| Literature DB >> 30340186 |
Xianzhi Meng1, Aakash Parikh2, Bhogeswararao Seemala2, Rajeev Kumar3, Yunqiao Pu4, Charles E Wyman2, Charles M Cai2, Arthur J Ragauskas5.
Abstract
Lignin valorization is significantly hindered by the intrinsic heterogeneity of its complex structures and variability of biomass feedstocks. Fractionation of lignin can overcome these challenges by producing functionally distinct lignin cuts that can be further tailored to end products. Herein, lignin was extracted and depolymerized from poplar by the co-solvent enhanced lignocellulosic fractionation method with renewable THF to obtain CELF lignin. Several solvents were screened to separate soluble and insoluble fractions from the parent CELF lignin. The ethanol soluble portion was then fractionated into different molecular weight cuts via sequential precipitation of the lignin by reducing the concentration of THF. The physicochemical structures of different CELF lignin cuts were elucidated by GPC and NMR techniques. These results suggest that CELF lignin cuts with lower molecular weight contain progressively higher phenolic and carboxylic acid OH groups, which can be more suitable as green antioxidants than the parent lignin.Entities:
Keywords: Co-solvent enhanced lignocellulosic fractionation; Lignin valorization; Molecular weight distribution; Sequential precipitation
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Year: 2018 PMID: 30340186 DOI: 10.1016/j.biortech.2018.09.130
Source DB: PubMed Journal: Bioresour Technol ISSN: 0960-8524 Impact factor: 9.642