Hydrothermal liquefaction of biomass: Developments from batch to continuous process
Гидротермальное сжижение биомассы: развитие от периодического до непрерывного процесса
2014-10-24
SCID: 54.1/bm82d38d
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BiomassContinuous-flow processingHydrothermal liquefactionMass and energy balancesProcess scale-up
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Abstract (AI)
This review describes the recent results in hydrothermal liquefaction (HTL) of biomass in continuous-flow processing systems. Although much has been published about batch reactor tests of biomass HTL, there is only limited information yet available on continuous-flow tests, which can provide a more reasonable basis for process design and scale-up for commercialization. High-moisture biomass feedstocks are the most likely to be used in HTL. These materials are described and results of their processing are discussed. Engineered systems for HTL are described; however, they are of limited size and do not yet approach a demonstration scale of operation. With the results available, process models have been developed, and mass and energy balances determined. From these models, process costs have been calculated and provide some optimism as to the commercial likelihood of the technology.
Key Findings
1
Available continuous-flow results support development of process models and determination of mass and energy balances.
2
Continuous-flow hydrothermal liquefaction studies remain limited compared with batch-reactor research, constraining process design and commercial scale-up.
3
Existing engineered continuous-flow HTL systems are small and have not yet reached demonstration-scale operation.
4
High-moisture biomass feedstocks are identified as the most likely materials for hydrothermal liquefaction.
5
Model-based process cost estimates indicate promising commercial potential for hydrothermal liquefaction technology.
Research Object
continuous-flow hydrothermal liquefaction of high-moisture biomass feedstocks
Research Subject
process performance, modeling, scale-up, mass and energy balances, and economic feasibility for commercialization
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2014-10-24
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