Treatment of food processing industrial effluent using coagulation and sequential batch reactor

The performance of combined treatment processes, namely coagulation and Sequential Batch Reactor (SBR) to treat effluent from food processing industry was evaluated. The experimental study was conducted in a batch mode using pilot-scale reactor. The parameters used in assessing the treatment system...

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Main Authors: Aris, Azmi, Siang, H. P., Tan, K. K.
Format: Article
Language:en
Published: Faculty of Civil Engineering, UTM 2000
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Online Access:http://eprints.utm.my/8296/1/AzmiAris2000_TreatmentOfFoodProcessingIndustrialEffluent.PDF
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author Aris, Azmi
Siang, H. P.
Tan, K. K.
author_facet Aris, Azmi
Siang, H. P.
Tan, K. K.
author_sort Aris, Azmi
building UTM Library
collection Institutional Repository
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
continent Asia
country Malaysia
description The performance of combined treatment processes, namely coagulation and Sequential Batch Reactor (SBR) to treat effluent from food processing industry was evaluated. The experimental study was conducted in a batch mode using pilot-scale reactor. The parameters used in assessing the treatment system were BOD5, COD and SS. The optimum amount of chemicals for the coagulation process ranges from 20 mg/L to 80 mg/L for coagulant and 60 mg/L to 220 mg/L for polymer while the optimum pH ranges from 5.5 to 7.0. The compliance of Standard A of the Environmental Quality Act was met using the combined process with SBR retention time of 6 hours.
format Article
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institution Universiti Teknologi Malaysia
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publishDate 2000
publisher Faculty of Civil Engineering, UTM
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spelling my.utm.eprints-82962010-06-02T01:53:53Z http://eprints.utm.my/8296/ Treatment of food processing industrial effluent using coagulation and sequential batch reactor Aris, Azmi Siang, H. P. Tan, K. K. TS Manufactures TD Environmental technology. Sanitary engineering The performance of combined treatment processes, namely coagulation and Sequential Batch Reactor (SBR) to treat effluent from food processing industry was evaluated. The experimental study was conducted in a batch mode using pilot-scale reactor. The parameters used in assessing the treatment system were BOD5, COD and SS. The optimum amount of chemicals for the coagulation process ranges from 20 mg/L to 80 mg/L for coagulant and 60 mg/L to 220 mg/L for polymer while the optimum pH ranges from 5.5 to 7.0. The compliance of Standard A of the Environmental Quality Act was met using the combined process with SBR retention time of 6 hours. Faculty of Civil Engineering, UTM 2000 Article PeerReviewed application/pdf en http://eprints.utm.my/8296/1/AzmiAris2000_TreatmentOfFoodProcessingIndustrialEffluent.PDF Aris, Azmi and Siang, H. P. and Tan, K. K. (2000) Treatment of food processing industrial effluent using coagulation and sequential batch reactor. Jurnal Kejuruteraan Awam, 12 (1). pp. 21-29. ISSN 0128-0147 http://portal.psz.utm.my/psz/index.php?option=com_content&task=view&id=128&Itemid=305&PHPSESSID=81b664e998055f65b4ccff8f61bf7cb2
spellingShingle TS Manufactures
TD Environmental technology. Sanitary engineering
Aris, Azmi
Siang, H. P.
Tan, K. K.
Treatment of food processing industrial effluent using coagulation and sequential batch reactor
title Treatment of food processing industrial effluent using coagulation and sequential batch reactor
title_full Treatment of food processing industrial effluent using coagulation and sequential batch reactor
title_fullStr Treatment of food processing industrial effluent using coagulation and sequential batch reactor
title_full_unstemmed Treatment of food processing industrial effluent using coagulation and sequential batch reactor
title_short Treatment of food processing industrial effluent using coagulation and sequential batch reactor
title_sort treatment of food processing industrial effluent using coagulation and sequential batch reactor
topic TS Manufactures
TD Environmental technology. Sanitary engineering
url http://eprints.utm.my/8296/1/AzmiAris2000_TreatmentOfFoodProcessingIndustrialEffluent.PDF
http://eprints.utm.my/8296/
http://portal.psz.utm.my/psz/index.php?option=com_content&task=view&id=128&Itemid=305&PHPSESSID=81b664e998055f65b4ccff8f61bf7cb2
url_provider http://eprints.utm.my/