A review on the calculation and application of lignin Hansen solubility parameters.

Int J Biol Macromol

Key Laboratory of Recycling and Eco-treatment of Waste Biomass of Zhejiang Province, Zhejiang University of Science and Technology, Hangzhou 310023, China. Electronic address:

Published: January 2024

AI Article Synopsis

  • - Hansen solubility parameters (HSPs) are essential for processes like lignin depolymerization, separation, and blending, but calculating them for lignin is challenging due to its complex structures and diverse sources.
  • - This review outlines various methods for calculating lignin HSPs and introduces a simpler approach based on its subunits, emphasizing their applications in selecting solvents for lignin-related processes.
  • - By using HSPs, researchers can improve lignin fractionation and enhance its applications, which could help increase the value and usability of lignin in various fields.

Article Abstract

Hansen solubility parameters (HSPs) play a critical role in the majority of processes involving lignin depolymerization, separation, fractionation, and polymer blending, which are directly related to dissolution properties. However, the calculation of lignin HSPs is highly complicated due to the diversity of sources and the complexity of lignin structures. Despite their important role, lignin HSPs have been undervalued, attracting insufficient attention. This review summarizes the calculation methods for lignin HSPs and proposes a straightforward method based on lignin subunits. Furthermore, it highlights the crucial applications of lignin HSPs, such as identifying ideal solvents for lignin dissolution, selecting suitable solvents for lignin depolymerization and extraction, designing green solvents for lignin fractionation, and guiding the preparation of lignin-based composites. For instance, leveraging HSPs to design a series of solvents could potentially achieve sequential controllable lignin fractionation, addressing issues of low value-added applications of lignin resulting from poor homogeneity. Notably, HSPs serve as valuable tools for understanding the dissolution behavior of lignin. Consequently, we expect this review to be of great interest to researchers specializing in lignin and other macromolecules.

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Source
http://dx.doi.org/10.1016/j.ijbiomac.2023.128506DOI Listing

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