水热液化
液化
生物净化
微波食品加热
工艺工程
过程(计算)
流动化学
微波化学
连续流动
纳米技术
计算机科学
生化工程
生物炼制
材料科学
生物燃料
工程类
废物管理
微波辐射
电信
操作系统
岩土工程
作者
Xiao Jiang,Rui Yao,Jianchun Jiang,Kui Wang
标识
DOI:10.1002/cssc.202500416
摘要
Microwave‐assisted hydrothermal liquefaction (MA‐HTL) is increasingly recognized as an innovative biorefining process. It converts a diverse array of biomass feedstocks into valuable products. To date, the majority of research has primarily concentrated on the liquefaction reaction within small batch reactor, systematically screening processing parameters to maximize product yield. However, the understanding of the specific interactions between microwave and liquefaction processes remains constrained. Furthermore, it is essential to explore the advantages that promote the scale‐up of MA‐HTL reactors for industrial applications, particularly in light of the unique characteristics associated with microwave technology. This review aims to systematically compile and elucidate the existing research on microwave‐medium interactions in liquefaction systems, highlighting the critical relationships involved in microwave field and reaction system. We provide an overview of both microwave batch and continuous flow reactors, by the microwave and liquefaction processes on reactor design. Based on the recent technological advances, the future directions for the development of MA‐HTL technologies are predicted.
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