Jasiukaitytė-Grojzdek Edita, Huš Matej, Grilc Miha, Likozar Blaž
Department of Catalysis and Chemical Reaction Engineering, National Institute of Chemistry, Hajdrihova 19, 1000 Ljubljana, Slovenia.
ACS Sustain Chem Eng. 2020 Nov 30;8(47):17475-17486. doi: 10.1021/acssuschemeng.0c06099. Epub 2020 Nov 13.
In this study, acidolysis of benzyl phenyl ether (BPE), being a representative lignin model compound with the α-O-4 linkage, was examined in γ-valerolactone (GVL) and a GVL/water mixture, each time acidified with sulfuric acid. The product distribution was strongly affected by water used as a cosolvent, which was found to be advantageous by inhibiting the formation of larger structures and introducing reactive OH groups instead. The experimental results indicate the GVL/water ratio as an important parameter to attain an optimal hydrolytic α-ether bond cleavage. Differences between the organosolv lignins (molecular weight distribution, OH group content, and structural features with reaction time), isolated under moderate reaction conditions, supported the findings obtained using BPE. A beneficial effect of the added water is reflected in the higher aliphatic OH group content and less intact structure. Analysis of the reaction mechanism represents an initial step toward kinetics and structure-activity correlation of biorefining industrial resources.
在本研究中,对具有α-O-4键的代表性木质素模型化合物苄基苯基醚(BPE)在γ-戊内酯(GVL)和GVL/水混合物中进行酸解,每次均用硫酸酸化。作为共溶剂的水对产物分布有强烈影响,发现水通过抑制更大结构的形成并引入反应性OH基团而具有优势。实验结果表明,GVL/水比例是实现最佳水解α-醚键裂解的重要参数。在适度反应条件下分离得到的有机溶剂木质素(分子量分布、OH基团含量以及随反应时间变化的结构特征)之间的差异,支持了使用BPE所获得的研究结果。添加水的有益效果体现在较高的脂肪族OH基团含量和较少的完整结构上。对反应机理的分析是迈向生物精炼工业资源动力学和构效关系的第一步。