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The Impact of Modernization of the Water Treatment Plant on Improving the Quality of Water Directed to Recipients

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The work concerns the modernization of the Water Treatment Plant, the objective of which was to improve the quality of recipients; life by counteracting water deficits and ensuring a stable supply of water with appropriate pressure and quality, in accordance with the requirements of applicable regulations. Installing modern control and measuring equipment, as well as modern devices during the modernization of the facility, will significantly reduce electricity consumption, which will realistically minimize the operating costs. The article describes in detail what the modernization of the water treatment plant was like and what effects of water treatment from the quaternary aquifer were obtained. After the completed modernization of the plant, the County Sanitary and Epidemiological Station gave a positive opinion on all materials and devices used in the modernization of the WTP and agreed to supply the existing water supply with purified water.
Rocznik
Strony
11--17
Opis fizyczny
Bibliogr. 15 poz., rys.
Twórcy
  • Institute of Environmental Engineering and Building Installations, Faculty of Environmental Engineering and Energy, Poznan University of Technology, ul. Berdychowo 4, 60–965 Poznan, Poland
autor
  • Institute of Environmental Engineering and Building Installations, Faculty of Environmental Engineering and Energy, Poznan University of Technology, ul. Berdychowo 4, 60–965 Poznan, Poland
Bibliografia
  • 1. Directive 2020/2184 of the European Parliament and the Council of 16 December 2020 on the quality of water intended for human consumption. https://eur-lex.europa.eu/legal-content/PL/TXT/?uri=celex%3A32020L2184
  • 2. Hurynovich A., Sycziowa E. 2016. Methods of designing groundwater intakes, taking into account the life cycle of deep wells and pump units. Gas, Water and Sanitary Technology, 4, 128-133. (in Polish)
  • 3. Gwoździej-Mazur J., Jadwiszczak P., Kaźmierczak B., Kózka K., StrukSokołowska J., Wartalska K., Wdowikowski M. 2022. The impact of climate change on rainwater harvesting in households in Poland. Applied Water Science, 12(15), 1-15.
  • 4. Juraszka B., Braun S. 2011, Practical aspects of water treatment plant operation on the example of the Wierzchno Water Treatment Plant, Yearbook of Environmental Protection, 13. (in Polish)
  • 5. Mazurkiewicz K., Jeż-Walkowiak J., Michałkiewicz M. 2022. Physicochemical and microbiological quality of rainwater harvested in underground retention tanks. Science of the Total Environment, 814.
  • 6. Michałkiewicz M., Kruszelnicka I., Ginter-Kramarczyk D., Kiersnowska Z., Lemiech-Mirowska E. 2020, Resources, abstraction and consumption of water in Poland. Water technology, 2. (in Polish)
  • 7. Pruss A., Komorowska-Kaufman M., Pruss P. 2021, Removal of organic matter from the underground water - a pilot scale technological research. Applied Water Science, 11(9).
  • 8. Pruss P., Pruss A., Komorowska-Kaufman M. 2018, Configuration of a pilot station in a technological investigation of groundwater treatment. EKO-DOK 2018, E3S Web of Conferences, 44, 00148. https://doi.org/10.1051/e3sconf/20184400148
  • 9. Rak J., Wartalska K., Kaźmierczak B., 2021, Weather risk assessment for collective water supply and sewerage systems. Water, 13(14), 1-22.
  • 10. Rasała M., Tunak-Grzybowska A., Pajewski K. 2017. The launch of a regular water intake underground – law, theory and practice. Geological Review, 65(11/1). (in Polish)
  • 11. Regulation of the Minister of Health on quality intended for human consumption. Journal of Laws No. 2017, item 2294. (in Polish)
  • 12. Sawiniak W., Niemiec P., Wawrzyniuk J., Herman J. 2014, Effects of modernization of technologies and devices for underground water treatment of WTP Lesna in Zabrze, Instal, 2. (in Polish)
  • 13. Szerzyna S., Mołczan M., Wolska M., Adamski W., Wiśniewski J. 2016. Pilot investigation as a case of science and industry cooperation,” The 8th Eastern European Young Water Professionals. Conference “Leaving the Ivory Tower – Bridging the Gap between Academia, Industry, Services and Public Sector”, Gdańsk, Poland.
  • 14. WHO. 2017. Guidelines for drinking-water quality: first addendum to the fourth edition https://www.gov.pl/web/gis/wytyczne-who-dotyczace-jakosci-wody-do-picia-pierwsze-uzupelnienie-do-wydania-czwartego2
  • 15. https://blog.retencja.pl/2017/06/17/zanieczyszczenie-wod-podziemnych (in Polish)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-d61f6461-6700-4a7b-997a-6adb0b0e3f49
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