Reactivation of preserved aerobic granular sludge using palm oil mill effluent

Generation of wastes in the form of palm oil mill effluent (POME) is unavoidable due to increase in oil palm development worldwide. Direct discharge of POME into receiving water bodies is strongly discouraged due to high chemical and biochemical oxygen demand concentrations, respectively. Aerobic gr...

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Main Authors: Abdullah, Norhayati, Muhammad Yuzir, Muhamad Ali, Ashtari, Niloufar
Format: Article
Published: Research Journal of Pharmaceutical, Biological and Chemical Sciences 2014
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Online Access:http://eprints.utm.my/id/eprint/62398/
http://www.rjpbcs.com/pdf/2014_5(4)/[56].pdf
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spelling my.utm.623982017-06-14T01:13:48Z http://eprints.utm.my/id/eprint/62398/ Reactivation of preserved aerobic granular sludge using palm oil mill effluent Abdullah, Norhayati Muhammad Yuzir, Muhamad Ali Ashtari, Niloufar QH Natural history Generation of wastes in the form of palm oil mill effluent (POME) is unavoidable due to increase in oil palm development worldwide. Direct discharge of POME into receiving water bodies is strongly discouraged due to high chemical and biochemical oxygen demand concentrations, respectively. Aerobic granulation technology features microbial aggregates generated following immobilization and cell-to-cell adhesion of multiple bacteria. Primary observation has shown that bacterial aggregates may survive for a long period of time at 4°C and possess the capability to recover their metabolic activities upon reactivation. In this study, preserved aerobic granular sludge previously developed using POME was reactivated in modified laboratory scale sequencing batch reactors (SBRs) termed as R1 and R2 which were operated at fixed OLR of 2.5 kgCOD m-3d-1. R1 was operated with the preserved granules while R2 was the control reactor. Microscopic examinations have shown good microstructure of aggregates in R1 as compared to R2. Good chemical oxygen demand (COD) removal of 75% was achieved in R1 as compared to 68% in R2 indicating successful reactivation of aerobic granules despite 3 months preservation period. Research Journal of Pharmaceutical, Biological and Chemical Sciences 2014 Article PeerReviewed Abdullah, Norhayati and Muhammad Yuzir, Muhamad Ali and Ashtari, Niloufar (2014) Reactivation of preserved aerobic granular sludge using palm oil mill effluent. Research Journal of Pharmaceutical, Biological and Chemical Sciences, 5 (4). pp. 519-527. ISSN 0975-8585 http://www.rjpbcs.com/pdf/2014_5(4)/[56].pdf
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic QH Natural history
spellingShingle QH Natural history
Abdullah, Norhayati
Muhammad Yuzir, Muhamad Ali
Ashtari, Niloufar
Reactivation of preserved aerobic granular sludge using palm oil mill effluent
description Generation of wastes in the form of palm oil mill effluent (POME) is unavoidable due to increase in oil palm development worldwide. Direct discharge of POME into receiving water bodies is strongly discouraged due to high chemical and biochemical oxygen demand concentrations, respectively. Aerobic granulation technology features microbial aggregates generated following immobilization and cell-to-cell adhesion of multiple bacteria. Primary observation has shown that bacterial aggregates may survive for a long period of time at 4°C and possess the capability to recover their metabolic activities upon reactivation. In this study, preserved aerobic granular sludge previously developed using POME was reactivated in modified laboratory scale sequencing batch reactors (SBRs) termed as R1 and R2 which were operated at fixed OLR of 2.5 kgCOD m-3d-1. R1 was operated with the preserved granules while R2 was the control reactor. Microscopic examinations have shown good microstructure of aggregates in R1 as compared to R2. Good chemical oxygen demand (COD) removal of 75% was achieved in R1 as compared to 68% in R2 indicating successful reactivation of aerobic granules despite 3 months preservation period.
format Article
author Abdullah, Norhayati
Muhammad Yuzir, Muhamad Ali
Ashtari, Niloufar
author_facet Abdullah, Norhayati
Muhammad Yuzir, Muhamad Ali
Ashtari, Niloufar
author_sort Abdullah, Norhayati
title Reactivation of preserved aerobic granular sludge using palm oil mill effluent
title_short Reactivation of preserved aerobic granular sludge using palm oil mill effluent
title_full Reactivation of preserved aerobic granular sludge using palm oil mill effluent
title_fullStr Reactivation of preserved aerobic granular sludge using palm oil mill effluent
title_full_unstemmed Reactivation of preserved aerobic granular sludge using palm oil mill effluent
title_sort reactivation of preserved aerobic granular sludge using palm oil mill effluent
publisher Research Journal of Pharmaceutical, Biological and Chemical Sciences
publishDate 2014
url http://eprints.utm.my/id/eprint/62398/
http://www.rjpbcs.com/pdf/2014_5(4)/[56].pdf
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score 13.19449