LAPSE:2023.11002v1
Published Article

LAPSE:2023.11002v1
Comprehensive Meta-Analysis of Pathways to Increase Biogas Production in the Textile Industry
February 27, 2023
Abstract
The textile industry is one of the largest environmental polluters in the world. Although waste management via anaerobic digestion (AD) is a sustainable strategy to transform waste into clean energy and water recovery, the efficiency of the AD process is reduced by the presence of recalcitrant materials, chemicals, and toxic contents. This study aims to investigate the performance of several chemical, physical, and biological pretreatments applied to improve the biodegradability of textile waste. We performed a meta-analysis with 117 data extracted from 13 published articles that evaluated the efficiency of pretreatments applied to textile waste prior to AD to increase biogas production measured as methane (CH4) yield. Even though the majority of the studies have focused on the effect of chemical and physical pretreatments, our results showed that the application of biological pretreatments are more efficient and eco-friendlier. Biological pretreatments can increase CH4 yield by up to 360% with lower environmental risk and lower operating costs, while producing clean energy and a cleaner waste stream. Biological pretreatments also avoid the addition of chemicals and favor the reuse of textile wastewater, decreasing the current demand for clean water and increasing resource circularity in the textile industry.
The textile industry is one of the largest environmental polluters in the world. Although waste management via anaerobic digestion (AD) is a sustainable strategy to transform waste into clean energy and water recovery, the efficiency of the AD process is reduced by the presence of recalcitrant materials, chemicals, and toxic contents. This study aims to investigate the performance of several chemical, physical, and biological pretreatments applied to improve the biodegradability of textile waste. We performed a meta-analysis with 117 data extracted from 13 published articles that evaluated the efficiency of pretreatments applied to textile waste prior to AD to increase biogas production measured as methane (CH4) yield. Even though the majority of the studies have focused on the effect of chemical and physical pretreatments, our results showed that the application of biological pretreatments are more efficient and eco-friendlier. Biological pretreatments can increase CH4 yield by up to 360% with lower environmental risk and lower operating costs, while producing clean energy and a cleaner waste stream. Biological pretreatments also avoid the addition of chemicals and favor the reuse of textile wastewater, decreasing the current demand for clean water and increasing resource circularity in the textile industry.
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Keywords
biotechnology, circular economy, cotton, fibers, methane, textile residues
Subject
Suggested Citation
Anacleto TM, Kozlowsky-Suzuki B, Wilson AE, Enrich-Prast A. Comprehensive Meta-Analysis of Pathways to Increase Biogas Production in the Textile Industry. (2023). LAPSE:2023.11002v1
Author Affiliations
Anacleto TM: Programa de Pós-Graduação em Biotecnologia Vegetal e Bioprocessos, Universidade Federal do Rio de Janeiro, Rio de Janeiro 21941-901, Brazil; Unidade Multiusuário de Análises Ambientais, Universidade Federal do Rio de Janeiro, Rio de Janeiro 21941-901 [ORCID]
Kozlowsky-Suzuki B: Departamento de Ecologia e Recursos Marinhos, Universidade Federal do Estado do Rio de Janeiro, Rio de Janeiro 22290-240, Brazil
Wilson AE: School of Fisheries, Aquaculture, and Aquatic Sciences, Auburn University, Auburn, AL 36849, USA
Enrich-Prast A: Unidade Multiusuário de Análises Ambientais, Universidade Federal do Rio de Janeiro, Rio de Janeiro 21941-901, Brazil; Department of Thematic Studies—Environmental Change and Biogas Solutions Research Center (BSRC), Linköping University, 581 83 Link
Kozlowsky-Suzuki B: Departamento de Ecologia e Recursos Marinhos, Universidade Federal do Estado do Rio de Janeiro, Rio de Janeiro 22290-240, Brazil
Wilson AE: School of Fisheries, Aquaculture, and Aquatic Sciences, Auburn University, Auburn, AL 36849, USA
Enrich-Prast A: Unidade Multiusuário de Análises Ambientais, Universidade Federal do Rio de Janeiro, Rio de Janeiro 21941-901, Brazil; Department of Thematic Studies—Environmental Change and Biogas Solutions Research Center (BSRC), Linköping University, 581 83 Link
Journal Name
Energies
Volume
15
Issue
15
First Page
5574
Year
2022
Publication Date
2022-08-01
ISSN
1996-1073
Version Comments
Original Submission
Other Meta
PII: en15155574, Publication Type: Journal Article
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LAPSE:2023.11002v1
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https://doi.org/10.3390/en15155574
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Feb 27, 2023
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