Institute of Biotechnology and Agribusiness, Department of Chemical Engineering, Universidad Nacional de Colombia sede Manizales, Manizales 170001, Colombia.
Molecules. 2023 Jan 28;28(3):1278. doi: 10.3390/molecules28031278.
Biorefinery feasibility is highly influenced by the early design of the best feedstock transformation pathway to obtain value-added products. Pretreatment has been identified as the critical stage in biorefinery design since proper pretreatment influences subsequent reaction, separation, and purification processes. However, many pretreatment analyses have focused on preserving and valorizing six-carbon sugars for future use in bioconversion processes, leaving aside fractions such as hemicellulose and lignin. To date, there has been no pretreatment systematization for the removal of lignocellulosic fractions. This work defines pretreatment efficacy through operational, economic, environmental, and social indicators. Thus, using the data reported in the literature, as well as the results of the simulation schemes, a multi-criteria weighting of the best-performing schemes for the isolation or removal of cellulose, hemicellulose, and lignin was carried out. As a main result, it was concluded that dilute acid is the most effective for cellulose isolation and hemicellulose removal for producing platform products based on six- and five-carbon sugars, respectively. Additionally, the kraft process is the best methodology for lignin removal and its future use in biorefineries. The results of this work help to elucidate a methodological systematization of the pretreatment efficacy in the design of biorefineries as an early feasibility stage considering sustainability aspects.
生物炼制的可行性在很大程度上受到最佳原料转化途径设计的早期影响,以获得增值产品。预处理已被确定为生物炼制设计的关键阶段,因为适当的预处理会影响后续的反应、分离和纯化过程。然而,许多预处理分析都集中在保留和利用六碳糖,以备将来用于生物转化过程,而忽略了半纤维素和木质素等部分。迄今为止,还没有针对木质纤维素部分去除的预处理系统化方法。这项工作通过操作、经济、环境和社会指标来定义预处理效果。因此,使用文献中报告的数据以及模拟方案的结果,对用于分离或去除纤维素、半纤维素和木质素的最佳方案进行了多标准加权。作为主要结果,得出的结论是,稀酸是最有效的纤维素分离和半纤维素去除方法,分别用于生产基于六碳糖和五碳糖的平台产品。此外,硫酸盐法是去除木质素及其在生物炼制厂未来应用的最佳方法。这项工作的结果有助于阐明在考虑可持续性方面的早期可行性阶段的生物炼制设计中的预处理效果的方法系统化。