Direct contact membrane distillation: effect of mass transfer on heat transfer

Citation
J. Phattaranawik et R. Jiraratananon, Direct contact membrane distillation: effect of mass transfer on heat transfer, J MEMBR SCI, 188(1), 2001, pp. 137-143
Citations number
11
Categorie Soggetti
Chemistry,"Chemical Engineering
Journal title
JOURNAL OF MEMBRANE SCIENCE
ISSN journal
03767388 → ACNP
Volume
188
Issue
1
Year of publication
2001
Pages
137 - 143
Database
ISI
SICI code
0376-7388(20010630)188:1<137:DCMDEO>2.0.ZU;2-G
Abstract
A new heat transfer model is proposed. The model can identify the effect of mass transfer on heat transfer across the thermal boundary layers at the f eed side (q(f)(m)), the permeate side (q(p)(m)), and inside the membrane (q (v)). The simulation results show that the Dufour effect on the feed side i s higher than that on the permeate side. The maximum values of q(f)(m) and q(p)(m) were 12.9 and 4.0%, respectively, q(p)(m) can he neglected under al l conditions considered and q(f)(m) can be neglected at low feed temperatur es. q(v) is a major component of heat transfer inside the membrane. A simpl ified heat transfer model in which q(f)(m), q(p)(m), and q(c), were not con sidered showed excellent agreement with the proposed full heat transfer mod el. (C) 2001 Elsevier Science B.V. All rights reserved.