A Cradle‐to‐Gate Life Cycle Assessment of Sustainable All‐Cellulose Composites Using Imidazolium‐Based Ionic Liquid

ABSTRACT All‐cellulose composites (ACCs) are single‐component bio‐based green composites made from cellulose, enabling simplified recycling because ACCs have no chemical incompatibility between their matrix and reinforcement fibers. Yet, few life cycle assessment (LCA) studies have examined environmental performance of ACCs. This study assessed the ACC sustainability through a cradle‐to‐gate LCA following the ISO 14040: 2006 framework. ACCs were produced via cellulose dissolution in either stand‐alone ionic liquid 1‐ethyl‐3‐methylimidazolium acetate (EMIM OAc) or with its co‐solvent dimethyl sulfoxide (DMSO). DMSO served as a co‐solvent to reduce the EMIM OAc viscosity and improve cellulose dissolution. The E60D40 solvent (60 wt.% EMIM OAc, 40 wt.% DMSO) exhibited the lowest global warming potential (GWP) at 0.25 kg CO 2 eq/FU, whereas the E20D80 had the highest at 0.75 kg CO 2 eq/FU, exceeding stand‐alone EMIM OAc (0.33 kg CO 2 eq/FU), where FU is the equivalent mass of ACCs. Human health, ecosystem quality, and resource scarcity impacts ranged from 5.06 × 10 −7 –1.56 × 10 −6 DALY/FU, 1.15 × 10 −9 –3.94 × 10 −9 species.yr/FU, and 2.70 × 10 −2 –8.20 × 10 −2 USD 2013 /FU, respectively across different solvent scenarios. These findings illustrate that ACC development can be made more sustainable with DMSO's influence over pure EMIM OAc type solvent formulations.

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Journal
Global Challenges
Published
2026-09-30
DOI
https://doi.org/10.1002/gch2.70167
Primary Topic
Advanced Cellulose Research Studies
Type
article
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article

A Cradle‐to‐Gate Life Cycle Assessment of Sustainable All‐Cellulose Composites Using Imidazolium‐Based Ionic Liquid

Daniel L. Baker, Diego Freire Ordóñez, Keeran Ward, Michael Edward Ries et al.
Global Challenges
Advanced Cellulose Research Studies
article

A Cradle‐to‐Gate Life Cycle Assessment of Sustainable All‐Cellulose Composites Using Imidazolium‐Based Ionic Liquid

Daniel L. Baker, Diego Freire Ordóñez, Keeran Ward, Michael Edward Ries, Guanyi Chen
article en

Abstract

ABSTRACT All‐cellulose composites (ACCs) are single‐component bio‐based green composites made from cellulose, enabling simplified recycling because ACCs have no chemical incompatibility between their matrix and reinforcement fibers. Yet, few life cycle assessment (LCA) studies have examined environmental performance of ACCs. This study assessed the ACC sustainability through a cradle‐to‐gate LCA following the ISO 14040: 2006 framework. ACCs were produced via cellulose dissolution in either stand‐alone ionic liquid 1‐ethyl‐3‐methylimidazolium acetate (EMIM OAc) or with its co‐solvent dimethyl sulfoxide (DMSO). DMSO served as a co‐solvent to reduce the EMIM OAc viscosity and improve cellulose dissolution. The E60D40 solvent (60 wt.% EMIM OAc, 40 wt.% DMSO) exhibited the lowest global warming potential (GWP) at 0.25 kg CO 2 eq/FU, whereas the E20D80 had the highest at 0.75 kg CO 2 eq/FU, exceeding stand‐alone EMIM OAc (0.33 kg CO 2 eq/FU), where FU is the equivalent mass of ACCs. Human health, ecosystem quality, and resource scarcity impacts ranged from 5.06 × 10 −7 –1.56 × 10 −6 DALY/FU, 1.15 × 10 −9 –3.94 × 10 −9 species.yr/FU, and 2.70 × 10 −2 –8.20 × 10 −2 USD 2013 /FU, respectively across different solvent scenarios. These findings illustrate that ACC development can be made more sustainable with DMSO's influence over pure EMIM OAc type solvent formulations.

Global ChallengesVol. 10(10)
University of Leeds (GB), Imperial College London (GB)
Responsible consumption and production
Openalex Percentile: Top 23%
Advanced Cellulose Research Studies
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