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Biochar and maize stover take different routes to store carbon in soil

A 10-year experiment in northeastern China compared biochar and maize stover applications, finding stover increased subsurface and deep-soil carbon, while biochar built topsoil carbon. The amendments altered dissolved organic carbon properties differently, with stover-derived DOC showing stronger vertical movement.

SourceBiochar Editorial Office, Shenyang Agricultural University·JournalCarbon Research·TypeExperimental study·DateSep 10, 2026

New kinetic model couples lignin and hemicellulose dynamics to sharpen biorefinery predictions

A new kinetic model couples lignin and hemicellulose dynamics to sharpen biorefinery predictions. The model uses controlled kinetics to release phenolic compounds and acetic acid gradually, turning lignin-derived inhibitors into measurable proxies for tracking bond cleavage.

SourceJournal of Bioresources and Bioproducts·JournalJournal of Bioresources and Bioproducts·TypeExperimental study·DateAug 25, 2026

Leaf traits drive herbivory across forests: Silicon and heat tolerance matter

Researchers found that plant species with tougher leaves actually suffered more from insect damage, while those with higher silicon concentrations sustained less. In contrast, plants with higher heat tolerance experienced greater herbivory. Understanding these drivers is crucial for predicting forest health under future climate scenarios.

SourceSouth China Botanical Garden, Chinese Academy of Sciences·JournalPlant Diversity·TypeExperimental study·DateJun 11, 2026

Turning pulp-waste lignin into high-performance wood adhesives

The study reports a green ion-exchange, self-catalytic strategy for turning pulp-waste lignin into high-performance wood adhesives. The optimized LA/CA adhesive showed strong dry and wet performance, meeting Type I plywood requirements and reducing costs by up to 69.6% compared to petrochemical-based adhesives.

SourceResearch·JournalResearch·TypeNews article·DateMay 28, 2026

Researchers decode molecular secrets of surfactant-mediated enzyme protection in lignocellulose biorefining

A comprehensive study decodes structure-function relationships governing surfactant-mediated enzyme protection, revealing a competitive stabilization mechanism. The research identifies key factors influencing mitigation efficacy, including hydrophobicity and hydrogen bonding capacity, and provides predictive power for designing more ef...

SourceJournal of Bioresources and Bioproducts·JournalJournal of Bioresources and Bioproducts·DateMar 31, 2026

'Benzoylation flip' turns kenaf yellowing into whitening, opens new route to weather-proof bio-fibers

Researchers achieved hydroxyl groups esterification and lignin dissolution through a two-hour pyridine-benzoyl chloride bath. The resulting fibers became photobleaching and stable under accelerated weathering, with a 15-unit ΔE* swing and 96% plunge in tensile strength.

SourceJournal of Bioresources and Bioproducts·JournalJournal of Bioresources and Bioproducts·TypeExperimental study·DateNov 26, 2025

Removal of hemicellulose from alkaline lignin improved electrochemical performance of hard carbon for sodium-ion battery application

Researchers developed an effective strategy to remove hemicellulose from crude alkaline lignin, resulting in hard carbon anodes with improved structural properties and enhanced sodium storage capabilities. The purified lignin-based hard carbon achieved high reversible capacity and initial Coulombic efficiency.

SourceSongshan Lake Materials Laboratory·JournalMaterials Futures·DateNov 2, 2025

Plant biomass substance helps combat weeds

A study found that lignin, a polymer from plant cell walls, can improve the performance of nanoparticles with herbicide. Lignin was subjected to a green process and showed distinct properties, making it suitable for customizing different applications. The substance demonstrated potential for sustainable agricultural pest management.

SourceFundação de Amparo à Pesquisa do Estado de São Paulo·JournalACS Sustainable Chemistry & Engineering·DateOct 29, 2025

Lignins – not so random after all

A new international study led by Prof. Edouard Pesquet at Stockholm University uncovers the complex relationship between lignin chemistry and structure in different cell types of plants. The research highlights how this molecular diversity has enabled plants to succeed on land.

