Agro-industrial lignocellulosic wastes represent a huge source of biopolymers, proteins, carbohydrates, and active compounds. Their fractionation through eco-friendly routes is a challenge in accessing the components of interest while minimizing environmental impacts. In this study, a 20-min microwave-assisted subcritical water extraction (MASWE) was selected to isolate cellulose from soybean hulls. This emerging green hydrothermal process, coupled with a microwave-assisted alkaline (MW-NaOH) treatment, enabled the reduction of harsh chemical employment compared to classical biomass fractionation, ensuring, at the same time, a high cellulose enrichment of up to 91.5% in the best procedure. The environmental impacts of the up-scaled optimized strategy were compared to those of the multi-hydrolysis treatment through a life-cycle assessment analysis. The MW-based cellulose extraction provides clear advantages in toxicity-related categories, but it is still necessary to reduce the energy-driven impacts.

Microwave‐Assisted Subcritical Water Extraction Method for the Optimized Isolation of Cellulose From Residual Soybean Hulls / M. Rigoletto, M.L.T.. - In: CHEMSUSCHEM. - ISSN 1864-5631. - 19:17(2026), pp. e71012.1-e71012.15. [10.1002/cssc.71012]

Microwave‐Assisted Subcritical Water Extraction Method for the Optimized Isolation of Cellulose From Residual Soybean Hulls

V. Bortolotto
Formal Analysis
;
C.L. Bianchi
Data Curation
;
2026

Abstract

Agro-industrial lignocellulosic wastes represent a huge source of biopolymers, proteins, carbohydrates, and active compounds. Their fractionation through eco-friendly routes is a challenge in accessing the components of interest while minimizing environmental impacts. In this study, a 20-min microwave-assisted subcritical water extraction (MASWE) was selected to isolate cellulose from soybean hulls. This emerging green hydrothermal process, coupled with a microwave-assisted alkaline (MW-NaOH) treatment, enabled the reduction of harsh chemical employment compared to classical biomass fractionation, ensuring, at the same time, a high cellulose enrichment of up to 91.5% in the best procedure. The environmental impacts of the up-scaled optimized strategy were compared to those of the multi-hydrolysis treatment through a life-cycle assessment analysis. The MW-based cellulose extraction provides clear advantages in toxicity-related categories, but it is still necessary to reduce the energy-driven impacts.
agro‐industrial waste; cellulose; circular economy; life‐cycle assessment; microwave
Settore CHEM-04/A - Chimica industriale
2026
Article (author)
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/1269495
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