Mathematical Model for Clarifying Low-Concentration Suspension by Dissolved Air Flotation

Author:

Haiduchok O.ORCID,Syrovatsky O.ORCID,Karahiaur A.ORCID,Kostenko S.ORCID

Publisher

Springer International Publishing

Reference12 articles.

1. Syrovatsky, O., Babenko, S., Haiduchok, O., & Rubachyk, Yu. (2015). Ways to improve the efficiency of clarification of natural low turbidity colored water by dissolved air flotation method. Scientific Bulletin of Civil Engineering, 80(2), 209–213.

2. Epoyan, S. M., Kolotilo, V. D., & Drushliak, O. G. (2010). Vodopostachannia ta ochystka pryrodnykh vod: Navchalnyi posibnyk Kharkiv: Factor.

3. Epoyan, S., Karahiaur, A., Volkov, V., & Babenko, S. (2018). Research into the influence of vertical drainage elements on the operational efficiency of rapid filters. Eastern-European Journal of Enterprise Technologies, 1/10(91), 62–69. doi: https://www.doi.org/10.15587/1729-4061.2018.123559 .

4. Haarhoff, J. (2008). Dissolved air flotation: Progress and prospects for drinking water treatment. Journal of Water Supply: Research and Technology, 57(8), 555–567. doi: https://www.doi.org/10.2166/aqua.2008.046 .

5. Edzwald, J. K. (2008). Develompents in dissolved air flotation, water quality technology conference and exposition, 2008. New York, USA: American Water Works Association.

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