A review on the operational parameters and degradation kinetics used in anaerobic co-digestion of tannery residues
Tannery residues possess the potential to produce biogas through anaerobic co-digestion processes. Research related to anaerobic co-digestion of food wastes and easily biodegradable wastes is ongoing and a vast advancement has been observed already to reclaim biogas as recycled energy. However, a re...
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Elsevier
2025-04-01
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author | Shilpy Rani Basak Samin Azhan Chowdhury Rafiuzzaman Khan Ahmad Hasan Nury Md. Jahir Bin Alam Md. Imran Kabir |
author_facet | Shilpy Rani Basak Samin Azhan Chowdhury Rafiuzzaman Khan Ahmad Hasan Nury Md. Jahir Bin Alam Md. Imran Kabir |
author_sort | Shilpy Rani Basak |
collection | DOAJ |
description | Tannery residues possess the potential to produce biogas through anaerobic co-digestion processes. Research related to anaerobic co-digestion of food wastes and easily biodegradable wastes is ongoing and a vast advancement has been observed already to reclaim biogas as recycled energy. However, a review on the co-digestion of tannery residues and their potentiality to produce recycled energy has been initiated very limitedly. As these residues are more persistent compared to the biodegradable ones, their conversion to a simpler and safer form is highly required. To fill in this gap, an approach to review the co-digestion of tannery residues and its potential degradation kinetics has been initiated here so that the prime co-digestion- and kinetic- parameters are evaluated. Moreover, four generic equations with 45 parameters (variable and constant) have been developed based on the existing literature to explain the bacterial growth with substrate- and product- inhibition as well as substrate degradation. This review outcome will lead to the biochemical modelling of the degradation of tannery residues for various co-digestion elements. It will lead the modelers to find not only the potential parameters to be considered during co-digestion but also the effective initiations of related experiments. |
format | Article |
id | doaj-art-439fc80aebd74b2c99adabf872c216ea |
institution | Kabale University |
issn | 2949-7507 |
language | English |
publishDate | 2025-04-01 |
publisher | Elsevier |
record_format | Article |
series | Waste Management Bulletin |
spelling | doaj-art-439fc80aebd74b2c99adabf872c216ea2025-02-08T05:01:47ZengElsevierWaste Management Bulletin2949-75072025-04-0131271292A review on the operational parameters and degradation kinetics used in anaerobic co-digestion of tannery residuesShilpy Rani Basak0Samin Azhan Chowdhury1Rafiuzzaman Khan2Ahmad Hasan Nury3Md. Jahir Bin Alam4Md. Imran Kabir5Department of Civil and Environmental Engineering, Shahjalal University of Science and Technology, Sylhet 3114 BangladeshDepartment of Civil and Environmental Engineering, Shahjalal University of Science and Technology, Sylhet 3114 BangladeshDepartment of Civil and Environmental Engineering, Shahjalal University of Science and Technology, Sylhet 3114 BangladeshDepartment of Civil and Environmental Engineering, Shahjalal University of Science and Technology, Sylhet 3114 BangladeshDepartment of Civil and Environmental Engineering, Shahjalal University of Science and Technology, Sylhet 3114 BangladeshCorresponding author.; Department of Civil and Environmental Engineering, Shahjalal University of Science and Technology, Sylhet 3114 BangladeshTannery residues possess the potential to produce biogas through anaerobic co-digestion processes. Research related to anaerobic co-digestion of food wastes and easily biodegradable wastes is ongoing and a vast advancement has been observed already to reclaim biogas as recycled energy. However, a review on the co-digestion of tannery residues and their potentiality to produce recycled energy has been initiated very limitedly. As these residues are more persistent compared to the biodegradable ones, their conversion to a simpler and safer form is highly required. To fill in this gap, an approach to review the co-digestion of tannery residues and its potential degradation kinetics has been initiated here so that the prime co-digestion- and kinetic- parameters are evaluated. Moreover, four generic equations with 45 parameters (variable and constant) have been developed based on the existing literature to explain the bacterial growth with substrate- and product- inhibition as well as substrate degradation. This review outcome will lead to the biochemical modelling of the degradation of tannery residues for various co-digestion elements. It will lead the modelers to find not only the potential parameters to be considered during co-digestion but also the effective initiations of related experiments.http://www.sciencedirect.com/science/article/pii/S2949750725000069Anaerobic co-digestionTannery solid wasteRenewable energyBiogas productionWaste managementSustainable Development Goal 7 |
spellingShingle | Shilpy Rani Basak Samin Azhan Chowdhury Rafiuzzaman Khan Ahmad Hasan Nury Md. Jahir Bin Alam Md. Imran Kabir A review on the operational parameters and degradation kinetics used in anaerobic co-digestion of tannery residues Waste Management Bulletin Anaerobic co-digestion Tannery solid waste Renewable energy Biogas production Waste management Sustainable Development Goal 7 |
title | A review on the operational parameters and degradation kinetics used in anaerobic co-digestion of tannery residues |
title_full | A review on the operational parameters and degradation kinetics used in anaerobic co-digestion of tannery residues |
title_fullStr | A review on the operational parameters and degradation kinetics used in anaerobic co-digestion of tannery residues |
title_full_unstemmed | A review on the operational parameters and degradation kinetics used in anaerobic co-digestion of tannery residues |
title_short | A review on the operational parameters and degradation kinetics used in anaerobic co-digestion of tannery residues |
title_sort | review on the operational parameters and degradation kinetics used in anaerobic co digestion of tannery residues |
topic | Anaerobic co-digestion Tannery solid waste Renewable energy Biogas production Waste management Sustainable Development Goal 7 |
url | http://www.sciencedirect.com/science/article/pii/S2949750725000069 |
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