PENGARUH SIMULASI PENGARUH KONSENTRASI SOLID DAN GEOMETRI BIOREAKTOR MEMBRAN TERENDAM TERHADAP PERPINDAHAN MASSA GAS-LIQUID DAN FLUKS MELALUI MEMBRAN

Abstract: Hydrodynamics characteristic for the mixing of gas-solid-liquid in membrane bioreactor submerged (MBRs) and its influence on mass transfer was studied computationally at various solid concentration, incoming gas rate, and the baffle distance. Computational method was conducted by using sof...

Full description

Bibliographic Details
Main Authors: Aisyah Endah Palupi, Sugeng Winardi, Ali Altway
Format: Article
Language:Indonesian
Published: Universitas Negeri Malang 2012-09-01
Series:Teknologi dan Kejuruan
Subjects:
Online Access:http://journal.um.ac.id/index.php/teknologi-kejuruan/article/view/3159
_version_ 1818607352331370496
author Aisyah Endah Palupi
Sugeng Winardi
Ali Altway
author_facet Aisyah Endah Palupi
Sugeng Winardi
Ali Altway
author_sort Aisyah Endah Palupi
collection DOAJ
description Abstract: Hydrodynamics characteristic for the mixing of gas-solid-liquid in membrane bioreactor submerged (MBRs) and its influence on mass transfer was studied computationally at various solid concentration, incoming gas rate, and the baffle distance. Computational method was conducted by using software GAMBIT 2.1.6. for the making of the grid which represents the calculation domain and conduct the simulation using CFD software FLUENT commercial code 6.2.16. Multiphase flow in reactor was simulated with mixture model, while to model the turbulence characteristic of the flow standard k-ε model was used. The geometrical system investigate is bioreactor in the form of box with flat bottom, 2 baffles, submerged membrane and air passage through the reactor bottom. The membrane type used is hollow fiber, the liquid used is water, and the solid is activated sludge, and air acts as gas phase. The result indicates that closer the baffle to the membrane, the liquid dispersion process goes faster, so that fluid in tank can be mixed perfectly and it can increase the gas-liquid mass transfer rate and the flux at MBRs. The increase of the solid concentration does not significantly affect the change of gas-liquid mass transfer rate and flux through the membrane, but the increase of air flow rate can accelerate the gas-liquid mass transfer and the flux. The position of baffle 9 cm from tank wall is the best position among the others because the amount of air flow is balanced with the circulating fluid flow. Consider from the solid distribution, double inlet MBRs is better compared to that of single inlet. Flux obtained does not show significant difference. From the both approach of the membrane model, membrane model as porous media give the simulation results closer to the experimental data.
first_indexed 2024-12-16T14:25:23Z
format Article
id doaj.art-4e4e729d9de04f60bb33f0188224c1fb
institution Directory Open Access Journal
issn 0852-0062
2477-0442
language Indonesian
last_indexed 2024-12-16T14:25:23Z
publishDate 2012-09-01
publisher Universitas Negeri Malang
record_format Article
series Teknologi dan Kejuruan
