From Lab to Industry: Optimization and Industrial Application of Microalgae-Based Formulations for Dyeing and Functionalization of Linen Fabrics

Abstract Microalgae are promising renewable resources for textile dyeing and functionalization, but their industrial transfer remains limited. This work developed and optimized whole microalgal biomass-based formulations for application onto 100% linen fabric using dip–pad–dry processes compatible with conventional textile finishing lines. Textile substrate screening, binder selection, cross-linker optimization, fixation auxiliary strategy, and guar gum stabilization were sequentially evaluated. Initial binder-only formulations showed poor washing durability, with color strength (K/S) losses of at least 49% after one washing cycle. The optimized formulation, composed of acrylic dispersion, Nannochloropsis gaditana (N. gaditana), cross-linking agent, fixation auxiliary system, and guar gum, improved formulation stability, color retention, and antioxidant performance. Validation with different microalgal species confirmed species-dependent washing durability, with N. gaditana showing the best color retention after 10 washing cycles and being selected for industrial-scale application. The industrially functionalized linen fabric showed excellent rubbing, washing, water, and perspiration fastness, while light fastness remained limited. Garment prototypes produced from the dyed/functionalized fabric confirmed the practical applicability of this approach. These results support the valorization of whole microalgal biomass as a renewable pigment-like functional component for lower-impact textile finishing using industrially compatible aqueous processing.

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Publication Details

Journal
ACS Sustainable Chemistry & Engineering
Published
2026-10-06
DOI
https://doi.org/10.1021/acssuschemeng.6c07524
Primary Topic
Dyeing and Modifying Textile Fibers
Type
article
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article

From Lab to Industry: Optimization and Industrial Application of Microalgae-Based Formulations for Dyeing and Functionalization of Linen Fabrics

Diego M. Chaves, Raul Manuel Esteves Sousa Fangueiro, Sofia M. Costa, Verónica Rocha et al.
ACS Sustainable Chemistry & Engineering
Dyeing and Modifying Textile Fibers
article

From Lab to Industry: Optimization and Industrial Application of Microalgae-Based Formulations for Dyeing and Functionalization of Linen Fabrics

Diego M. Chaves, Raul Manuel Esteves Sousa Fangueiro, Sofia M. Costa, Verónica Rocha, Diana P. Ferreira, Inês Boticas, Rita Böttcher, Vasco Pontes
article en

Abstract

Abstract Microalgae are promising renewable resources for textile dyeing and functionalization, but their industrial transfer remains limited. This work developed and optimized whole microalgal biomass-based formulations for application onto 100% linen fabric using dip–pad–dry processes compatible with conventional textile finishing lines. Textile substrate screening, binder selection, cross-linker optimization, fixation auxiliary strategy, and guar gum stabilization were sequentially evaluated. Initial binder-only formulations showed poor washing durability, with color strength (K/S) losses of at least 49% after one washing cycle. The optimized formulation, composed of acrylic dispersion, Nannochloropsis gaditana (N. gaditana), cross-linking agent, fixation auxiliary system, and guar gum, improved formulation stability, color retention, and antioxidant performance. Validation with different microalgal species confirmed species-dependent washing durability, with N. gaditana showing the best color retention after 10 washing cycles and being selected for industrial-scale application. The industrially functionalized linen fabric showed excellent rubbing, washing, water, and perspiration fastness, while light fastness remained limited. Garment prototypes produced from the dyed/functionalized fabric confirmed the practical applicability of this approach. These results support the valorization of whole microalgal biomass as a renewable pigment-like functional component for lower-impact textile finishing using industrially compatible aqueous processing.

ACS Sustainable Chemistry & Engineering
University of Minho (PT)
Openalex Percentile: Top 15%
Dyeing and Modifying Textile Fibers
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