可再生能源
生物量(生态学)
环境科学
球磨机
持续性
废物管理
化石燃料
碳纤维
可再生资源
材料科学
制浆造纸工业
温室气体
工程类
生态学
复合材料
复合数
生物
电气工程
作者
Feng Shen,Xinni Xiong,Junyan Fu,Jirui Yang,Mo Qiu,Xinhua Qi,Daniel C.W. Tsang
标识
DOI:10.1016/j.rser.2020.109944
摘要
Abstract Biomass resources have been considered as one of the most promising renewable feedstocks to replace fossil resources. However, valorization of biomass is still challenging due to concerns about environmental sustainability and low efficiency of conversion processes. Mechanical ball milling technology, which has emerged as an efficient and environmentally sound alternative to traditional method, can overcome this obstacle to facilitate biomass valorization. Mechanical energy in the ball milling process can induce chemical reactions of biomass in solvent-less/-free conditions. This work reviews the latest advances in the mechanochemical conversion of biomass into chemicals and carbon materials. The initial pretreatment of biomass, catalytic transformation process of biomass, and synthesis of biomass-derived carbon materials (ordered mesoporous carbons, hierarchically porous carbons, carbon/metal composites, etc.) are discussed in detail. Mechanisms, development history, key influencing factors, and technology readiness level of ball milling on biomass valorization are also elucidated. Limitations and opportunities associated with this green technology are highlighted for future research directions.
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