Hydrodynamics of an external-loop airlift reactor with inserted membrane

Abstract The objective of this study was to investigate the hydrodynamics of an external-loop airlift membrane reactor (ELAMR). The ELAMR was operated in two modes: without (mode A) and with bubbles in the downcomer (mode B), depending on the liquid level in the gas separator. The influence of the g...

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Main Authors: Predrag S. Kojić, Svetlana S. Popović, Milenko S. Tokić, Ivana M. Šijački, Nataša Lj. Lukić, Dragica Z. Jovičević, Dragan Lj. Petrović
Format: Article
Language:English
Published: Brazilian Society of Chemical Engineering
Series:Brazilian Journal of Chemical Engineering
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0104-66322017000200493&lng=en&tlng=en
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spelling doaj-6329c40e98514d3e89b4f4b9501e5ab22020-11-24T21:04:50ZengBrazilian Society of Chemical EngineeringBrazilian Journal of Chemical Engineering1678-438334249350510.1590/0104-6632.20170342s20150399S0104-66322017000200493Hydrodynamics of an external-loop airlift reactor with inserted membranePredrag S. KojićSvetlana S. PopovićMilenko S. TokićIvana M. ŠijačkiNataša Lj. LukićDragica Z. JovičevićDragan Lj. PetrovićAbstract The objective of this study was to investigate the hydrodynamics of an external-loop airlift membrane reactor (ELAMR). The ELAMR was operated in two modes: without (mode A) and with bubbles in the downcomer (mode B), depending on the liquid level in the gas separator. The influence of the gas distributor’s geometry and various alcohol solutions on the hydrodynamics of the ELAMR was studied. Results for the gas holdup and the downcomer liquid velocity are commented with respect to an external-loop airlift reactor of the same geometry but without the membrane in the downcomer (ELAR). Due to the presence of the membrane in the downcomer, acting as the local hydrodynamic resistance, the gas holdup in the riser of the ELAMR increases maximally by 16%, while the liquid velocity in the downcomer decreases up to 50%. The values of the gas holdup and liquid velocity predicted by the application of empirical power law correlations and a feed forward back propagation neural network (ANN) are in very good agreement with experimental values.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0104-66322017000200493&lng=en&tlng=enmembrane air lift reactorhydrodynamicsdilute alcohol solutiongeometry of distributormultichannel membrane
collection DOAJ
language English
format Article
sources DOAJ
author Predrag S. Kojić
Svetlana S. Popović
Milenko S. Tokić
Ivana M. Šijački
Nataša Lj. Lukić
Dragica Z. Jovičević
Dragan Lj. Petrović
spellingShingle Predrag S. Kojić
Svetlana S. Popović
Milenko S. Tokić
Ivana M. Šijački
Nataša Lj. Lukić
Dragica Z. Jovičević
Dragan Lj. Petrović
Hydrodynamics of an external-loop airlift reactor with inserted membrane
Brazilian Journal of Chemical Engineering
membrane air lift reactor
hydrodynamics
dilute alcohol solution
geometry of distributor
multichannel membrane
author_facet Predrag S. Kojić
Svetlana S. Popović
Milenko S. Tokić
Ivana M. Šijački
Nataša Lj. Lukić
Dragica Z. Jovičević
Dragan Lj. Petrović
author_sort Predrag S. Kojić
title Hydrodynamics of an external-loop airlift reactor with inserted membrane
title_short Hydrodynamics of an external-loop airlift reactor with inserted membrane
title_full Hydrodynamics of an external-loop airlift reactor with inserted membrane
title_fullStr Hydrodynamics of an external-loop airlift reactor with inserted membrane
title_full_unstemmed Hydrodynamics of an external-loop airlift reactor with inserted membrane
title_sort hydrodynamics of an external-loop airlift reactor with inserted membrane
publisher Brazilian Society of Chemical Engineering
series Brazilian Journal of Chemical Engineering
issn 1678-4383
description Abstract The objective of this study was to investigate the hydrodynamics of an external-loop airlift membrane reactor (ELAMR). The ELAMR was operated in two modes: without (mode A) and with bubbles in the downcomer (mode B), depending on the liquid level in the gas separator. The influence of the gas distributor’s geometry and various alcohol solutions on the hydrodynamics of the ELAMR was studied. Results for the gas holdup and the downcomer liquid velocity are commented with respect to an external-loop airlift reactor of the same geometry but without the membrane in the downcomer (ELAR). Due to the presence of the membrane in the downcomer, acting as the local hydrodynamic resistance, the gas holdup in the riser of the ELAMR increases maximally by 16%, while the liquid velocity in the downcomer decreases up to 50%. The values of the gas holdup and liquid velocity predicted by the application of empirical power law correlations and a feed forward back propagation neural network (ANN) are in very good agreement with experimental values.
topic membrane air lift reactor
hydrodynamics
dilute alcohol solution
geometry of distributor
multichannel membrane
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0104-66322017000200493&lng=en&tlng=en
work_keys_str_mv AT predragskojic hydrodynamicsofanexternalloopairliftreactorwithinsertedmembrane
AT svetlanaspopovic hydrodynamicsofanexternalloopairliftreactorwithinsertedmembrane
AT milenkostokic hydrodynamicsofanexternalloopairliftreactorwithinsertedmembrane
AT ivanamsijacki hydrodynamicsofanexternalloopairliftreactorwithinsertedmembrane
AT natasaljlukic hydrodynamicsofanexternalloopairliftreactorwithinsertedmembrane
AT dragicazjovicevic hydrodynamicsofanexternalloopairliftreactorwithinsertedmembrane
AT draganljpetrovic hydrodynamicsofanexternalloopairliftreactorwithinsertedmembrane
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