spelling doaj.art-4e4e729d9de04f60bb33f0188224c1fb2022-12-21T22:28:23ZindUniversitas Negeri MalangTeknologi dan Kejuruan0852-00622477-04422012-09-0130110.17977/tk.v30i1.31592840PENGARUH SIMULASI PENGARUH KONSENTRASI SOLID DAN GEOMETRI BIOREAKTOR MEMBRAN TERENDAM TERHADAP PERPINDAHAN MASSA GAS-LIQUID DAN FLUKS MELALUI MEMBRANAisyah Endah PalupiSugeng WinardiAli AltwayAbstract: Hydrodynamics characteristic for the mixing of gas-solid-liquid in membrane bioreactor submerged (MBRs) and its influence on mass transfer was studied computationally at various solid concentration, incoming gas rate, and the baffle distance. Computational method was conducted by using software GAMBIT 2.1.6. for the making of the grid which represents the calculation domain and conduct the simulation using CFD software FLUENT commercial code 6.2.16. Multiphase flow in reactor was simulated with mixture model, while to model the turbulence characteristic of the flow standard k-ε model was used. The geometrical system investigate is bioreactor in the form of box with flat bottom, 2 baffles, submerged membrane and air passage through the reactor bottom. The membrane type used is hollow fiber, the liquid used is water, and the solid is activated sludge, and air acts as gas phase. The result indicates that closer the baffle to the membrane, the liquid dispersion process goes faster, so that fluid in tank can be mixed perfectly and it can increase the gas-liquid mass transfer rate and the flux at MBRs. The increase of the solid concentration does not significantly affect the change of gas-liquid mass transfer rate and flux through the membrane, but the increase of air flow rate can accelerate the gas-liquid mass transfer and the flux. The position of baffle 9 cm from tank wall is the best position among the others because the amount of air flow is balanced with the circulating fluid flow. Consider from the solid distribution, double inlet MBRs is better compared to that of single inlet. Flux obtained does not show significant difference. From the both approach of the membrane model, membrane model as porous media give the simulation results closer to the experimental data.http://journal.um.ac.id/index.php/teknologi-kejuruan/article/view/3159MBRshydrodynamicsimulasi CFDgas-solid-liquid
spellingShingle Aisyah Endah Palupi
Sugeng Winardi
Ali Altway
PENGARUH SIMULASI PENGARUH KONSENTRASI SOLID DAN GEOMETRI BIOREAKTOR MEMBRAN TERENDAM TERHADAP PERPINDAHAN MASSA GAS-LIQUID DAN FLUKS MELALUI MEMBRAN
Teknologi dan Kejuruan
MBRs
hydrodynamic
simulasi CFD
gas-solid-liquid
title PENGARUH SIMULASI PENGARUH KONSENTRASI SOLID DAN GEOMETRI BIOREAKTOR MEMBRAN TERENDAM TERHADAP PERPINDAHAN MASSA GAS-LIQUID DAN FLUKS MELALUI MEMBRAN
title_full PENGARUH SIMULASI PENGARUH KONSENTRASI SOLID DAN GEOMETRI BIOREAKTOR MEMBRAN TERENDAM TERHADAP PERPINDAHAN MASSA GAS-LIQUID DAN FLUKS MELALUI MEMBRAN
title_fullStr PENGARUH SIMULASI PENGARUH KONSENTRASI SOLID DAN GEOMETRI BIOREAKTOR MEMBRAN TERENDAM TERHADAP PERPINDAHAN MASSA GAS-LIQUID DAN FLUKS MELALUI MEMBRAN
title_full_unstemmed PENGARUH SIMULASI PENGARUH KONSENTRASI SOLID DAN GEOMETRI BIOREAKTOR MEMBRAN TERENDAM TERHADAP PERPINDAHAN MASSA GAS-LIQUID DAN FLUKS MELALUI MEMBRAN
title_short PENGARUH SIMULASI PENGARUH KONSENTRASI SOLID DAN GEOMETRI BIOREAKTOR MEMBRAN TERENDAM TERHADAP PERPINDAHAN MASSA GAS-LIQUID DAN FLUKS MELALUI MEMBRAN
title_sort pengaruh simulasi pengaruh konsentrasi solid dan geometri bioreaktor membran terendam terhadap perpindahan massa gas liquid dan fluks melalui membran
topic MBRs
hydrodynamic
simulasi CFD
gas-solid-liquid
url http://journal.um.ac.id/index.php/teknologi-kejuruan/article/view/3159
work_keys_str_mv AT aisyahendahpalupi pengaruhsimulasipengaruhkonsentrasisoliddangeometribioreaktormembranterendamterhadapperpindahanmassagasliquiddanfluksmelaluimembran
AT sugengwinardi pengaruhsimulasipengaruhkonsentrasisoliddangeometribioreaktormembranterendamterhadapperpindahanmassagasliquiddanfluksmelaluimembran
AT alialtway pengaruhsimulasipengaruhkonsentrasisoliddangeometribioreaktormembranterendamterhadapperpindahanmassagasliquiddanfluksmelaluimembran