Choice of the efficient flow diagram of biological wastewater treatment at municipal wastewater treatment plants

dc.citation.epage250
dc.citation.issue4
dc.citation.spage244
dc.contributor.affiliationNational University of Water and Environmental Engineering
dc.contributor.authorProtsenko, Serhii
dc.contributor.authorKizyeyev, Mykola
dc.contributor.authorNovytska, Olha
dc.coverage.placenameЛьвів
dc.coverage.placenameLviv
dc.date.accessioned2023-05-04T07:46:02Z
dc.date.available2023-05-04T07:46:02Z
dc.date.created2021-06-01
dc.date.issued2021-06-01
dc.description.abstractThe possibility of increasing the efficiency of municipal wastewater treatment plant (WWTP) operation by changing the flow diagram of biological wastewater treatment in aeration tanks at minimum expenses for their reconstruction is shown in the paper on the example of one of the regional centres of Ukraine. The technology of nitri-denitrification of wastewater according to the flow diagram of the two-stage modified Ludzak-Ettinger process is offered for the considered conditions. The distribution of wastewater flows and internal nitrate recycling between the individual stages of this flow diagram has been optimized in order to minimize the residual content of total nitrogen in the treated effluents. Computer dynamic modelling of biochemical processes has proved the high efficiency and reliability of the flow diagram proposed by the authors.
dc.format.extent244-250
dc.format.pages7
dc.identifier.citationProtsenko S. Choice of the efficient flow diagram of biological wastewater treatment at municipal wastewater treatment plants / Serhii Protsenko, Mykola Kizyeyev, Olha Novytska // Environmental Problems. — Lviv : Lviv Politechnic Publishing House, 2021. — Vol 6. — No 4. — P. 244–250.
dc.identifier.citationenProtsenko S. Choice of the efficient flow diagram of biological wastewater treatment at municipal wastewater treatment plants / Serhii Protsenko, Mykola Kizyeyev, Olha Novytska // Environmental Problems. — Lviv : Lviv Politechnic Publishing House, 2021. — Vol 6. — No 4. — P. 244–250.
dc.identifier.doidoi.org/10.23939/ep2021.04.244
dc.identifier.urihttps://ena.lpnu.ua/handle/ntb/59008
dc.language.isoen
dc.publisherВидавництво Львівської політехніки
dc.publisherLviv Politechnic Publishing House
dc.relation.ispartofEnvironmental Problems, 4 (6), 2021
dc.relation.referencesNational report on the quality of drinking water and the state of
dc.relation.referencesdrinking water supply in Ukraine in 2019. (2020). Kyiv:
dc.relation.referencesMinistry of Development of Communities and Territories of
dc.relation.referencesUkraine. Retrieved from https://www.minregion.gov.ua/wpcontent/uploads/2020/12/naczionalna-dopovid-za-2019-rik.pdf
dc.relation.referencesNational report on the state of the environment in Ukraine in 2018. (2019). Kyiv: Ministry of Environmental Protection
dc.relation.referencesand Natural Resources of Ukraine. Retrieved from
dc.relation.referenceshttps://mepr.gov.ua/timeline/Nacionalni-dopovidi-pro-stannavkolishnogo-prirodnogo-seredovishcha-v-Ukraini.html
dc.relation.referencesHenze, M., van Loosdrecht, M. C., Ekama, G. A., & Brdjanovic, D.
dc.relation.references(2008). Biological Wastewater Treatment. Principles,
dc.relation.referencesModelling and Design. London, UK: IWA Publishing. doi:
dc.relation.referenceshttps://doi.org/10.2166/9781780401867
dc.relation.referencesGrady, C. P., Daigger, Jr., Love, N. G., & Filipe, C. D. (2011).
dc.relation.referencesBiological Wastewater Treatment. London, UK: IWA
dc.relation.referencesPublishing. doi: https://doi.org/10.1201/b13775
dc.relation.referencesvan Haandel, A. C., & van der Lubbe, J. G. (2012). Handbook
dc.relation.referencesof Biological Wastewater Treatment. Design and
dc.relation.referencesOptimisation of Activated Sludge Systems. London: IWA
dc.relation.referencesPublishing. doi: https://doi.org/10.2166/9781780400808
dc.relation.referencesNutrient Removal. (2010). WEF Manual of Practice No. 34.
dc.relation.referencesAlexandria, VA, USA: WEF Press. Retrieved from
dc.relation.referenceshttps://www.accessengineeringlibrary.com/content/book/9780071737098
dc.relation.referencesMešenhysser, U. (2012). Retechnology of wastewater treatment
dc.relation.referencesplants. Moscow: Vokruh cveta.
dc.relation.referencesProtsenko, S., Kizyeyev, M., & Novytska, O. (2020). Selection
dc.relation.referencesof initial data for calculation and design of reconstruction
dc.relation.referencesof sewage treatment plants. Sustainable Development:
dc.relation.referencesEnvironment Protection. Energy Saving. Sustainable
dc.relation.referencesEnvironmental Management. Collective monograph. Lviv.
