Enhancing anaerobic digestion of poultry litter in field digestors by incorporating in-line pre-digestor assembly

Anaerobic fermentation inside the digestor is the continuous process which results in the formation of useful biogas fuel. All feedstocks are not easily decomposable thereby necessitating the design of an “optional in-line pre-digestor assembly”. Initially a 2 m3 modified fixed dome ‘Deenbandhu’ typ...

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Main Authors: M. J. Barooah, A. Borah, M. Dutta
Format: Article
Language:English
Published: Applied Science Innovations Private Limited 2015-04-01
Series:Carbon: Science and Technology
Subjects:
Online Access:http://www.applied-science-innovations.com/cst-web-site/CST-7-2-2015/CST-133.pdf
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author M. J. Barooah
A. Borah
M. Dutta
author_facet M. J. Barooah
A. Borah
M. Dutta
author_sort M. J. Barooah
collection DOAJ
description Anaerobic fermentation inside the digestor is the continuous process which results in the formation of useful biogas fuel. All feedstocks are not easily decomposable thereby necessitating the design of an “optional in-line pre-digestor assembly”. Initially a 2 m3 modified fixed dome ‘Deenbandhu’ type biogas plant was commissioned with cattle dung, bypassing the pre-digestor assembly. In a phased manner, cattle dung was substituted with poultry litter as feedstock. Gradually increasing the substitution @ of 10% per fortnight, complete substitution of cattle dung could be attained in 18 week time. Poultry droppings assorted with paddy husk from deep litter system of poultry housings were used as feedstock. As paddy husk were indecomposable inside the digestor, an in-line pre-digestor assembly was used to remove the unwanted paddy husk by water dissolution technique. Enzymatic hydrolysis initiated in the pre-digestion tank in the 24 hours residence time improved the digestibility of the feedstock for generating biogas. The process of cattle dung substitution with poultry litter was complete in 18 weeks duration. Daily gas production was recorded with the help of wet type gas flow meter. The gas produced was continuously used for domestic cooking. The total solid (TS) content of the poultry litter based feedstock slurry was maintained at around the same TS (9 - 10%) as that of cattle dung (dung to water at 1:1 ratio) slurry. With 100% use of poultry droppings at 10.3 % TS, average gas production level was 208.5 lit per kg of TS.
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spelling doaj.art-e3f048c3b34745fbb8ce5810b785946b2022-12-21T21:19:11ZengApplied Science Innovations Private LimitedCarbon: Science and Technology0974-05460974-05462015-04-0172122129Enhancing anaerobic digestion of poultry litter in field digestors by incorporating in-line pre-digestor assemblyM. J. Barooah0A. Borah1M. Dutta2Department of Agricultural Engineering, Assam Agricultural University, Jorhat, Assam, India. Department of Agricultural Engineering, Assam Agricultural University, Jorhat, Assam, India. Department of Chemistry, Mariani College, Assam, India. Anaerobic fermentation inside the digestor is the continuous process which results in the formation of useful biogas fuel. All feedstocks are not easily decomposable thereby necessitating the design of an “optional in-line pre-digestor assembly”. Initially a 2 m3 modified fixed dome ‘Deenbandhu’ type biogas plant was commissioned with cattle dung, bypassing the pre-digestor assembly. In a phased manner, cattle dung was substituted with poultry litter as feedstock. Gradually increasing the substitution @ of 10% per fortnight, complete substitution of cattle dung could be attained in 18 week time. Poultry droppings assorted with paddy husk from deep litter system of poultry housings were used as feedstock. As paddy husk were indecomposable inside the digestor, an in-line pre-digestor assembly was used to remove the unwanted paddy husk by water dissolution technique. Enzymatic hydrolysis initiated in the pre-digestion tank in the 24 hours residence time improved the digestibility of the feedstock for generating biogas. The process of cattle dung substitution with poultry litter was complete in 18 weeks duration. Daily gas production was recorded with the help of wet type gas flow meter. The gas produced was continuously used for domestic cooking. The total solid (TS) content of the poultry litter based feedstock slurry was maintained at around the same TS (9 - 10%) as that of cattle dung (dung to water at 1:1 ratio) slurry. With 100% use of poultry droppings at 10.3 % TS, average gas production level was 208.5 lit per kg of TS.http://www.applied-science-innovations.com/cst-web-site/CST-7-2-2015/CST-133.pdfFood wasteseptageanaerobicco-digestionenergybiogasmethane
spellingShingle M. J. Barooah
A. Borah
M. Dutta
Enhancing anaerobic digestion of poultry litter in field digestors by incorporating in-line pre-digestor assembly
Carbon: Science and Technology
Food waste
septage
anaerobic
co-digestion
energy
biogas
methane
title Enhancing anaerobic digestion of poultry litter in field digestors by incorporating in-line pre-digestor assembly
title_full Enhancing anaerobic digestion of poultry litter in field digestors by incorporating in-line pre-digestor assembly
title_fullStr Enhancing anaerobic digestion of poultry litter in field digestors by incorporating in-line pre-digestor assembly
title_full_unstemmed Enhancing anaerobic digestion of poultry litter in field digestors by incorporating in-line pre-digestor assembly
title_short Enhancing anaerobic digestion of poultry litter in field digestors by incorporating in-line pre-digestor assembly
title_sort enhancing anaerobic digestion of poultry litter in field digestors by incorporating in line pre digestor assembly
topic Food waste
septage
anaerobic
co-digestion
energy
biogas
methane
url http://www.applied-science-innovations.com/cst-web-site/CST-7-2-2015/CST-133.pdf
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AT mdutta enhancinganaerobicdigestionofpoultrylitterinfielddigestorsbyincorporatinginlinepredigestorassembly