ChemSusChem · 2020 · 44 citations · 31 references
As part of the continuing efforts in lignin-first biorefinery concepts, this study concerns a consolidated green processing approach to obtain high yields of hemicelluloses and lignin with a close to native molecular structure, leaving a fiber fraction enriched in crystalline cellulose. This is done by subcritical water extraction of hemicelluloses followed by organosolv lignin extraction. This initial report focuses on a detailed characterization of the lignin component, with the aim of unravelling processing strategies for the preservation of the native linkages while still obtaining good yields and high purity. To this effect, a static cycle process is developed as a physical protection strategy for lignin, and advanced NMR analysis is applied to study structural changes in lignin. Chemical protection mechanisms in the cyclic method are also reported and contrasted with the mechanisms in a reference batch extraction process where the role of homolytic cleavage in subsequent repolymerization reactions is elucidated.
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Formaldehyde stabilization facilitates lignin monomer production during biomass depolymerization
Li Shuai, Masoud Talebi Amiri, Ydna M. Questell‐Santiago et al. · Science · 2016 · 1.3K citations · Full text
Alessandro Granata, Dimitris S. Argyropoulos · Journal of Agricultural and Food Chemistry · 1995 · 832 citations
Food Chemistry, Agricultural Chemistry, Chemical Engineering +13
Recent advances in understanding the pseudo-lignin formation in a lignocellulosic biorefinery
Somnath Shinde, Xianzhi Meng, Rajeev Kumar et al. · Green Chemistry · 2018 · 374 citations · Full text
Liquefaction, Engineering, Bioenergy +16