Advancements in biomass gasification and catalytic tar-cracking technologies

Yong-hong Niu , Zheng-yang Chi , Ming Li , Jia-zheng Du , Feng-tao Han
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Abstract

Biomass, heralded as sustainable “green coal”, plays a crucial role in energy conservation and achieving “dual carbon” objectives through clean conversion. This paper reviews advancements in biomass catalytic gasification, a technology pivotal for converting biomass to hydrogen-rich fuel and syngas. It highlights the efficiency gains afforded by various catalysts, including natural minerals, alkali metals, nickel-based compounds, zeolites, and rare earth-modified composites. The focus is on their influence on hydrogen output, syngas quality, and tar reduction. The synthesis of these insights paves the way for novel catalyst development and optimized gasification processes, hence advancing catalytic gasification technology toward more sustainable energy solutions.

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生物质气化与催化焦油裂化技术进展
生物质被誉为可持续的“绿色煤炭”,在通过清洁转化实现节能和“双碳”目标方面发挥着至关重要的作用。生物质催化气化是将生物质转化为富氢燃料和合成气的关键技术,本文综述了生物质催化气化的研究进展。它强调了各种催化剂所带来的效率提高,包括天然矿物、碱金属、镍基化合物、沸石和稀土改性复合材料。重点是它们对氢气产量、合成气质量和减少焦油的影响。这些见解的综合为新型催化剂的开发和优化气化过程铺平了道路,从而推动催化气化技术朝着更可持续的能源解决方案发展。
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来源期刊
材料导报:能源(英文)
材料导报:能源(英文) Renewable Energy, Sustainability and the Environment, Nanotechnology
CiteScore
13.00
自引率
0.00%
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0
审稿时长
50 days
期刊最新文献
Outside Front Cover Contents Advancements in biomass gasification and catalytic tar-cracking technologies Ionic buffer layer design for stabilizing Zn electrodes in aqueous Zn-based batteries Novel N-doped carbon nanotubes impregnated Mn spheres with polydopamine coating as an efficient polysulfide immobilizer for Li-S batteries
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