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首页> 外文期刊>Energy Conversion & Management >Chemical looping deoxygenated gasification: An implication for efficient biomass utilization with high-quality syngas modulation and CO_2 reduction
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Chemical looping deoxygenated gasification: An implication for efficient biomass utilization with high-quality syngas modulation and CO_2 reduction

机译:化学环路脱氧气化:有效的高质量合成气调制和CO_2减少的有效生物质利用的含义

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摘要

Chemical looping gasification is a promising technology for biomass utilization. However, the biomass-derived products contain tar and CO2, which seriously affects the syngas quality and hinders its development. A new approach, chemical looping deoxygenated gasification (CLDG), was proposed for high-quality, H-2/CO-tunable syngas generation with CO2 utilization via redox looping of CaO + Fe - Ca2Fe2O5. The CLDG process involves a deoxygenation reactor (DR) and a regeneration reactor (RR). Fe-0 continuously reduces the oxygen-containing species to drive high-quality syngas production in the DR, and the oxidized oxygen carrier (Fe3+) can be reduced under CO in the RR. A thermodynamic simulation was conducted to verify the feasibility of CLDG using Aspen Plus. The effects of DR and RR temperatures, of the molar ratios of Fe/O-bio, CO2/C, H2O/C, and (C + CO)/Fe on the syngas quality, H-2/CO molar ratio, and the efficiency of gasification, chemical looping deoxygenation, and CO2 reduction were investigated intensively and optimized to guide the CLDG process. The results indicate that CLDG can significantly improve the quality of syngas with various H-2-to-CO syngas modulations and CO2 reduction, obtaining a lower heating value (LHV) of 9.07 MJ/m(3), a gasification efficiency of 96.31%, a CO2 reduction efficiency of 44.51%, an H utilization efficiency of 79.52%, and a chemical looping deoxygenation efficiency of 17.55%.
机译:化学环路气化是一种用于生物质利用的有希望的技术。然而,生物质衍生的产品含有焦油和二氧化碳,这严重影响了合成气质量并阻碍了其发展。提出了一种新的方法,化学环脱氧气化(CLDG),用于高质量的H-2 /共调谐合成气,通过CAO + Fe < - -> Ca2F2O5的氧化还原循环产生CO2利用。 CLDG方法涉及脱氧反应器(DR)和再生反应器(RR)。 Fe-0连续减少含氧物质以驱动DR中的高质量合成气,并且可以在RR中的CO中降低氧化氧载体(Fe3 +)。进行了热力学模拟以验证使用Aspen Plus的CLDG的可行性。 DR和RR温度的影响,Fe / O-Bio,CO 2 / C,H 2 O / C和(C + CO)/ Fe对合成气质量,H-2 / Co摩尔比和摩尔比的影响积极研究气化效率,化学环状脱氧和CO2还原,并优化以引导CLDG方法。结果表明,CLDG可以显着提高各种H-2-TO-CO合成气调制和CO2还原的合成气的质量,得到较低的加热值(LHV)为9.07mJ / m(3),气化效率为96.31% ,二氧化碳降低效率为44.51%,H利用效率为79.52%,化学环脱氧效率为17.55%。

著录项

  • 来源
    《Energy Conversion & Management》 |2020年第7期|112913.1-112913.11|共11页
  • 作者单位

    Cent South Univ Sch Energy Sci & Engn Changsha 410083 Peoples R China;

    Cent South Univ Sch Energy Sci & Engn Changsha 410083 Peoples R China|Shenyang Univ Minist Educ Key Lab Ecorestorat Reg Contaminated Environm Shenyang 110044 Peoples R China;

    Univ Minnesota Dept Chem Engn Duluth MN 55812 USA;

    Cent South Univ Sch Energy Sci & Engn Changsha 410083 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Chemical looping; Deoxygenated gasification; Oxygen carrier; Syngas modulation; CO2 reduction;

    机译:化学环;脱氧气化;氧载体;合成气调制;CO2减少;

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