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Environ Sci Pollut Res Int ; 22(8): 6298-307, 2015 Apr.
Article in English | MEDLINE | ID: mdl-25430015

ABSTRACT

This paper presents the purification of eutrophic water using a combination of hydrodynamic cavitation (HC) and ozonation (O3) at a continuous flow of 0.8 m(3) h(-1) on a pilot scale. The maximum removal rate of chlorophyll a using O3 alone and the HC/O3 combination was 62.3 and 78.8%, respectively, under optimal conditions, where the ozone utilization efficiency was 64.5 and 94.8% and total energy consumption was 8.89 and 8.25 kWh m(-3), respectively. Thus, the removal rate of chlorophyll a and the ozone utilization efficiency were improved by 26.5% and 46.9%, respectively, by using the combined technique. Meanwhile, total energy consumption was reduced by 7.2%. Turbidity linearly decreased with chlorophyll a removal rate, but no linear relationship exists between the removal of COD or UV254 and chlorophyll a. As expected, the suction-cavitation-assisted O3 exhibited higher energy efficiency than the extrusion-cavitation-assisted O3 and O3 alone methods.


Subject(s)
Eutrophication/physiology , Ozone , Water Pollutants, Chemical/chemistry , Water Purification/methods , Chlorophyll/analogs & derivatives , Chlorophyll A , Hydrodynamics , Pilot Projects
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