Laboratory of Simulation of Industrial Processes, Department of Industrial Management and Technology, University of Piraeus, 80 Karaoli & Dimitriou, GR 18534, Piraeus, Greece.
Laboratory of Simulation of Industrial Processes, Department of Industrial Management and Technology, University of Piraeus, 80 Karaoli & Dimitriou, GR 18534, Piraeus, Greece.
Bioresour Technol. 2022 Jan;343:126158. doi: 10.1016/j.biortech.2021.126158. Epub 2021 Oct 19.
Organosolv pretreatment can be considered as the core of the lignocellulosic biomass fractionation within the biorefinery concept. Organosolv facilitates the separation of the major fractions (cellulose, hemicelluloses, lignin), and their use as renewable feedstocks to produce bioenergy, biofuels, and added-value biomass derived chemicals. The efficient separation of these fractions affects the economic feasibility of the biorefinery complex. This review focuses on the simulation of the organosolv pretreatment and the optimization of (i) feedstock delignification, (ii) sugars production (mainly from hemicelluloses), (iii) enzymatic digestibility of the cellulose fraction and (iv) quality of lignin. Simulation is used for the technoeconomic optimization of the biorefinery complex. Simulation and optimization implement a holistic approach considering the efficient technological, economic, and environmental performance of the biorefinery operational units. Consequently, an optimized organosolv stage is the first step for a sustainable, economically viable biorefinery complex in the concept of industrial ecology and zero waste circular economy.
有机溶剂预处理可以被视为生物炼制概念中木质纤维素生物质分离的核心。有机溶剂预处理有助于主要成分(纤维素、半纤维素、木质素)的分离,以及将其用作可再生原料来生产生物能源、生物燃料和增值生物质衍生化学品。这些成分的有效分离影响生物炼制综合体的经济可行性。本综述重点介绍了有机溶剂预处理的模拟和(i)原料脱木质素、(ii)糖的生产(主要来自半纤维素)、(iii)纤维素部分的酶可消化性和(iv)木质素质量的优化。模拟用于生物炼制综合体的技术经济优化。模拟和优化采用整体方法,考虑生物炼制操作单元的高效技术、经济和环境性能。因此,优化的有机溶剂预处理阶段是工业生态学和零废物循环经济概念中可持续、经济可行的生物炼制综合体的第一步。