Issue 3, 2023

Chemical insights into the base-tuned hydrothermal treatment of side stream biomasses

Abstract

Herein, we analyzed the hydrothermal processes applied to four very different side stream biomasses (chestnut foliage, sugar beet pressing chips, pine bark and branches from park cleaning, bamboo cuts) and identified diverse soluble products depending on the starting pH of the reaction, covering mild to strong basic pH conditions. Despite the biological diversity of the starting products, hydrothermal disintegration of biomass results in a remarkable reduction of chemical diversity towards a controllable number of molecular products, and the well-resolved and rather simple NMR-spectra allow the assignment of the products to only a few families of compounds. It has been revealed that in comparison with the classical hydrothermal treatment, where mostly hydrochar is produced, molar excess of base shifts the hydrothermal treatment towards a humification process. A further increase of the base content causes destruction of the biomass into the more oxygenated homogeneous colloid and thus, for the first time, it can be assigned to the hydrothermal fulvication process. We discuss diverse valorization schemes depending on the biomass and conditions applied.

Graphical abstract: Chemical insights into the base-tuned hydrothermal treatment of side stream biomasses

Supplementary files

Article information

Article type
Paper
Submitted
30 Oct 2022
Accepted
19 Dec 2022
First published
20 Dec 2022
This article is Open Access
Creative Commons BY license

Sustainable Energy Fuels, 2023,7, 769-777

Chemical insights into the base-tuned hydrothermal treatment of side stream biomasses

V. Tkachenko, N. Marzban, S. Vogl, S. Filonenko and M. Antonietti, Sustainable Energy Fuels, 2023, 7, 769 DOI: 10.1039/D2SE01513G

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