In this paper, the effect of suspended flocs on the tailing of ultraviolet (UV) disinfection kinetics of secondary effluents was examined. To achieve this goal, final effluents produced in two processes for treating wastewater; namely, a trickling filter system and an activated sludge system, were collected and their UV disinfection were compared. Tailing of the UV dose response curve was controlled by the fraction of flocs that are both culturable and UV-resistant, referred to as the ‘tailing propensity’. Using this parameter, the contribution of various floc size fractions in reducing the UV disinfection efficiency of wastewater samples was quantified. Activated sludge flocs larger than 125 μm exhibited as much as 35 times greater tailing propensity than smaller flocs in the range of 20–25 μm. Within a fixed size range, the tailing propensity of flocs generated in the trickling filter system was 3 to 8 times higher than that of activated sludge flocs, and this difference increased with the floc size. A mathematical model was developed to predict the UV disinfection of secondary effluents from suspended particle size distribution data. The model showed good agreement with experimental results.
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Research Article|
April 25 2017
Tailing propensity in the ultraviolet disinfection of trickling filter and activated sludge wastewater treatment processes
Thiam C. Tan;
Thiam C. Tan
Department of Chemical Engineering and Applied Chemistry, University of Toronto, 200 College street, Toronto, Ontario, Canada M5S3E5
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Yaldah Azimi;
Yaldah Azimi
Department of Chemical Engineering and Applied Chemistry, University of Toronto, 200 College street, Toronto, Ontario, Canada M5S3E5
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Ramin R. Farnood
Department of Chemical Engineering and Applied Chemistry, University of Toronto, 200 College street, Toronto, Ontario, Canada M5S3E5
E-mail: [email protected]
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Water Sci Technol (2017) 76 (3): 623–632.
Article history
Received:
August 04 2016
Accepted:
April 13 2017
Citation
Thiam C. Tan, Yaldah Azimi, Ramin R. Farnood; Tailing propensity in the ultraviolet disinfection of trickling filter and activated sludge wastewater treatment processes. Water Sci Technol 31 July 2017; 76 (3): 623–632. doi: https://doi.org/10.2166/wst.2017.242
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