Abstract
Valorization of technical lignin is crucial for the circular bioeconomy - this can be achieved by the transformation of lignin to high-value nanomaterials. However, the majority of lignin nanoparticle (LNP) production methods require high volumes of organic solvent, and specialized equipment, or fail in certain cases to produce a morphologically uniform product with superior physicochemical properties to technical lignin. Herein, a binary solvent system of subcritical water and acetone based on the principles of solvent-antisolvent (SAS) precipitation of lignin is proposed. Spherical LNPs with a high degree of uniformity in the chemical structure are produced via a batch reactor from kraft lignin demonstrating high yield (88-92%), colloidal stability in water, thermal stability, and low mean particle size - these are desirable for advanced biocomposite and biomedical applications; achieved in this study by using lower volumes of recyclable acetone (4-7 times less) than previously reported.
Cite
CITATION STYLE
McMichael, P. S., Hoque, M., dos Santos, F. B., French, V., & Foster, E. J. (2024). Binary mixture of subcritical water and acetone: a hybrid solvent system towards the production of lignin nanoparticles. Reaction Chemistry and Engineering, 9(2), 226–234. https://doi.org/10.1039/d3re00424d
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