Pacific Northwest National Laboratory, P.O. Box 999, Richland, WA 99352, USA.
Energy Research Institute, University of Leeds, Leeds LS2 9JT, UK.
Bioresour Technol. 2015 Feb;178:147-156. doi: 10.1016/j.biortech.2014.09.132. Epub 2014 Oct 13.
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.
本文综述了生物质在连续流处理系统中进行水热液化(HTL)的最新研究成果。尽管已经有很多关于生物质 HTL 批式反应器试验的报道,但关于连续流试验的信息却十分有限,而后者可为工艺设计和商业化放大提供更合理的依据。高水分生物质原料最有可能用于 HTL。本文对这些材料进行了描述,并讨论了它们的处理结果。文中还介绍了 HTL 的工程化系统,但这些系统的规模有限,还远未达到示范运行规模。根据现有的研究结果,已经开发出了工艺模型,并确定了质量和能量平衡。通过这些模型,计算出了工艺成本,为该技术的商业化前景提供了一些乐观依据。