Biodegradability of Chromium-Free Finished Leather Through ISO 14855-1:2012 and ISO 20136:2020: A Multi-Faceted Analytical Approach

While various methodologies have been used to evaluate leather biodegradability, limited data exist regarding their respective strengths, limitations and complementarity, especially for finished leathers produced using chrome-free tanning systems. Consequently, this work assesses the biodegradation of eight commercial eco-friendly tanned finished leathers (phenolic-, zeolite-, aluminium- and titanium-based treatments) using two standardised laboratory approaches, ISO 14855-1:2012 (controlled composting) and ISO 20136:2020 (liquid-phase biodegradation), together with physicochemical characterisation and phytotoxicity/ecotoxicity endpoints. The results showed that biodegradation generally occurred faster under ISO 20136:2020 conditions, mainly because this assay uses ground leather shavings and an aqueous, well-mixed medium, whereas ISO 14855-1:2012 evaluates mineralisation of larger leather pieces in a compost matrix. Phenolic- and titanium-tanned leathers showed consistently high biodegradation in both assays, whereas the aluminium-tanned leather biodegraded efficiently under ISO 14855-1:2012 but showed limited biodegradation under ISO 20136:2020, highlighting that assay conditions can reveal constraints related to the complete material architecture, collagen stabilisation, effective accessibility and method-specific exposure conditions rather than to a single leaching mechanism. Phytotoxicity and ecotoxicity assessments indicated low environmental impact of the degradation products under the tested conditions. Overall, the combined use of both standards provides a more comprehensive and industrially useful framework for assessing the end-of-life behaviour of finished leathers than either method alone.

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Publication Details

Journal
Polymers
Published
2026-09-30
DOI
https://doi.org/10.3390/polym18192389
Primary Topic
Collagen: Extraction and Characterization
Type
article
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article

Biodegradability of Chromium-Free Finished Leather Through ISO 14855-1:2012 and ISO 20136:2020: A Multi-Faceted Analytical Approach

Elena Orgilés‐Calpena, Alberto Vico, José Miguel Carot Sierra, Marcelo Bertazzo et al.
Polymers
Collagen: Extraction and Characterization
article

Biodegradability of Chromium-Free Finished Leather Through ISO 14855-1:2012 and ISO 20136:2020: A Multi-Faceted Analytical Approach

Elena Orgilés‐Calpena, Alberto Vico, José Miguel Carot Sierra, Marcelo Bertazzo, Guillermo Grindlay, Irene Lifante‐Martínez, Maria I. Maestre-Lopez
article en

Abstract

While various methodologies have been used to evaluate leather biodegradability, limited data exist regarding their respective strengths, limitations and complementarity, especially for finished leathers produced using chrome-free tanning systems. Consequently, this work assesses the biodegradation of eight commercial eco-friendly tanned finished leathers (phenolic-, zeolite-, aluminium- and titanium-based treatments) using two standardised laboratory approaches, ISO 14855-1:2012 (controlled composting) and ISO 20136:2020 (liquid-phase biodegradation), together with physicochemical characterisation and phytotoxicity/ecotoxicity endpoints. The results showed that biodegradation generally occurred faster under ISO 20136:2020 conditions, mainly because this assay uses ground leather shavings and an aqueous, well-mixed medium, whereas ISO 14855-1:2012 evaluates mineralisation of larger leather pieces in a compost matrix. Phenolic- and titanium-tanned leathers showed consistently high biodegradation in both assays, whereas the aluminium-tanned leather biodegraded efficiently under ISO 14855-1:2012 but showed limited biodegradation under ISO 20136:2020, highlighting that assay conditions can reveal constraints related to the complete material architecture, collagen stabilisation, effective accessibility and method-specific exposure conditions rather than to a single leaching mechanism. Phytotoxicity and ecotoxicity assessments indicated low environmental impact of the degradation products under the tested conditions. Overall, the combined use of both standards provides a more comprehensive and industrially useful framework for assessing the end-of-life behaviour of finished leathers than either method alone.

PolymersVol. 18(19)
University of Alicante (ES), Instituto Tecnológico del Calzado y Conexas (ES), Universitat Politècnica de València (ES)
Responsible consumption and production
Openalex Percentile: Top 23%
Collagen: Extraction and Characterization
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