- By:
- Kemefa, Christian O; Karoki, Peter K; Meng, Xianzhi ; Pu, Yunqiao ; Cai, Charles; Corder, Ria; Ragauskas, Arthur J
- Journal Name:
- Bioresource Technology
- Page Number:
- 133584
- Volume:
- 441
- Publication Date:
- November 26, 2025
- View DOI Listing:
- https://doi.org/10.1016/j.biortech.2025.133584
Abstract
Lignin is an abundant resource that finds application in energy and sustainable materials development. In addition to the utilization of lignin in three-dimensional (3D) printing and hydrogel production, recent studies have reported the use of lignin as a liquid fuel additive. The characterization of the rheological properties of lignin and its derivatives is a dynamic and evolving field, underpinned by advances in experimental, analytical, and modeling techniques. This review provides a comprehensive overview of the recent progress in the study of lignin rheology, highlighting the interplay between structure, modification, and flow behavior in lignin-based solutions, dispersions, gels, polymer blends, and melts. A specific highlight of this review is how lignin concentration affects the rheological properties of lignin-based solutions and dispersions. Furthermore, the effect of lignin type on the properties of 3D-printed lignin-based composites is discussed. For polymer systems, this review discussed lignin-in-polymer solutions separately from lignin-filled polymer systems. Finally, challenges and perspectives on lignin rheology are presented.