption was $228.71cm^3/g$, showing higher quantity than acommercial adsorbers. This indicates that the gas obtained from the microwave gasification of wet sewage sludge can be used as fuel, but the heavy tar in the gas must be treated. Sludge char can be used as a tar reduction adsorbent in the process, and then burns as a solid fuel.

The Characteristics of Coal Gasification using Microwave Plasma (마이크로웨이브 플라즈마를 이용한 석탄가스화 특성 연구)

  • Kim, Doo-Il;Lee, Jae-Goo;Kim, Yong-Ku;Yoon, Sang-Jun
    • Transactions of the Korean hydrogen and new energy society
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    • v.23 no.1
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    • pp.93-99
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    • 2012
  • The investigation of clean and environment-friendly coal utilization technology is actively progressed due to high oil price and serious climate change caused by greenhouse gas emissions. In this study, the plasma gasification was performed using a 6kW microwave plasma unit under various reaction conditions: the particle sizes of coal ($45{\mu}m-150{\mu}m$), $O_2$/fuel ratio (0 - 1.3), and steam/fuel ratio (0 - 1.5). The $H_2$ composition decreases with decreasing coal particle size. With increasing $O_2$/fuel ratio, the $H_2$ composition in the syngas decreased while the $CO_2$ composition increased. As the steam/fuel ratio increased from 0 to 1.5, the $H_2$ composition in the syngas increased while the $CO_2$ composition decreased. From the results, it was proven that the variation of syngas composition greatly affected by $O_2$/fuel ratio than steam/fuel ratio. The $H_2$ composition in the syngas, carbon conversion, and cold gas efficiency increased with increasing plasma power.

CO2 Gasification of Carbon Materials by Microwave Heating (마이크로파 가열에 의한 탄소물질의 CO2 가스화)

  • SONG, HEE GAEN;KIM, EUN HYUK;CHUN, YOUNG NAM
    • Transactions of the Korean hydrogen and new energy society
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    • v.30 no.1
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    • pp.35-42
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    • 2019
  • Recently, the gradual increase in energy acceptance is mostly satisfied by fossil fuels, but research and development of renewable energy sources are attracting attention due to fossil fuel supply and greenhouse gas problem. The disadvantage is that renewable energy can not be produced continuously. This being so, energy storage is an important technology in renewable energy. In this study, microwave was used to convert carbon receptor-carbon dioxide to gas fuel.

A Study on Conversion of Methane to C2+ Hydrocarbons by a Microwave Plasma (마이크로웨이브 플라즈마에 의한 메탄의 C2+계 탄화수소로의 전환반응에 관한 연구)

  • Cho, Wonihl;Baek, Youngsoon;Pang, Hyosun;Kim, Young Chai;Moon, Sei-ki
    • Applied Chemistry for Engineering
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    • v.9 no.1
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    • pp.94-100
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    • 1998
  • Methane, the major constituent of natural gas, had been converted to higher hydrocarbons by a microwave plasma. The yield of C2+ product could be increased from 29.2% to 42.2% with increasing plasma power(40~120 watt) and decreasing flow rate(40~5 mL/min) of methane. With catalyst, the selectivities of ethylene and increased while yield of C2+ remaining constant. Among various catalysts, Fe catalyst showed the highest ethylene selectivity of 30%. A natural gas could produce more C2+ than a pure methane. This is due to high reactivity of ethane and propane in the natural gas.

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플라즈마 처리를 통한 폴리머애자의 표면개선

  • Choe, Won-Seok;Jeong, Yong-Ho;Kim, Seong-Yun;Jeong, Yeon-Ho;Hwang, Hyeon-Seok;Kim, Yeong-Ju;Park, Geon-Sik
    • Proceedings of the Korean Vacuum Society Conference
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    • 2014.02a
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    • pp.455.1-455.1
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    • 2014
  • 폴리머 애자는 기존 사기 재질 애자에 제조비용과 설치비용이 저렴하며 훌륭한 내구성과 경량화에 따른 취급의 편의성으로 최근 기존 애자를 대체하기 위한 연구와 실증이 활발하다. 그러나 폴리머 애자는 재질의 한계로 인해 유증에 따른 오염에 취약한 단점을 가져 터널내부와 전기철도차량에 사용하는 것에 있어 한계를 가진다. 폴리머 애자의 활용성을 높이기 위해 본 연구에서는 폴리머 애자의 표면을 플라즈마 처리를 하여 표면개선을 하는 연구를 진행하였다. 반응가스로는 산소, 질소, 수소, 아르곤 등의 가스를 사용하였고, 플라즈마 소스는 마이크로웨이브 플라즈마와 DC 플라즈마를 사용하였다.

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A Trend of Producing Technologies of the Ashless Hyper Coal as a Clean Energy Source (청정 에너지원 하이퍼 콜의 제조 기술 동향)

  • Kim, Seong Ho;Lee, Choong-Gon
    • Journal of Energy Engineering
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    • v.21 no.4
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    • pp.325-338
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    • 2012
  • Currently, there are the technologically urgent needs of fabricating the hyper coal (HC) based on the approach to extracting mainly effective organics from low rank coals (LRCs), because some industrial countries pursue global sustainability dealing with hot issues such as local energy supply security as well as global warming. In this study, as of the fabrication of clean HCs via LRCs upgrading, we comprehensively review the R&D status of two solvent extraction technologies, namely, Ohm heating (OH) and microwave irradiation (MI) extraction processes on the basis of the performance indicator such as a HC extraction yield.