Improved biogas production from palm oil mill effluent by a scaled-down anaerobic treatment process

This is a scale-down study of a 500-m3 methane recovery test plant for anaerobic treatment of palm oil mill effluent (POME) where biomass washout has become one of the problems because of the continuous mixing of effluent during anaerobic treatment of POME. Therefore, in this study, anaerobic POME t...

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Main Authors: Basri, Mohamad Firwance, Yacob, Shahrakbah, Hassan, Mohd Ali, Shirai, Yoshihito, Wakisata, Minato, Zakaria @ Mamat, Mohd Rafein, Phang, Lai Yee
Format: Article
Language:English
Published: Springer 2010
Online Access:http://psasir.upm.edu.my/id/eprint/15135/1/Improved%20biogas%20production%20from%20palm%20oil%20mill%20effluent%20by%20a%20scaled.pdf
http://psasir.upm.edu.my/id/eprint/15135/
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spelling my.upm.eprints.151352016-11-30T07:44:55Z http://psasir.upm.edu.my/id/eprint/15135/ Improved biogas production from palm oil mill effluent by a scaled-down anaerobic treatment process Basri, Mohamad Firwance Yacob, Shahrakbah Hassan, Mohd Ali Shirai, Yoshihito Wakisata, Minato Zakaria @ Mamat, Mohd Rafein Phang, Lai Yee This is a scale-down study of a 500-m3 methane recovery test plant for anaerobic treatment of palm oil mill effluent (POME) where biomass washout has become one of the problems because of the continuous mixing of effluent during anaerobic treatment of POME. Therefore, in this study, anaerobic POME treatment using a scaled down 50-l bioreactor which mimicked the 500-m3 bioreactor was carried out to improve biogas production with and without biomass sedimentation. Three sets of experiments were conducted under different conditions in terms of biomass sedimentation applied to the system. The first experiment was operated under semi-continuous mode whereas the second and third experiments were operated based on mix and settle mode. As expected, biomass retention improved the anaerobic process as the POME treatment incorporated with mix and settle system were able to operate at an organic loading rate (OLR) of 3.5 and 6.0 kg COD/m3/day respectively, while the semi continuous operated anaerobic treatment only achieved OLR of 3.0 kg COD/m3/day. The highest biogas and methane production rates achieved were 2.42 m3/m3 of reactor/day and 0.992 m3/m3 of reactor/day, respectively at OLR 6.0 kg COD/m3/day. The biomass or solids retention in the reactors was represented by the total solids measured in this study. Springer 2010 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/15135/1/Improved%20biogas%20production%20from%20palm%20oil%20mill%20effluent%20by%20a%20scaled.pdf Basri, Mohamad Firwance and Yacob, Shahrakbah and Hassan, Mohd Ali and Shirai, Yoshihito and Wakisata, Minato and Zakaria @ Mamat, Mohd Rafein and Phang, Lai Yee (2010) Improved biogas production from palm oil mill effluent by a scaled-down anaerobic treatment process. World Journal of Microbiology and Biotechnology, 26 (3). pp. 505-514. ISSN 0959-3993; ESSN: 1573-0972 10.1007/s11274-009-0197-x
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
language English
description This is a scale-down study of a 500-m3 methane recovery test plant for anaerobic treatment of palm oil mill effluent (POME) where biomass washout has become one of the problems because of the continuous mixing of effluent during anaerobic treatment of POME. Therefore, in this study, anaerobic POME treatment using a scaled down 50-l bioreactor which mimicked the 500-m3 bioreactor was carried out to improve biogas production with and without biomass sedimentation. Three sets of experiments were conducted under different conditions in terms of biomass sedimentation applied to the system. The first experiment was operated under semi-continuous mode whereas the second and third experiments were operated based on mix and settle mode. As expected, biomass retention improved the anaerobic process as the POME treatment incorporated with mix and settle system were able to operate at an organic loading rate (OLR) of 3.5 and 6.0 kg COD/m3/day respectively, while the semi continuous operated anaerobic treatment only achieved OLR of 3.0 kg COD/m3/day. The highest biogas and methane production rates achieved were 2.42 m3/m3 of reactor/day and 0.992 m3/m3 of reactor/day, respectively at OLR 6.0 kg COD/m3/day. The biomass or solids retention in the reactors was represented by the total solids measured in this study.
format Article
author Basri, Mohamad Firwance
Yacob, Shahrakbah
Hassan, Mohd Ali
Shirai, Yoshihito
Wakisata, Minato
Zakaria @ Mamat, Mohd Rafein
Phang, Lai Yee
spellingShingle Basri, Mohamad Firwance
Yacob, Shahrakbah
Hassan, Mohd Ali
Shirai, Yoshihito
Wakisata, Minato
Zakaria @ Mamat, Mohd Rafein
Phang, Lai Yee
Improved biogas production from palm oil mill effluent by a scaled-down anaerobic treatment process
author_facet Basri, Mohamad Firwance
Yacob, Shahrakbah
Hassan, Mohd Ali
Shirai, Yoshihito
Wakisata, Minato
Zakaria @ Mamat, Mohd Rafein
Phang, Lai Yee
author_sort Basri, Mohamad Firwance
title Improved biogas production from palm oil mill effluent by a scaled-down anaerobic treatment process
title_short Improved biogas production from palm oil mill effluent by a scaled-down anaerobic treatment process
title_full Improved biogas production from palm oil mill effluent by a scaled-down anaerobic treatment process
title_fullStr Improved biogas production from palm oil mill effluent by a scaled-down anaerobic treatment process
title_full_unstemmed Improved biogas production from palm oil mill effluent by a scaled-down anaerobic treatment process
title_sort improved biogas production from palm oil mill effluent by a scaled-down anaerobic treatment process
publisher Springer
publishDate 2010
url http://psasir.upm.edu.my/id/eprint/15135/1/Improved%20biogas%20production%20from%20palm%20oil%20mill%20effluent%20by%20a%20scaled.pdf
http://psasir.upm.edu.my/id/eprint/15135/
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score 13.160551