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  5. Rethinking hydrothermal carbonization: development of lignin-focused biorefinery for generation of high-value hydrochar and lignin spheres

Rethinking hydrothermal carbonization: development of lignin-focused biorefinery for generation of high-value hydrochar and lignin spheres

Author(s)
Pierpaoli, Valeria
Tofani, Giorgio
Jasiukaitytė-Grojzdek, Edita
Likozar, Blaž
Grilc, Miha
more
Date Issued
January 2026
Type
article
Volume
28
Issue
18
Start Page
7659
End Page
7691
DOI
10.1039/d6gc00543h
ISSN
1463-9262
1463-9270
Journal
Green Chemistry  
Abstract
This tutorial review aims to provide a comprehensive overview of hydrothermal carbonization (HTC) as a unified platform for biomass valorisation including the most recent developments and future challenges. After the introduction, section 2 distils HTC fundamentals – operating regimes, acid-catalysed pathways (hydrolysis, dehydration, aromatization), and the distribution of solids, liquids and gases under subcritical water conditions. Section 3 examines hydrochar, highlighting how variations in feedstock, temperature, and residence time govern surface functionality, porosity and thermal stability, and enable applications in soil amendment, CO2 capture, heavy-metal adsorption, and solid-acid catalysis. Section 4 surveys HTCderived carbon spheres, demonstrating that control over dopants, activation protocols, and reaction parameters yields particles with tailored meso-/microporosity, surface chemistry, and electrochemical performance for supercapacitors and water purification. Section 5 introduces lignin-focused strategies that recover structurally preserved lignin directly from hydrochar and convert it into micro-/nanospheres with high carbon content, intact β-O-4 linkages, and tuneable functionality for catalytic and materials applications. Lastly, section 6 is dedicated to the environmental assessment of solvents and chemical reagents used in post-HTC functionalization and activation. Collectively, these developments establish HTC as a versatile, zero-waste biorefinery approach – producing hydrochar, engineered carbon nanostructures, and high-value lignin under green chemistry principles and scalable process conditions.
Subjects

lignin

hydrochar

wood

Handle
https://dspace.unitus.it/handle/2067/64994
File(s)
Thumbnail Image
Name

2026-pierpaoli-ACS.pdf

Size

514.79 KB

Format

Adobe PDF

Checksum (MD5)

e440923a059e68700236c5d191f34a32

Related items
Metrics
Project(s)
0000025 RomeTechnopole – CUP B83C22002820006, PNRR

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