Porosity Effect of Polystyrene Membranes on Desalination Performance: A Combined Experimental and Numerical Heat and Mass Transfer Study in Direct Contact Membrane Distillation
Membrane distillation (MD) is a thermal-based membrane operation with high potential for use in the treatment of aqueous streams. In this study, the linear relationship between the permeate flux and the bulk feed temperature for different electrospun polystyrene membranes is discussed. The dynamics of combined heat and mass transfer mechanisms across different membrane porosities of 77%, 89%, and 94%, each with different thicknesses, are examined. The main results for the effect of porosity with respect to the thermal efficiency and evaporation efficiency of the DCMD system are reported for electrospun polystyrene membranes. A 14.6% increase in thermal efficiency was noted for a 15% increase in membrane porosity. Meanwhile, a 15.6% rise in porosity resulted in a 5% increase in evaporation efficiency. A mathematical validation along with computational predictions is presented and interlinked with the maximum thermal and evaporation efficiencies for the surface membrane temperatures at the feed and temperature boundary regions. This work helps to further understand the interlinked correlations of the surface membrane temperatures at the feed and temperature boundary regions with respect to the change in membrane porosity.
机构:
New Jersey Inst Technol, Otto H York Dept Chem Biol & Pharmaceut Engn, Newark, NJ 07102 USANew Jersey Inst Technol, Otto H York Dept Chem Biol & Pharmaceut Engn, Newark, NJ 07102 USA
Li, Lin
Sirkar, Kamalesh K.
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New Jersey Inst Technol, Otto H York Dept Chem Biol & Pharmaceut Engn, Newark, NJ 07102 USANew Jersey Inst Technol, Otto H York Dept Chem Biol & Pharmaceut Engn, Newark, NJ 07102 USA
机构:
Univ Fed Rio de Janeiro, Mech Eng Dept, Lab Nano & Microfluid & Microsyst LabMEMS, UFRJ,POLI, Rio De Janeiro, Brazil
Univ Fed Rio de Janeiro, UFRJ, COPPE, Rio De Janeiro, BrazilUniv Fed Fluminense UFF, Dept Mech Engn TEM PGMEC, Lab Thermal Sci LATERMO, Niteroi, RJ, Brazil
de Moraes, Diego Busson
Naveira-Cotta, Carolina Palma
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Univ Fed Rio de Janeiro, Mech Eng Dept, Lab Nano & Microfluid & Microsyst LabMEMS, UFRJ,POLI, Rio De Janeiro, Brazil
Univ Fed Rio de Janeiro, UFRJ, COPPE, Rio De Janeiro, BrazilUniv Fed Fluminense UFF, Dept Mech Engn TEM PGMEC, Lab Thermal Sci LATERMO, Niteroi, RJ, Brazil
Naveira-Cotta, Carolina Palma
Cotta, Renato Machado
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Univ Fed Rio de Janeiro, Mech Eng Dept, Lab Nano & Microfluid & Microsyst LabMEMS, UFRJ,POLI, Rio De Janeiro, Brazil
Univ Fed Rio de Janeiro, UFRJ, COPPE, Rio De Janeiro, Brazil
Minist Def, Brazilian Navy, DGDNTM, Gen Directorate Nucl & Technol Dev, Rio De Janeiro, RJ, BrazilUniv Fed Fluminense UFF, Dept Mech Engn TEM PGMEC, Lab Thermal Sci LATERMO, Niteroi, RJ, Brazil