The Application of Nanofiltration Membrane for Palm Oil Mill Effluent Treatment by Adding Polyaluminium Chloride (PAC) as Coagulant

The rapid development of Crude Palm Oil (CPO) production has led to an increase in the production of Palm Oil Mill Effluent (POME) as well. POME will cause problems in the environment because contains high contaminants. This study aims to investigate the effect of the coagulant Polyaluminium Chlorid...

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Main Authors: Jhon Armedi Pinem, Imanuel Tumanggor, Edy Saputra
Format: Article
Language:English
Published: Chemical Engineering Department of Syiah Kuala University 2020-02-01
Series:Jurnal Rekayasa Kimia & Lingkungan
Subjects:
Online Access:http://jurnal.unsyiah.ac.id/RKL/article/view/13952
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spelling doaj-4a2c5ce17f0747d8b6e166274f684eb82020-11-25T03:27:00ZengChemical Engineering Department of Syiah Kuala UniversityJurnal Rekayasa Kimia & Lingkungan1412-50642356-16612020-02-011511910.23955/rkl.v15i1.1395210691The Application of Nanofiltration Membrane for Palm Oil Mill Effluent Treatment by Adding Polyaluminium Chloride (PAC) as CoagulantJhon Armedi Pinem0Imanuel Tumanggor1Edy Saputra2Universitas RiauUniversitas RiauUniversitas RiauThe rapid development of Crude Palm Oil (CPO) production has led to an increase in the production of Palm Oil Mill Effluent (POME) as well. POME will cause problems in the environment because contains high contaminants. This study aims to investigate the effect of the coagulant Polyaluminium Chloride (PAC) variations and the membrane’s operating pressure on the POME treatment process using the nanofiltration membrane (NF) with the coagulation-flocculation process as pre-treatment. The PAC was used in the coagulation-flocculation process with variations in concentration (5.0; 5.5; 6.0; 6.5; 7.0 g/L). The process was completed by a rapid stirring of 200 rpm for 5 minutes, followed with slow stirring at 60 rpm for 15 minutes and settling time for 30 minutes. The process of membrane nanofiltration was carried out for 60 minutes with variations in operating pressure (8.0; 9.0; and 10 bars). In each treatment process, effluent quality testing was carried out with Biochemical Oxygen Demand (BOD5), Chemical Oxygen Demand (COD), Total Suspended Solid (TSS) and oil/fat as parameters. In addition, an analysis of permeate fluxes and rejection of NF membrane was also carried out. The results of the analysis suggested that the best coagulant doses are 6.0 g/L with the reduction percentage of BOD, COD, TSS and oil/fat at 78.85%; 68.57%; 92.77% and 92.31% respectively. The highest percentage of NF membrane rejection was found at a pressure of 10 bar, which is equal to 94.71%; 94.86%; 97.92% and 95% respectively for BOD, COD, TSS and oil/fat with a flux value of 7.16 L/m2.hours.http://jurnal.unsyiah.ac.id/RKL/article/view/13952palm oil mill effluentnanofiltrasikoagulasiflokulasipoly aluminium chloride
collection DOAJ
language English
format Article
sources DOAJ
author Jhon Armedi Pinem
Imanuel Tumanggor
Edy Saputra
spellingShingle Jhon Armedi Pinem
Imanuel Tumanggor
Edy Saputra
The Application of Nanofiltration Membrane for Palm Oil Mill Effluent Treatment by Adding Polyaluminium Chloride (PAC) as Coagulant
Jurnal Rekayasa Kimia & Lingkungan
palm oil mill effluent
nanofiltrasi
koagulasi
flokulasi
poly aluminium chloride
author_facet Jhon Armedi Pinem
Imanuel Tumanggor
Edy Saputra
author_sort Jhon Armedi Pinem
title The Application of Nanofiltration Membrane for Palm Oil Mill Effluent Treatment by Adding Polyaluminium Chloride (PAC) as Coagulant
title_short The Application of Nanofiltration Membrane for Palm Oil Mill Effluent Treatment by Adding Polyaluminium Chloride (PAC) as Coagulant
title_full The Application of Nanofiltration Membrane for Palm Oil Mill Effluent Treatment by Adding Polyaluminium Chloride (PAC) as Coagulant
title_fullStr The Application of Nanofiltration Membrane for Palm Oil Mill Effluent Treatment by Adding Polyaluminium Chloride (PAC) as Coagulant
title_full_unstemmed The Application of Nanofiltration Membrane for Palm Oil Mill Effluent Treatment by Adding Polyaluminium Chloride (PAC) as Coagulant
title_sort application of nanofiltration membrane for palm oil mill effluent treatment by adding polyaluminium chloride (pac) as coagulant
publisher Chemical Engineering Department of Syiah Kuala University
series Jurnal Rekayasa Kimia & Lingkungan
issn 1412-5064
2356-1661
publishDate 2020-02-01
description The rapid development of Crude Palm Oil (CPO) production has led to an increase in the production of Palm Oil Mill Effluent (POME) as well. POME will cause problems in the environment because contains high contaminants. This study aims to investigate the effect of the coagulant Polyaluminium Chloride (PAC) variations and the membrane’s operating pressure on the POME treatment process using the nanofiltration membrane (NF) with the coagulation-flocculation process as pre-treatment. The PAC was used in the coagulation-flocculation process with variations in concentration (5.0; 5.5; 6.0; 6.5; 7.0 g/L). The process was completed by a rapid stirring of 200 rpm for 5 minutes, followed with slow stirring at 60 rpm for 15 minutes and settling time for 30 minutes. The process of membrane nanofiltration was carried out for 60 minutes with variations in operating pressure (8.0; 9.0; and 10 bars). In each treatment process, effluent quality testing was carried out with Biochemical Oxygen Demand (BOD5), Chemical Oxygen Demand (COD), Total Suspended Solid (TSS) and oil/fat as parameters. In addition, an analysis of permeate fluxes and rejection of NF membrane was also carried out. The results of the analysis suggested that the best coagulant doses are 6.0 g/L with the reduction percentage of BOD, COD, TSS and oil/fat at 78.85%; 68.57%; 92.77% and 92.31% respectively. The highest percentage of NF membrane rejection was found at a pressure of 10 bar, which is equal to 94.71%; 94.86%; 97.92% and 95% respectively for BOD, COD, TSS and oil/fat with a flux value of 7.16 L/m2.hours.
topic palm oil mill effluent
nanofiltrasi
koagulasi
flokulasi
poly aluminium chloride
url http://jurnal.unsyiah.ac.id/RKL/article/view/13952
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