Detail publikace
Fully Polymeric Distillation Unit Based on Polypropylene Hollow Fibers
KŮDELOVÁ, T. BARTULI, E. STRUNGA, A. HVOŽĎA, J. DOHNAL, M.
Anglický název
Fully Polymeric Distillation Unit Based on Polypropylene Hollow Fibers
Typ
článek v časopise ve Web of Science, Jimp
Jazyk
en
Originální abstrakt
Access to pure water is a very topical issue today. Desalination represents a promising way of obtaining drinking water in areas of shortage. Currently, efforts are being made to replace the metal components of existing desalination units due to the high corrosivity of sea water. Another requirement is easy transportation and assembly. The presented solution combines two types of polymeric hollow fibers that are used to create the distillation unit. Porous polypropylene hollow fiber membranes have been used as an active surface for mass transfer in the distillation unit, while non-porous thermal polypropylene hollow fibers have been employed in the condenser. The large active area to volume ratio of the hollow fiber module improves the efficiency of both units. Hot water is pumped inside the membranes in the distillation unit. Evaporation is first observed at a temperature gradient of 10 °C. The water vapor flows through the tunnel to the condenser where cold water runs inside the fibers. The temperature gradient causes condensation of the vapor, and the condensate is collected. The article presents data for hot water at temperatures of 55, 60, and 65 °C. Optimization of the membrane module is evaluated and presented.
Anglický abstrakt
Access to pure water is a very topical issue today. Desalination represents a promising way of obtaining drinking water in areas of shortage. Currently, efforts are being made to replace the metal components of existing desalination units due to the high corrosivity of sea water. Another requirement is easy transportation and assembly. The presented solution combines two types of polymeric hollow fibers that are used to create the distillation unit. Porous polypropylene hollow fiber membranes have been used as an active surface for mass transfer in the distillation unit, while non-porous thermal polypropylene hollow fibers have been employed in the condenser. The large active area to volume ratio of the hollow fiber module improves the efficiency of both units. Hot water is pumped inside the membranes in the distillation unit. Evaporation is first observed at a temperature gradient of 10 °C. The water vapor flows through the tunnel to the condenser where cold water runs inside the fibers. The temperature gradient causes condensation of the vapor, and the condensate is collected. The article presents data for hot water at temperatures of 55, 60, and 65 °C. Optimization of the membrane module is evaluated and presented.
Klíčová slova anglicky
Polypropylene; hollow fiber membranes; heat transfer; sweep gas membrane distillation
Vydáno
26.03.2021
Nakladatel
MDPI
ISSN
2073-4360
Ročník
13
Číslo
7
Strany od–do
1031–1031
Počet stran
18
BIBTEX
@article{BUT170955,
author="Tereza {Kůdelová} and Erik {Bartuli} and Alan {Strunga} and Jiří {Hvožďa} and Miroslav {Dohnal},
title="Fully Polymeric Distillation Unit Based on Polypropylene Hollow Fibers",
year="2021",
volume="13",
number="7",
month="March",
pages="1031--1031",
publisher="MDPI",
issn="2073-4360"
}