Schlee Philipp, Tarasov Dmitry, Rigo Davide, Balakshin Mikhail
Department of Bioproducts and Biosystems, Aalto University, Vuorimiehentie 1, Espoo, 02150, Finland.
ChemSusChem. 2023 Sep 22;16(18):e202300549. doi: 10.1002/cssc.202300549. Epub 2023 Jul 17.
Our recently reported AquaSolv Omni (AqSO) process shows great potential as a parameter-controlled type of biorefinery, which allows tuning of structure and properties of the products towards their optimal use in high-value applications. Herein, a comprehensive NMR (quantitative C, P, and 2D heteronuclear single-quantum coherence) structural characterization of AqSO lignins is reported. The effect of the process severity (P-factor) and liquid-to-solid ratio (L/S) on the structure of the extracted lignins has been investigated and discussed. Low severity (P-factor in the range 400-600) and L/S=1 led to the isolation of less degraded lignin with a higher β-O-4 content up to 34/100 Ar. Harsher processing conditions (P-factor=1000-2500) yielded more condensed lignins with a high degree of condensation up to 66 at P-factor=2000. New types of lignin moieties, such as alkyl-aryl and alkyl-alkyl chemical bonds together with novel furan oxygenated structures have been identified and quantified for the first time. In addition, the formation of lignin carbohydrate complexes bonds has been hypothesized at low severity and L/S. Based on the obtained data we were able to formulate a possible outlook of the occurring reactions during the hydrothermal treatment. Overall, such detailed structural information bridges the gap from process engineering to sustainable product development.
我们最近报道的AquaSolv Omni(AqSO)工艺作为一种参数可控型生物精炼工艺显示出巨大潜力,该工艺能够针对高价值应用中产品的最佳用途调整其结构和性能。本文报道了AqSO木质素的全面核磁共振(定量碳、磷和二维异核单量子相干)结构表征。研究并讨论了工艺强度(P因子)和液固比(L/S)对提取木质素结构的影响。低强度(P因子在400 - 600范围内)和L/S = 1导致分离出降解程度较低、β - O - 4含量较高(高达34/100 Ar)的木质素。更苛刻的加工条件(P因子 = 1000 - 2500)产生了缩合程度更高的缩合木质素,在P因子 = 2000时缩合度高达66。首次鉴定并定量了新型木质素部分,如烷基 - 芳基和烷基 - 烷基化学键以及新型呋喃氧化结构。此外,在低强度和L/S条件下推测了木质素碳水化合物复合物键的形成。基于获得的数据,我们能够阐述水热处理过程中发生反应的可能前景。总体而言,如此详细的结构信息填补了从工艺工程到可持续产品开发之间的差距。