Pre-Treatment of sewage sludge to enhance biogas production to generate green energy for reduction of carbon footprint in sewage treatment plant (STP)

This work elucidates the effects of pre-treatment of sewage sludge for enhancement of biogas production to generate green energy and reduction of carbon footprint in STPs. Microwave pre-treatment has been adopted for this study. Experiment works have been designed and conducted to examine the effect...

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Main Authors: David H., Palanisamy K., Normanbhay S.
Other Authors: 56244850600
Format: Conference Paper
Published: IEEE Computer Society 2023
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spelling my.uniten.dspace-220942023-05-16T10:47:20Z Pre-Treatment of sewage sludge to enhance biogas production to generate green energy for reduction of carbon footprint in sewage treatment plant (STP) David H. Palanisamy K. Normanbhay S. 56244850600 56803626200 22135844300 This work elucidates the effects of pre-treatment of sewage sludge for enhancement of biogas production to generate green energy and reduction of carbon footprint in STPs. Microwave pre-treatment has been adopted for this study. Experiment works have been designed and conducted to examine the effectiveness on the disintegration of sewage sludge and biogas production of continuous and intermittent batch microwave pre-treatment at 80 W for 5 minutes and 15 minutes. The quantity of biogas produced with and without pretreatment has been evaluated and compared whereby the continuous microwave pre-treated for 5 minutes and 15 minutes enhances the anaerobic digestibility rate and biogas production by 38.5% and 11.9% respectively compared to intermittently pre-treated sewage sludge sample which only increases by 15.4% and 4.8%. The additional quantity of biogas has shown to be able to increase potential green energy to 45% from current 7% which can offset the energy usage generated by fossil fuels and reduces the CO2 emission to generate energy from fossil fuels. The replacement of green energy has potential to reduce annual CO2 emission by 4,329.6 ton for a modern mechanized STP for 250,000 population equivalent in urban setting. © 2014 Asian Institute of Technology. Final 2023-05-16T02:47:20Z 2023-05-16T02:47:20Z 2014 Conference Paper 2-s2.0-84903689147 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84903689147&partnerID=40&md5=629de45ef36a4b759cea2d2a55da4312 https://irepository.uniten.edu.my/handle/123456789/22094 6829007 IEEE Computer Society Scopus
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
description This work elucidates the effects of pre-treatment of sewage sludge for enhancement of biogas production to generate green energy and reduction of carbon footprint in STPs. Microwave pre-treatment has been adopted for this study. Experiment works have been designed and conducted to examine the effectiveness on the disintegration of sewage sludge and biogas production of continuous and intermittent batch microwave pre-treatment at 80 W for 5 minutes and 15 minutes. The quantity of biogas produced with and without pretreatment has been evaluated and compared whereby the continuous microwave pre-treated for 5 minutes and 15 minutes enhances the anaerobic digestibility rate and biogas production by 38.5% and 11.9% respectively compared to intermittently pre-treated sewage sludge sample which only increases by 15.4% and 4.8%. The additional quantity of biogas has shown to be able to increase potential green energy to 45% from current 7% which can offset the energy usage generated by fossil fuels and reduces the CO2 emission to generate energy from fossil fuels. The replacement of green energy has potential to reduce annual CO2 emission by 4,329.6 ton for a modern mechanized STP for 250,000 population equivalent in urban setting. © 2014 Asian Institute of Technology.
author2 56244850600
author_facet 56244850600
David H.
Palanisamy K.
Normanbhay S.
format Conference Paper
author David H.
Palanisamy K.
Normanbhay S.
spellingShingle David H.
Palanisamy K.
Normanbhay S.
Pre-Treatment of sewage sludge to enhance biogas production to generate green energy for reduction of carbon footprint in sewage treatment plant (STP)
author_sort David H.
title Pre-Treatment of sewage sludge to enhance biogas production to generate green energy for reduction of carbon footprint in sewage treatment plant (STP)
title_short Pre-Treatment of sewage sludge to enhance biogas production to generate green energy for reduction of carbon footprint in sewage treatment plant (STP)
title_full Pre-Treatment of sewage sludge to enhance biogas production to generate green energy for reduction of carbon footprint in sewage treatment plant (STP)
title_fullStr Pre-Treatment of sewage sludge to enhance biogas production to generate green energy for reduction of carbon footprint in sewage treatment plant (STP)
title_full_unstemmed Pre-Treatment of sewage sludge to enhance biogas production to generate green energy for reduction of carbon footprint in sewage treatment plant (STP)
title_sort pre-treatment of sewage sludge to enhance biogas production to generate green energy for reduction of carbon footprint in sewage treatment plant (stp)
publisher IEEE Computer Society
publishDate 2023
_version_ 1806424519523434496
score 13.188404