SourceStockholm University·JournalNew Phytologist·TypeExperimental study·DateOct 21, 2025

Freeze-drying preserves sulfonated lignin’s functional integrity, new study finds

Researchers found that freeze-drying preserves sulfoethylated kraft lignin's functional integrity, maintaining charge density, solubility, and sulfonic acid groups. Oven drying compromised performance, triggering chemical changes that reduced solubility and increased glass transition temperature.

SourceJournal of Bioresources and Bioproducts·JournalJournal of Bioresources and Bioproducts·TypeExperimental study·DateSep 9, 2025

Poplar tree discovery could help shape the future of energy and biomaterials

A University of Missouri-led study has uncovered how poplar trees can naturally adjust a key part of their wood chemistry based on changes in their environment, supporting improved bioenergy production. The discovery sheds light on the role of lignin and its potential to create better biofuels and sustainable products.

SourceUniversity of Missouri-Columbia·JournalProceedings of the National Academy of Sciences·DateAug 18, 2025

New lignin-based hydrogel breakthrough for wound healing and controlled drug release

The study presents a lignin-based hydrogel that combines mechanical strength with bioactivity, promoting wound healing and sustained drug release. The hydrogel's controlled-release properties make it an ideal candidate for treating complex wounds and reducing medication side effects.

SourceJournal of Bioresources and Bioproducts·JournalJournal of Bioresources and Bioproducts·TypeExperimental study·DateNov 12, 2024

Why is breaking down plant material for biofuels so slow?

The study reveals that cellobiose fragments can bind to the tunnel's back door and block subsequent cellulose molecules, as well as bind to Cel7A near the front door, preventing enzyme binding. New methods could be developed to fine-tune this process, improving biofuel production efficiency.

SourcePenn State·JournalProceedings of the National Academy of Sciences·TypeImaging analysis·DateMay 7, 2024

Wood materials make for reliable organic solar cells

Scientists at Linköping University have created stable and environmentally friendly organic solar cells by incorporating untreated kraft lignin into the electron transport layer. This innovation improves the overall efficiency and reliability of organic solar cells, paving the way for a more sustainable future.

SourceLinköping University·JournalAdvanced Materials·DateDec 6, 2023

Transparent wood-based coating doesn’t fog up

A team of scientists at Aalto University has created a bio-based transparent film from lignin nanoparticles, offering an alternative to toxic synthetic materials. The coating can be used on glasses, windshields, and other surfaces, and also displays coloured films with structural colours.

SourceAalto University·JournalChemical Engineering Journal·DateSep 26, 2023

Vanillin from Kraft Lignin

Scientists have successfully developed a novel method to recover vanillin from Kraft lignin, a previously waste material, without using harmful chemicals. This process utilizes recycled materials and electric power, making it an environmentally friendly approach to meet the high demand for vanillin in various industries.

SourceWiley·JournalAngewandte Chemie International Edition·TypeExperimental study·DateFeb 23, 2023

Engineered wood grows stronger while trapping carbon dioxide

Rice University scientists have developed a method to engineer wood that traps carbon dioxide while increasing its strength. This process involves removing lignin and hemicellulose from the wood and replacing them with metal-organic framework particles, making it a sustainable alternative to traditional materials.

SourceRice University·JournalCell Reports Physical Science·TypeExperimental study·DateFeb 16, 2023

How waste-eating bacteria digest complex carbons

Researchers decipher metabolic mechanisms of Comamonas testosteroni to digest complex carbons, enabling potential for biotechnology platforms that recycle plastic waste. The study reveals a novel approach to upcycle plastic waste into industrially relevant polymers.

SourceNorthwestern University·JournalNature Chemical Biology·TypeExperimental study·DateFeb 6, 2023

Modified enzyme brings value to lignin monomers

A team of scientists, led by Marco Fraaije from the University of Groningen, has developed an enzyme that can convert lignin monomers into useful chemical building blocks. The enzyme has been engineered to be stable, selective, and faster in conversion, offering a promising solution for the valorization of biomass.

SourceUniversity of Groningen·JournalNature Communications·TypeExperimental study·DateNov 29, 2022