BibTex Citation Data :
@article{Reaktor14932, author = {H. Susanto and I. Wenten}, title = {Experimental And Mathematical Modeling Studies Of Liquid-Liquid Membrane Contactor}, journal = {Reaktor}, volume = {5}, number = {2}, year = {2017}, keywords = {membrane contactor, modeling}, abstract = { Experimental and modeling studies of the effect of tempetarature on liquid-liquid membrane contactor (LLMC) have been done. The experiments were conducted by varying temperature of 25 up to 80 0C, cross flow velocity from 0.02 to 0.05 m/s and feed concentration of 0, 5000 and 30,000 mg/l. In these experiments microporous hydrophobic hollow fiber polypropylene membrane with 0.2 μm was used as a contacting device. The modeling has been done by compiling mathematic equation of mass and heat transfers in liquid-liquid membrane contactor. Both the experimental and modeling result show, the increase in feed temperature increase the flux of pure water exponentially, whereas the flux decrease with increasing the permeate temperature. The feed temperature increase at higher temperature result in hogher flux increase. The concentration of pure water result in the range of 1.8 to 5.6 mg/l depending on feed concentration. Keywords : membrane contactor, modeling }, issn = {2407-5973}, pages = {71--78} doi = {10.14710/reaktor.5.2.71-78}, url = {https://ejournal.undip.ac.id/index.php/reaktor/article/view/14932} }
Refworks Citation Data :
Experimental and modeling studies of the effect of tempetarature on liquid-liquid membrane contactor (LLMC) have been done. The experiments were conducted by varying temperature of 25 up to 80 0C, cross flow velocity from 0.02 to 0.05 m/s and feed concentration of 0, 5000 and 30,000 mg/l. In these experiments microporous hydrophobic hollow fiber polypropylene membrane with 0.2 μm was used as a contacting device. The modeling has been done by compiling mathematic equation of mass and heat transfers in liquid-liquid membrane contactor. Both the experimental and modeling result show, the increase in feed temperature increase the flux of pure water exponentially, whereas the flux decrease with increasing the permeate temperature. The feed temperature increase at higher temperature result in hogher flux increase. The concentration of pure water result in the range of 1.8 to 5.6 mg/l depending on feed concentration.
Keywords : membrane contactor, modeling
Article Metrics:
Last update:
Last update: 2025-11-26 08:00:19
Reaktor provides immediate open access to its published articles under the terms of the Creative Commons Attribution-ShareAlike 4.0 International (CC BY-SA 4.0) license. Authors retain copyright, without restrictions, merely granting the journal a non-exclusive license to publish their article and identify itself as its original publisher.
Whether as an author or a reader, you are free to download, adapt, share, upload to a social network or institutional repository, or redistribute articles for any other lawful purpose in any medium, provided you give appropriate credit to the original author(s) and Reaktor, link to the CC BY-SA license, indicate if changes were made, and redistribute any derivative work under the same license.
JURNAL REAKTOR (p-ISSN: 0852-0798; e-ISSN: 2407-5973)
Published by Departement of Chemical Engineering, Diponegoro University
View My Stats