首页> 外文会议>Clearwater clean coal conference;International technical conference on clean coal fuel systems >THE SYNGAS CHEMICAL LOOPING AND COAL DIRECT CHEMICAL LOOPING PROCESSES: PILOT-SCALE TEST UNIT DEVELOPMENT AND OPERATION
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THE SYNGAS CHEMICAL LOOPING AND COAL DIRECT CHEMICAL LOOPING PROCESSES: PILOT-SCALE TEST UNIT DEVELOPMENT AND OPERATION

机译:SYNGAS化学环和煤直接化学环过程:中试试验装置的开发和运行

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To achieve the U.S. government's goal of 28% CO_2 emission reduction by 2025, the development of various high efficiency carbon capture and sequestration (CCS) technologies has become high-interest fields of research. The Ohio State University (OSU) has successfully developed a platform of chemical looping technologies for the conversion of multiple carbonaceous fuels such as coal, natural gas, biomass, and synthesis gas to an expansive portfolio of end products including electricity/steam, hydrogen, liquid fuels, and other high value chemicals without the need for cost intensive gas-gas separation techniques such as the air separation unit. The presented work will discuss two specific chemical looping technology platforms in development at the pilot scale - the syngas chemical looping (SCL) and coal direct chemical looping (CDCL) technologies. Both technologies use a unique counter-current moving bed reducer reactor design to fully convert the carbonaceous feedstock to high purity CO_2 with a minimal solid circulation rate.
机译:为了实现美国政府到2025年将CO_2排放量减少28%的目标,各种高效碳捕集与封存(CCS)技术的开发已成为研究的热点。俄亥俄州立大学(OSU)已成功开发了一种化学循环技术平台,可将多种含碳燃料(例如煤,天然气,生物质和合成气)转化为广泛的最终产品组合,包括电/蒸汽,氢气,液体燃料和其他高价值化学品,而无需使用成本高昂的气体-气体分离技术,例如空气分离装置。提出的工作将讨论处于试点规模的两个特定的化学循环技术平台,即合成气化学循环(SCL)和煤直接化学循环(CDCL)技术。两种技术都采用独特的逆流移动床还原反应器设计,以最小的固体循环速率将含碳原料完全转化为高纯度的CO_2。

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