A new correlation to predict the stability of liquid jet in dense carbon dioxide

Hahm, HC; Veriansyah, B; Kim, J; Kim, WanJoo; Kim, JaeD; Oh, SG; Lee, YWoo

HERO ID

2597057

Reference Type

Journal Article

Year

2008

HERO ID 2597057
In Press No
Year 2008
Title A new correlation to predict the stability of liquid jet in dense carbon dioxide
Authors Hahm, HC; Veriansyah, B; Kim, J; Kim, WanJoo; Kim, JaeD; Oh, SG; Lee, YWoo
Journal Journal of Industrial and Engineering Chemistry
Volume 14
Issue 6
Page Numbers 824-829
Abstract The stability of liquid jet of dichloromethane in dense carbon dioxide was investigated in an aerosol solvent extraction system (ASES). The stability experiments were carried out at pressures ranging 30-150 bar and a temperature of 308 K, with a nozzle size diameter of 0.254 mm. Interfacial tensions of dichloromethane-carbon dioxide system were measured using a capillary rise method to correlate the stability of liquid jets with a dimensionless number. A new dimensionless number, Z*, was proposed to define an atomization flow regime of the liquid jets in dense carbon dioxide. (C) 2008 The Korean Society of Industrial and Engineering Chemistry. Published by Elsevier B.V. All rights reserved.
Doi 10.1016/j.jiec.2008.04.002
Wosid WOS:000262688900020
Is Certified Translation No
Dupe Override No
Is Public Yes
Keyword Correlation; Jet; Dense fluid; Dimensionless number; Interfacial tension