Zhu Guozhi, Xie Hongmei, Ye Dawei, Zhang Junjie, Huang Kangping, Liao Bing, Chen Jiazhi
Institute of Chemical Engineering, Guangdong Academy of Sciences Guangzhou 510665 China
Department of Chemical Engineering, Maoming Vocational and Technical College Maoming 525027 China.
RSC Adv. 2024 Feb 8;14(8):5069-5076. doi: 10.1039/d3ra08052h. eCollection 2024 Feb 7.
The sustainable production of catechol derivatives is a challenging task. Catechyl (C) and guaiacyl (G) lignins coexisting in waste tung nutshells are promising feedstocks to form valuable catechol derivatives, but the depolymerization of C/G lignin typically involves a catalytic reductive process that cannot produce these oxidized aromatic chemicals. Herein, we demonstrated that the sustainable production of catechol derivative aldehydes and acids from C/G lignin could be achieved through a heterogeneous copper-catalyzed oxidative process. Under optimized conditions, the Cu-NC-800 catalyst affords a 43.5 mg g yield (8.9 wt%, based on Klason lignin) of aromatic aldehydes (protocatechuic aldehyde, vanillin) and acids (protocatechuic acid, vanillic acid). XRD and XPS analyses showed that CuO and CuO may be the active species during the heterogeneous oxidation of the Cu-NC-800 catalyst. This study opens new opportunities for the sustainable production of catechol derivatives from C/G-type lignin.
儿茶酚衍生物的可持续生产是一项具有挑战性的任务。废弃桐壳中共存的儿茶酚基(C)和愈创木酚基(G)木质素是形成有价值的儿茶酚衍生物的有前景的原料,但C/G木质素的解聚通常涉及催化还原过程,无法产生这些氧化的芳香族化学品。在此,我们证明了通过多相铜催化氧化过程可以从C/G木质素中可持续生产儿茶酚衍生物醛和酸。在优化条件下,Cu-NC-800催化剂可提供43.5 mg g的芳香醛(原儿茶醛、香草醛)和酸(原儿茶酸、香草酸)产率(基于克拉森木质素为8.9 wt%)。XRD和XPS分析表明,CuO和Cu₂O可能是Cu-NC-800催化剂多相氧化过程中的活性物种。这项研究为从C/G型木质素可持续生产儿茶酚衍生物开辟了新的机会。