揭示热解-气化技术从生物质和塑料废料中生产富氢合成气的潜力

IF 9.9 1区 工程技术 Q1 ENERGY & FUELS Energy Conversion and Management Pub Date : 2024-09-12 DOI:10.1016/j.enconman.2024.118997
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引用次数: 0

摘要

该论文以生物质和塑料废物原料为重点,强调了氢作为一种清洁和可持续能源正在显现的重要性。论文探讨了不同气化操作(包括共气化、热解-气化和共热解-气化)在从生物质和塑料废料中生产富氢合成气方面的有效性。论文还探讨了该工艺的催化特性,研究了各种金属催化剂(包括碱土金属催化剂)和天然矿物催化剂在提高富氢合成气生成方面的功能。此外,还广泛研究了关键操作因素(包括共气化反应器的协同作用、气化剂的影响、温度、预处理效果以及气化反应器的类型)对氢气产量和质量的影响。生物质和塑料废弃物的热解气化不仅解决了废弃物管理问题,还创造了生产清洁能源的新机会,是实现循环经济的重要一步。生物质和塑料废物原料、各种类型的气化技术及其反应和机理、催化剂的影响以及其他参数的影响都会影响热解-气化过程中的整体氢气产量。该综述提供了一种新方法,通过结合反应器设计和工艺优化方面的最新进展,提高利用废物制氢的可持续性和效率。它还确定了未来的研究方向和实际应用。
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Unveiling the potential of pyrolysis-gasification for hydrogen-rich syngas production from biomass and plastic waste

The paper highlights the emerging importance of hydrogen as a clean and sustainable energy with a focus on biomass and plastic waste feedstocks. The effectiveness of different gasification operations, including co-gasification, pyrolysis-gasification, and co-pyrolysis-gasification in producing hydrogen-rich syngas from biomass and plastic wastes, has been explored. The paper also probes the catalytic characteristics of the process, examining the functions of various metal catalysts, including alkaline earth metallic catalysts, and natural mineral catalysts for enhancing the hydrogen-rich syngas generation. Further, the effect of key operating factors including the synergy in co-gasification reactors, the influence of gasifying agents, temperatures, pretreatment effects, and types of gasification reactors on hydrogen yield and quality were extensively examined. The pyrolysis-gasification of biomass and plastic waste not only solves waste management issues but also creates new opportunities to produce clean energy, which is a major step towards a circular economy. Biomass and plastic waste feedstocks, various types of gasification techniques and their reactions and mechanisms, the effects of catalysts, as well as the effects of other parameters influence the overall hydrogen production during pyrolysis-gasification. The review offered a novel approach to improving the sustainability and efficiency of hydrogen production from waste by incorporating recent advances in reactor design and process optimization. It also identifies future research directions and practical applications.

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来源期刊
Energy Conversion and Management
Energy Conversion and Management 工程技术-力学
CiteScore
19.00
自引率
11.50%
发文量
1304
审稿时长
17 days
期刊介绍: The journal Energy Conversion and Management provides a forum for publishing original contributions and comprehensive technical review articles of interdisciplinary and original research on all important energy topics. The topics considered include energy generation, utilization, conversion, storage, transmission, conservation, management and sustainability. These topics typically involve various types of energy such as mechanical, thermal, nuclear, chemical, electromagnetic, magnetic and electric. These energy types cover all known energy resources, including renewable resources (e.g., solar, bio, hydro, wind, geothermal and ocean energy), fossil fuels and nuclear resources.
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