dc.relation.referencesdoi: https://doi.org/10.23939/book.ecocongress.2020
dc.relation.referencesStandard ATV-DVWK-A 131E. (2000, May). Dimensioning of
dc.relation.referencesSingle-Stage Activated Sludge Plants. ATV-DVWK Water,
dc.relation.referencesWastewater and Waste. Retrieved from https://dlscrib.com/
dc.relation.referencesdownload/atv-dvwk-a-131e_58ff62c7dc0d60307d959e98_pdf
dc.relation.referencesGPS-X User’s Guide: GPS-X Version 8.0. (2019). Hydromantis
dc.relation.referencesEnvironmental Software Solutions. Retrieved from
dc.relation.referenceshttps://www.hydromantis.com/
dc.relation.referencesenNational report on the quality of drinking water and the state of
dc.relation.referencesendrinking water supply in Ukraine in 2019. (2020). Kyiv:
dc.relation.referencesenMinistry of Development of Communities and Territories of
dc.relation.referencesenUkraine. Retrieved from https://www.minregion.gov.ua/wpcontent/uploads/2020/12/naczionalna-dopovid-za-2019-rik.pdf
dc.relation.referencesenNational report on the state of the environment in Ukraine in 2018. (2019). Kyiv: Ministry of Environmental Protection
dc.relation.referencesenand Natural Resources of Ukraine. Retrieved from
dc.relation.referencesenhttps://mepr.gov.ua/timeline/Nacionalni-dopovidi-pro-stannavkolishnogo-prirodnogo-seredovishcha-v-Ukraini.html
dc.relation.referencesenHenze, M., van Loosdrecht, M. C., Ekama, G. A., & Brdjanovic, D.
dc.relation.referencesen(2008). Biological Wastewater Treatment. Principles,
dc.relation.referencesenModelling and Design. London, UK: IWA Publishing. doi:
dc.relation.referencesenhttps://doi.org/10.2166/9781780401867
dc.relation.referencesenGrady, C. P., Daigger, Jr., Love, N. G., & Filipe, C. D. (2011).
dc.relation.referencesenBiological Wastewater Treatment. London, UK: IWA
dc.relation.referencesenPublishing. doi: https://doi.org/10.1201/b13775
dc.relation.referencesenvan Haandel, A. C., & van der Lubbe, J. G. (2012). Handbook
dc.relation.referencesenof Biological Wastewater Treatment. Design and
dc.relation.referencesenOptimisation of Activated Sludge Systems. London: IWA
dc.relation.referencesenPublishing. doi: https://doi.org/10.2166/9781780400808
dc.relation.referencesenNutrient Removal. (2010). WEF Manual of Practice No. 34.
dc.relation.referencesenAlexandria, VA, USA: WEF Press. Retrieved from
dc.relation.referencesenhttps://www.accessengineeringlibrary.com/content/book/9780071737098
dc.relation.referencesenMešenhysser, U. (2012). Retechnology of wastewater treatment
dc.relation.referencesenplants. Moscow: Vokruh cveta.
dc.relation.referencesenProtsenko, S., Kizyeyev, M., & Novytska, O. (2020). Selection
dc.relation.referencesenof initial data for calculation and design of reconstruction
dc.relation.referencesenof sewage treatment plants. Sustainable Development:
dc.relation.referencesenEnvironment Protection. Energy Saving. Sustainable
dc.relation.referencesenEnvironmental Management. Collective monograph. Lviv.
dc.relation.referencesendoi: https://doi.org/10.23939/book.ecocongress.2020
dc.relation.referencesenStandard ATV-DVWK-A 131E. (2000, May). Dimensioning of
dc.relation.referencesenSingle-Stage Activated Sludge Plants. ATV-DVWK Water,
dc.relation.referencesenWastewater and Waste. Retrieved from https://dlscrib.com/
dc.relation.referencesendownload/atv-dvwk-a-131e_58ff62c7dc0d60307d959e98_pdf
dc.relation.referencesenGPS-X User’s Guide: GPS-X Version 8.0. (2019). Hydromantis
dc.relation.referencesenEnvironmental Software Solutions. Retrieved from
dc.relation.referencesenhttps://www.hydromantis.com/
dc.relation.urihttps://www.minregion.gov.ua/wpcontent/uploads/2020/12/naczionalna-dopovid-za-2019-rik.pdf
dc.relation.urihttps://mepr.gov.ua/timeline/Nacionalni-dopovidi-pro-stannavkolishnogo-prirodnogo-seredovishcha-v-Ukraini.html
dc.relation.urihttps://doi.org/10.2166/9781780401867
dc.relation.urihttps://doi.org/10.1201/b13775
dc.relation.urihttps://doi.org/10.2166/9781780400808
dc.relation.urihttps://www.accessengineeringlibrary.com/content/book/9780071737098
dc.relation.urihttps://doi.org/10.23939/book.ecocongress.2020
dc.relation.urihttps://dlscrib.com/
dc.relation.urihttps://www.hydromantis.com/
dc.rights.holder© Національний університет “Львівська політехніка”, 2021
dc.rights.holder© Protsenko S., Kizyeyev M., Novytska O., 2021
dc.subjectwastewater
dc.subjectbiological treatment
dc.subjectaeration tanks
dc.subjectnitri-denitrification
dc.subjectflow diagram
dc.subjectLudzak-Ettinger process
dc.titleChoice of the efficient flow diagram of biological wastewater treatment at municipal wastewater treatment plants
dc.typeArticle

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