4.7 Article

Lignin fractionation: Effective strategy to reduce molecule weight dependent heterogeneity for upgraded lignin valorization

期刊

INDUSTRIAL CROPS AND PRODUCTS
卷 165, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.indcrop.2021.113442

关键词

Lignin chemistry; Lignin fractionation; Molecular weight distribution; Lignin value-added application

资金

  1. Natural Science Foundation of China [32071721]
  2. Young Elite Scientists Sponsorship Program by Tianjin [TJSQNTJ-2020-05]
  3. Research and Development Plan of Key Areas in Hunan Province [2019NK2032]

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Conventional pulping processes and emerging lignocellulosic biorefineries produce lignin with heterogeneous characteristics, which limit its downstream applications. Fractionation of lignin into homogeneous fractions can overcome this limitation and upgrade lignin valorization. The obtained lignin fractions with improved properties can be used to enhance the valorization of lignin.
Conventional pulping processes and emerging lignocellulosic biorefineries provide a large quantity of lignin with heterogeneous characters, including complex chemical structure and polydisperse molecular weight distribution. The heterogeneity causes undesirable properties for down-stream applications, which limit lignin valorization seriously. Fractionation of heterogeneous lignin into several homogeneous fractions is considered as an effective approach to overcome this limitation and realize upgraded lignin valorization. To date, lignin fractionation approaches have been extensively studied and they can be broadly classified into three categories: gradient acid precipitation, step-wise solvent fractionation, and membrane separation with different cut-offs. After fractionation, the obtained lignin fractions with decreased polydispersity exhibit improved molecular weight dependent properties, and thus using them as raw materials for subsequent applications results in the upgradation of lignin valorization. In this work, the formation of lignin heterogeneity based on molecular weight is firstly elucidated, and lignin fractionation approaches are elaborated and their potentials for industrialization are discussed. Finally, the upgraded valorization using lignin fractions with high and low molecular weight is also reviewed comprehensively in this work.

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