Deep eutectic solvent-based microextraction system for simultaneous lignocellulose fractionation and furfural production DOI Creative Commons

Liu Liu,

Qianwei Li, Caixia Wan

et al.

Green Chemistry, Journal Year: 2024, Volume and Issue: unknown

Published: Nov. 27, 2024

A DES-based microextraction system with a salt crystal-stabilized emulsion enhances lignocellulose fractionation and furfural production, achieving high yield efficient biomass utilization.

Language: Английский

One-pot, microwave (MW)-assisted production of furfural from almond-, oil-, and wine-derived co-products through biorefinery-based approaches DOI Creative Commons
Manuel Salgado-Ramos, Alberto J. Huertas-Alonso,

Almudena Lorente

et al.

Waste Management, Journal Year: 2024, Volume and Issue: 186, P. 280 - 292

Published: July 1, 2024

This work outlines the first microwave (MW)-assisted protocol for production of biofuel precursor furfural (FF) from raw agricultural waste almond hull (AH), olive stone (OS), and winemaking-derived grape stalk (GS), marc (GM) exhausted (EGM) through a one-pot synthesis process. To enhance overall yield, catalytic process was firstly developed xylose, major constituent hemicellulose present in lignocellulosic biomass. method afforded FF with 100 % selectivity, yielding over 85 isolated product when using H

Language: Английский

Citations

0

Deep eutectic solvent-based microextraction system for simultaneous lignocellulose fractionation and furfural production DOI Creative Commons

Liu Liu,

Qianwei Li, Caixia Wan

et al.

Green Chemistry, Journal Year: 2024, Volume and Issue: unknown

Published: Nov. 27, 2024

A DES-based microextraction system with a salt crystal-stabilized emulsion enhances lignocellulose fractionation and furfural production, achieving high yield efficient biomass utilization.

Language: Английский

Citations

0