Separation of mineral oil droplets using polypropylene fibre bed coalescence

This paper investigates the separation possibilities of model emulsion oil-in-water using polypropylene fibre bed coalescence. Experiments were carried out over a wide range of physico-chemical characteristics of mineral oils, bed permeability and operating fluid velocities. The aim of this...

Full description

Bibliographic Details
Main Authors: Govedarica Dragan D., Šećerov-Sokolović Radmila M., Kiralj Arpad I., Govedarica Olga M., Sokolović Dunja S., Hadnađev-Kostić Milica S.
Format: Article
Language:English
Published: Association of Chemical Engineers of Serbia 2015-01-01
Series:Hemijska Industrija
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0367-598X/2015/0367-598X1400047G.pdf
id doaj-ff580be5cd714ddcad7e8e2096aeff28
record_format Article
spelling doaj-ff580be5cd714ddcad7e8e2096aeff282020-11-25T00:23:30ZengAssociation of Chemical Engineers of SerbiaHemijska Industrija 0367-598X2217-74262015-01-0169433934510.2298/HEMIND140322047G0367-598X1400047GSeparation of mineral oil droplets using polypropylene fibre bed coalescenceGovedarica Dragan D.0Šećerov-Sokolović Radmila M.1Kiralj Arpad I.2Govedarica Olga M.3Sokolović Dunja S.4Hadnađev-Kostić Milica S.5Faculty of Technology, Novi SadFaculty of Technology, Novi SadFaculty of Technology, Novi SadFaculty of Technology, Novi SadFaculty of Technical Sciences, Novi SadFaculty of Technology, Novi SadThis paper investigates the separation possibilities of model emulsion oil-in-water using polypropylene fibre bed coalescence. Experiments were carried out over a wide range of physico-chemical characteristics of mineral oils, bed permeability and operating fluid velocities. The aim of this study was to analyse the influence of the dispersed oil phase nature and of the bed geometry on the separation efficiency. From the obtained results, it can be concluded that polypropylene fibres in the broadest studied range of bed permeabilities and fluid velocities, effectively separate oil that is highly polar. On the contrary, for the other two investigated oils at low values of bed permeability a region was detected in which the coalescer is incapable to operate. It has to be emphasized that the polypropylene fibres efficiently separate all three investigated oils at the highest studied bed permeability. [Projekat Ministarstva nauke Republike Srbije, br. 172022]http://www.doiserbia.nb.rs/img/doi/0367-598X/2015/0367-598X1400047G.pdfoily water separationbed coalescenceFibre materialpolypropylene
collection DOAJ
language English
format Article
sources DOAJ
author Govedarica Dragan D.
Šećerov-Sokolović Radmila M.
Kiralj Arpad I.
Govedarica Olga M.
Sokolović Dunja S.
Hadnađev-Kostić Milica S.
spellingShingle Govedarica Dragan D.
Šećerov-Sokolović Radmila M.
Kiralj Arpad I.
Govedarica Olga M.
Sokolović Dunja S.
Hadnađev-Kostić Milica S.
Separation of mineral oil droplets using polypropylene fibre bed coalescence
Hemijska Industrija
oily water separation
bed coalescence
Fibre material
polypropylene
author_facet Govedarica Dragan D.
Šećerov-Sokolović Radmila M.
Kiralj Arpad I.
Govedarica Olga M.
Sokolović Dunja S.
Hadnađev-Kostić Milica S.
author_sort Govedarica Dragan D.
title Separation of mineral oil droplets using polypropylene fibre bed coalescence
title_short Separation of mineral oil droplets using polypropylene fibre bed coalescence
title_full Separation of mineral oil droplets using polypropylene fibre bed coalescence
title_fullStr Separation of mineral oil droplets using polypropylene fibre bed coalescence
title_full_unstemmed Separation of mineral oil droplets using polypropylene fibre bed coalescence
title_sort separation of mineral oil droplets using polypropylene fibre bed coalescence
publisher Association of Chemical Engineers of Serbia
series Hemijska Industrija
issn 0367-598X
2217-7426
publishDate 2015-01-01
description This paper investigates the separation possibilities of model emulsion oil-in-water using polypropylene fibre bed coalescence. Experiments were carried out over a wide range of physico-chemical characteristics of mineral oils, bed permeability and operating fluid velocities. The aim of this study was to analyse the influence of the dispersed oil phase nature and of the bed geometry on the separation efficiency. From the obtained results, it can be concluded that polypropylene fibres in the broadest studied range of bed permeabilities and fluid velocities, effectively separate oil that is highly polar. On the contrary, for the other two investigated oils at low values of bed permeability a region was detected in which the coalescer is incapable to operate. It has to be emphasized that the polypropylene fibres efficiently separate all three investigated oils at the highest studied bed permeability. [Projekat Ministarstva nauke Republike Srbije, br. 172022]
topic oily water separation
bed coalescence
Fibre material
polypropylene
url http://www.doiserbia.nb.rs/img/doi/0367-598X/2015/0367-598X1400047G.pdf
work_keys_str_mv AT govedaricadragand separationofmineraloildropletsusingpolypropylenefibrebedcoalescence
AT secerovsokolovicradmilam separationofmineraloildropletsusingpolypropylenefibrebedcoalescence
AT kiraljarpadi separationofmineraloildropletsusingpolypropylenefibrebedcoalescence
AT govedaricaolgam separationofmineraloildropletsusingpolypropylenefibrebedcoalescence
AT sokolovicdunjas separationofmineraloildropletsusingpolypropylenefibrebedcoalescence
AT hadnađevkosticmilicas separationofmineraloildropletsusingpolypropylenefibrebedcoalescence
_version_ 1725356668081930240