Gu Nina X, Palumbo Chad T, Bleem Alissa C, Sullivan Kevin P, Haugen Stefan J, Woodworth Sean P, Ramirez Kelsey J, Kenny Jacob K, Stanley Lisa D, Katahira Rui, Stahl Shannon S, Beckham Gregg T
Renewable Resources and Enabling Sciences Center, National Renewable Energy Laboratory, Golden, Colorado 80401, United States.
Department of Chemical and Biological Engineering, University of Colorado Boulder, Boulder, Colorado 80309, United States.
ACS Cent Sci. 2023 Nov 22;9(12):2277-2285. doi: 10.1021/acscentsci.3c00813. eCollection 2023 Dec 27.
Selective lignin depolymerization is a key step in lignin valorization to value-added products, and there are multiple catalytic methods to cleave labile aryl-ether bonds in lignin. However, the overall aromatic monomer yield is inherently limited by refractory carbon-carbon linkages, which are abundant in lignin and remain intact during most selective lignin deconstruction processes. In this work, we demonstrate that a Co/Mn/Br-based catalytic autoxidation method promotes carbon-carbon bond cleavage in acetylated lignin oligomers produced from reductive catalytic fractionation. The oxidation products include acetyl vanillic acid and acetyl vanillin, which are ideal substrates for bioconversion. Using an engineered strain of , we demonstrate the conversion of these aromatic monomers to ,-muconic acid. Overall, this study demonstrates that autoxidation enables higher yields of bioavailable aromatic monomers, exceeding the limits set by ether-bond cleavage alone.
选择性木质素解聚是将木质素转化为增值产品的关键步骤,并且有多种催化方法可用于裂解木质素中不稳定的芳基醚键。然而,木质素中存在大量难降解的碳 - 碳键,在大多数选择性木质素解构过程中这些键保持完整,这使得芳香族单体的总体产率受到固有限制。在这项工作中,我们证明了一种基于Co/Mn/Br的催化自氧化方法可促进由还原催化分级产生的乙酰化木质素低聚物中的碳 - 碳键断裂。氧化产物包括乙酰香草酸和乙酰香兰素,它们是生物转化的理想底物。使用一种工程菌株,我们展示了这些芳香族单体向衣康酸的转化。总体而言,这项研究表明自氧化能够实现更高产率的可生物利用芳香族单体,超过仅通过醚键裂解所设定的限度。