Ruiz Héctor A, Galbe Mats, Garrote Gil, Ramirez-Gutierrez Diana M, Ximenes Eduardo, Sun Shao-Ni, Lachos-Perez Daniel, Rodríguez-Jasso Rosa M, Sun Run-Cang, Yang Bin, Ladisch Michael R
Biorefinery Group, Food Research Department, Faculty of Chemistry Sciences, Autonomous University of Coahuila, Saltillo, Coahuila 25280, Mexico.
Department of Chemical Engineering, Lund University, P.O. Box 124, SE-22100 Lund, Sweden.
Bioresour Technol. 2021 Dec;342:125961. doi: 10.1016/j.biortech.2021.125961. Epub 2021 Sep 20.
Hydrothermal processes are an attractive clean technology and cost-effective engineering platform for biorefineries based in the conversion of biomass to biofuels and high-value bioproducts under the basis of sustainability and circular bioeconomy. The deep and detailed knowledge of the structural changes by the severity of biomasses hydrothermal fractionation is scientifically and technological needed in order to improve processes effectiveness, reactors designs, and industrial application of the multi-scale target compounds obtained by steam explosion and liquid hot water systems. The concept of the severity factor [log (R)] established>30 years ago, continues to be a useful index that can provide a simple descriptor of the relationship between the operational conditions for biomass fractionation in second generation of biorefineries. This review develops a deep explanation of the hydrothermal severity factor based in lignocellulosic biomass fractionation with emphasis in research advances, pretreatment operations and the applications of severity factor kinetic model.
水热过程是一种有吸引力的清洁技术,也是生物炼制中具有成本效益的工程平台,其基础是在可持续性和循环生物经济的前提下,将生物质转化为生物燃料和高价值生物产品。为了提高工艺效率、优化反应器设计以及实现通过蒸汽爆破和液态热水系统获得的多尺度目标化合物的工业应用,从科学和技术角度而言,深入且详细地了解生物质水热分级的强度所引起的结构变化是很有必要的。30多年前建立的强度因子[log (R)]概念,仍然是一个有用的指标,它可以简单描述第二代生物炼制中生物质分级操作条件之间的关系。本综述深入解释了基于木质纤维素生物质分级的水热强度因子,重点介绍了研究进展、预处理操作以及强度因子动力学模型的应用。