Improving the Quality of Anaerobically-Pretreated Palm Oil Mill Effluent Using Electrocoagulation

The palm oil extraction process generates large amounts of effluents with very high concentrations of pollutants, even though they are subjected to anaerobic pretreatment. Further treatment is needed in order to ensure that the effluent is safe for disposal or reuse. This work was conducted to evalu...

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Main Author: Illah Sailah
Format: Article
Language:English
Published: Polish Society of Ecological Engineering (PTIE) 2021-01-01
Series:Journal of Ecological Engineering
Subjects:
Online Access:http://www.journalssystem.com/jeeng/Improving-the-quality-of-anaerobically-pretreated-palm-oil-r-nmill-effluent-using,128867,0,2.html
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spelling doaj-6fbe2eb5fff544e4bd9f129f7a4385a32020-12-03T09:11:46ZengPolish Society of Ecological Engineering (PTIE)Journal of Ecological Engineering2299-89932021-01-0122111212410.12911/22998993/128867128867Improving the Quality of Anaerobically-Pretreated Palm Oil Mill Effluent Using ElectrocoagulationIllah Sailah0Department Agroindustrial Technology - IPB University. Jl. Kamper IPB Campus Darmaga Bogor IndonesiaThe palm oil extraction process generates large amounts of effluents with very high concentrations of pollutants, even though they are subjected to anaerobic pretreatment. Further treatment is needed in order to ensure that the effluent is safe for disposal or reuse. This work was conducted to evaluate the performance of the electrocoagulation process in removing pollutants from the anaerobically-pretreated palm oil mill effluent. A 1000 ml beaker glass equipped with a magnetic stirrer was used as an electrocoagulation reactor with four plates of aluminum electrode @ 12 cm x 2 cm and an effective area of 0.1 m2 arranged in a bipolar configuration. The experiments run in a batch mode were carried out at various voltage levels and contact times, namely 10, 15, and 20 V for 15, 30, 45 and 60 min. The level of pollutant removal and electrical energy consumption were determined. The electrocoagulation process at 15 V for 30 min produced the highest level of pollutant removal for TSS, turbidity, color, COD, and BOD5, i.e. 90%, 86%, 93%, 87%, and 97%, respectively. The estimated operating costs for these process conditions are 1.48 USD/m3. A second order empirical model was developed to describe the TSS removal in the POME electrocoagulation process. The electrocoagulation with aluminum electrodes can significantly reduce various types of pollutants of anaerobically-pretreated POME, such as TSS, turbidity, color, COD, and BOD5. The estimated cost of EC operation is cheaper than the chemical coagulation process.http://www.journalssystem.com/jeeng/Improving-the-quality-of-anaerobically-pretreated-palm-oil-r-nmill-effluent-using,128867,0,2.htmlelectrocoagulationpalm oil mill effluent (pome)empirical modelpollutant removalsaluminum electrodes
collection DOAJ
language English
format Article
sources DOAJ
author Illah Sailah
spellingShingle Illah Sailah
Improving the Quality of Anaerobically-Pretreated Palm Oil Mill Effluent Using Electrocoagulation
Journal of Ecological Engineering
electrocoagulation
palm oil mill effluent (pome)
empirical model
pollutant removals
aluminum electrodes
author_facet Illah Sailah
author_sort Illah Sailah
title Improving the Quality of Anaerobically-Pretreated Palm Oil Mill Effluent Using Electrocoagulation
title_short Improving the Quality of Anaerobically-Pretreated Palm Oil Mill Effluent Using Electrocoagulation
title_full Improving the Quality of Anaerobically-Pretreated Palm Oil Mill Effluent Using Electrocoagulation
title_fullStr Improving the Quality of Anaerobically-Pretreated Palm Oil Mill Effluent Using Electrocoagulation
title_full_unstemmed Improving the Quality of Anaerobically-Pretreated Palm Oil Mill Effluent Using Electrocoagulation
title_sort improving the quality of anaerobically-pretreated palm oil mill effluent using electrocoagulation
publisher Polish Society of Ecological Engineering (PTIE)
series Journal of Ecological Engineering
issn 2299-8993
publishDate 2021-01-01
description The palm oil extraction process generates large amounts of effluents with very high concentrations of pollutants, even though they are subjected to anaerobic pretreatment. Further treatment is needed in order to ensure that the effluent is safe for disposal or reuse. This work was conducted to evaluate the performance of the electrocoagulation process in removing pollutants from the anaerobically-pretreated palm oil mill effluent. A 1000 ml beaker glass equipped with a magnetic stirrer was used as an electrocoagulation reactor with four plates of aluminum electrode @ 12 cm x 2 cm and an effective area of 0.1 m2 arranged in a bipolar configuration. The experiments run in a batch mode were carried out at various voltage levels and contact times, namely 10, 15, and 20 V for 15, 30, 45 and 60 min. The level of pollutant removal and electrical energy consumption were determined. The electrocoagulation process at 15 V for 30 min produced the highest level of pollutant removal for TSS, turbidity, color, COD, and BOD5, i.e. 90%, 86%, 93%, 87%, and 97%, respectively. The estimated operating costs for these process conditions are 1.48 USD/m3. A second order empirical model was developed to describe the TSS removal in the POME electrocoagulation process. The electrocoagulation with aluminum electrodes can significantly reduce various types of pollutants of anaerobically-pretreated POME, such as TSS, turbidity, color, COD, and BOD5. The estimated cost of EC operation is cheaper than the chemical coagulation process.
topic electrocoagulation
palm oil mill effluent (pome)
empirical model
pollutant removals
aluminum electrodes
url http://www.journalssystem.com/jeeng/Improving-the-quality-of-anaerobically-pretreated-palm-oil-r-nmill-effluent-using,128867,0,2.html
work_keys_str_mv AT illahsailah improvingthequalityofanaerobicallypretreatedpalmoilmilleffluentusingelectrocoagulation
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