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Developing Oxygen Carriers for Chemical Looping Biomass Processing: Challenges and Opportunities

机译:为化学循环开发氧载体生物质处理:挑战和机遇

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摘要

Among the various thermochemical biomass conversion pathways, chemical looping gasification and chemical looping reforming, collectively known as chemical looping biomass processing (CLBP), offers numerous advantages, including the generation of renewable hydrogen, high exergy efficiency, inherent carbon capture, and process intensification. Like all other chemical looping applications, oxygen carriers play key roles in determining the effectiveness and efficiency of CLBP. In addition to the requirement for high oxygen transfer capacity, the chemical activity of the lattice oxygen also needs to be modulated to steer the selectivity of CLBP toward syngas. Furthermore, it is desirable for the CLBP oxygen carriers to possess catalytic activities that accelerate the conversion of biomass-based feedstocks. However, despite the large volume of relevant research publications, the diversity in oxygen carrier formulations, biomass compositions, and test conditions used leads to mixed views regarding the structural-functional relationships between oxygen carriers and their performance during CLBP. To address the above knowledge gap, this review presents a systematic, but non-exhaustive summary of the development and evaluation of oxygen carriers for CLBP applications, with an aim to elucidate the rational design principles and operation parameters toward optimal process efficiency.
机译:在不同的热化学生物质能转换途径,化学循环气化和化学循环改革,统称为化学循环生物量处理(CLBP),提供了众多的优势,包括可再生氢的生成,(火用)效率高,固有的碳捕获,和过程强化。化学循环应用,氧载体扮演关键角色在决定效率CLBP和效率。要求高氧转移能力,晶格氧的化学活动需要调制引导的选择性CLBP合成气。CLBP氧载体具有催化加快转换的活动生质原料。大量相关研究的出版物,氧载体的多样性配方,生物质成分、使用和测试条件导致混合的观点有关structural-functional之间的关系氧载体及其性能CLBP。审查提供了一个系统,但不完的开发和评价的总结氧载体CLBP应用,旨在阐明合理设计原则和操作参数优化过程效率。

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