Anaerobic co-digestion of tannery solid waste: Optimum leather fleshing waste loading

In this study, loading of optimum leather fleshings was investigated with four identical batch reactors with different fleshings and treatment sludge ratios (0:1, 0.25:1, 0.35:1, 0.50:1) to contribute to the state of art of the biogas production from tannery solid wastes. Results showed that lipids-...

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Main Author: Alper Bayrakdar
Format: Article
Language:English
Published: Pamukkale University 2020-11-01
Series:Pamukkale University Journal of Engineering Sciences
Subjects:
Online Access:https://dergipark.org.tr/tr/pub/pajes/issue/57790/825527
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spelling doaj-76fe716142f1433eb3370994ae5bfb512021-04-04T13:24:26ZengPamukkale UniversityPamukkale University Journal of Engineering Sciences1300-70092147-58812020-11-0126611331137218Anaerobic co-digestion of tannery solid waste: Optimum leather fleshing waste loadingAlper Bayrakdar0Izmir Institute of TechnologyIn this study, loading of optimum leather fleshings was investigated with four identical batch reactors with different fleshings and treatment sludge ratios (0:1, 0.25:1, 0.35:1, 0.50:1) to contribute to the state of art of the biogas production from tannery solid wastes. Results showed that lipids-containing leather fleshings boosted the methane production potential. However, H2S inhibition and volatile fatty acids accumulation were the main concern in the anaerobic digestion of these wastes. The modified Gompertz model was applied to the batch tests data to determine the kinetic constants of anaerobic digestion of tannery solid wastes. It was calculated with the model outputs that the ultimate methane production potential and maximum methane production rate in reactors having mixing ratio of 0.35:1 and 0.5:1 (dry basis) were highly similar. 0.35 was found to be an optimum leather fleshing and treatment sludge ratio with a 54% more methane production potential than that of control reactor in this study.https://dergipark.org.tr/tr/pub/pajes/issue/57790/825527anaerobic digestionleather fleshingsbiogaslipidshydrogen sulfide
collection DOAJ
language English
format Article
sources DOAJ
author Alper Bayrakdar
spellingShingle Alper Bayrakdar
Anaerobic co-digestion of tannery solid waste: Optimum leather fleshing waste loading
Pamukkale University Journal of Engineering Sciences
anaerobic digestion
leather fleshings
biogas
lipids
hydrogen sulfide
author_facet Alper Bayrakdar
author_sort Alper Bayrakdar
title Anaerobic co-digestion of tannery solid waste: Optimum leather fleshing waste loading
title_short Anaerobic co-digestion of tannery solid waste: Optimum leather fleshing waste loading
title_full Anaerobic co-digestion of tannery solid waste: Optimum leather fleshing waste loading
title_fullStr Anaerobic co-digestion of tannery solid waste: Optimum leather fleshing waste loading
title_full_unstemmed Anaerobic co-digestion of tannery solid waste: Optimum leather fleshing waste loading
title_sort anaerobic co-digestion of tannery solid waste: optimum leather fleshing waste loading
publisher Pamukkale University
series Pamukkale University Journal of Engineering Sciences
issn 1300-7009
2147-5881
publishDate 2020-11-01
description In this study, loading of optimum leather fleshings was investigated with four identical batch reactors with different fleshings and treatment sludge ratios (0:1, 0.25:1, 0.35:1, 0.50:1) to contribute to the state of art of the biogas production from tannery solid wastes. Results showed that lipids-containing leather fleshings boosted the methane production potential. However, H2S inhibition and volatile fatty acids accumulation were the main concern in the anaerobic digestion of these wastes. The modified Gompertz model was applied to the batch tests data to determine the kinetic constants of anaerobic digestion of tannery solid wastes. It was calculated with the model outputs that the ultimate methane production potential and maximum methane production rate in reactors having mixing ratio of 0.35:1 and 0.5:1 (dry basis) were highly similar. 0.35 was found to be an optimum leather fleshing and treatment sludge ratio with a 54% more methane production potential than that of control reactor in this study.
topic anaerobic digestion
leather fleshings
biogas
lipids
hydrogen sulfide
url https://dergipark.org.tr/tr/pub/pajes/issue/57790/825527
work_keys_str_mv AT alperbayrakdar anaerobiccodigestionoftannerysolidwasteoptimumleatherfleshingwasteloading
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