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Featured researches published by A. Świerczyńska.


Ecological Chemistry and Engineering S-chemia I Inzynieria Ekologiczna S | 2016

Treatment of industrial wastewater in the sequential membrane bioreactor

A. Świerczyńska; J. Bohdziewicz; Ewa Puszczało

Abstract The aim of presented study which was associated with modification of the various work cycle phases duration in the membrane bioreactor, was to reduce the concentration of phosphate phosphorus during the leachate co-treatment with dairy wastewater. The experimental set-up was comprised of the membrane bioreactor equipped with the immersed membrane module installed inside the reactor chamber, and the equalization tank. During the co-treatment experiment performance the excessive activated sludge was constantly removed from the membrane bioreactor in order to keep its concentration at 3.5 g/dm3. The load of the sludge with the contaminants was equal to 0.06 g COD/g d.m. d. The concentration of oxygen was equal to 3 mg/dm3. The share of the leachates in the co-treated mixture was equal to 10% vol. The membrane bioreactor worked as the sequential biological reactor, in two cycles per day. Duration of each phase was equal as follows: filling - 10 min - with concurrent mixing phase lasting for 4 h, aeration phase - 1 h, sedimentation - 30 min and removal from purified wastewater - 30 min. After 4 weeks under these conditions, the modification of the sequential membrane bioreactor’s work cycle was made. The duration of particular phases was shortened and two phases of denitrification and nitrification were introduced. Work cycle phases were modified as follows: filling - 10 min - with concurrent mixing phase lasting for 3 h, aeration phase - 4 h, mixing phase - 1 h, aeration phase - 3 h, sedimentation - 30 min and removal from purified wastewater - 30 min. Based on research, it was found that the change in membrane bioreactors’ work cycle affects the effectiveness of treated mixture. It was found that the applied modification of phases of the cycle of the MSBR did not affect the concentration of organic compounds and the no significant changes in the concentration of ammonium and nitrate nitrogen in the effluent from the bioreactor were observed, however, the total nitrogen removal efficiency increased by 50%. Alteration of MSBR reactor particular phases duration caused reduction of concentration of P-PO43 from 4.7 to 2.9 mg/dm3.


Desalination and Water Treatment | 2010

The influence of percentage share of municipal landfil leachates in a mixture with synthetic wastewater on the effectiveness of a treatment process with use of membrane bioreactor

E. Puszczało; J. Bohdziewicz; A. Świerczyńska


Ecological Chemistry and Engineering. A | 2011

Activity of Activated Sludge Microorganisms in the Co-Treatment of the Leachates in the SBR Bioreactor

A. Świerczyńska; J. Bohdziewicz; M. Amalio-Kosel


Czasopismo Inżynierii Lądowej, Środowiska i Architektury | 2013

Współoczyszczanie odcieków ze ściekami mleczarskimi w sekwencyjnym bioreaktorze membranowym

A. Świerczyńska; J. Bohdziewicz


Environment Protection Engineering | 2016

Influence of the type of membrane-forming polymer on the membrane fouling

A. Świerczyńska; J. Bohdziewicz; G. Kamińska; K. Wojciechowski


Proceedings of ECOpole | 2015

Modyfikacja cyklu pracy sekwencyjnego bioreaktora membranowego podczas oczyszczania ścieków przemysłowych

A. Świerczyńska; J. Bohdziewicz


Proceedings of ECOpole | 2015

Zastosowanie biopreparatów do intensyfikacji oczyszczania ścieków metodą osadu czynnego

E. Puszczało; A. Świerczyńska; J. Bohdziewicz


Environment Protection Engineering | 2015

Determination of the most effective operating conditions of membrane bioreactor used to industrial wastewater treatment

A. Świerczyńska; J. Bohdziewicz


Proceedings of ECOpole | 2014

Wpływ ścieków mleczarskich na efektywność oczyszczania odcieków w bioreaktorze membranowym

A. Świerczyńska; J. Bohdziewicz


Journal of Civil Engineering, Environment and Architecture | 2013

The co-treatment of municipal landfill leachates and dairy wastewaters in membrane bioreactor

A. Świerczyńska; J. Bohdziewicz

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J. Bohdziewicz

Silesian University of Technology

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Adam Sochacki

Silesian University of Technology

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E. Puszczało

Silesian University of Technology

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Ewa Puszczało

Silesian University of Technology

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G. Kamińska

Silesian University of Technology

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K. Wojciechowski

Warsaw University of Technology

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Mariusz Dudziak

Silesian University of Technology

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Mariusz Kuglarz

University of Bielsko-Biała

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