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Using the ATP test in wastewater treatment in the Silesia Province

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The research conducted in recent years enabled one to develop a test for qualitative and quantitative analyses of ATP concentration in wastewater and sewage sludge performed in short time directly under field conditions. Both the test itself and the comparison of the obtained results complement the main classic procedures. The test allows one to characterize the impact of raw wastewater on the treatment process and on the intoxication of organisms inhabiting wastewater treatment units. They also provide information on the microbiological pollution in the treated wastewater. Moreover, they can be used to monitor the treatment process itself.
Rocznik
Strony
17--32
Opis fizyczny
Bibliogr. 23 poz., rys., tab.
Twórcy
autor
  • Institute of Environmental Engineering, Polish Academy of Sciences in Zabrze, ul. Marii Skłodowskiej-Curie 34, 41-819 Zabrze
autor
  • Institute of Environmental Engineering, Polish Academy of Sciences in Zabrze, ul. Marii Skłodowskiej-Curie 34, 41-819 Zabrze
autor
  • SGS EKO-Projekt, ul. Cieszyńska 52A, 43-200 Pszczyna
  • SGS EKO-Projekt, ul. Cieszyńska 52A, 43-200 Pszczyna
Bibliografia
  • [1] KOWAL K., LIBUDZISZ Z., Technical Microbiology, Wydawnictwo Politechniki Łódzkiej, Łódź 2000 (in Polish).
  • [2] PISTELOK F., WIERA B., STUCZYŃSKI T., Threats identification for water health safety during exceptional events, Instal., 2012, 3, 44 (in Polish).
  • [3] VENKATESWARAN K., HATTORI N., DUC M., KERN R., ATP as a biomarker of viable microorganisms in clean-room facilities, J. Microbiol. Methods, 2003, 52, 367.
  • [4] HAWRONSKYJ J., HOLAH J., ATP. A universal hygiene monitor, Trends Food Sci. Technol., 1997, 8, 79.
  • [5] DAVIDSON C.A., GRIFFITH C.J., PETERS A.C., FIELDING L.M., Evaluation of two methods for monitoring surface cleanliness. ATP bioluminescence and traditional hygiene swabbing, Luminescence, 1999, 14, 33.
  • [6] DELAHAYE E., WELTE B., LEVI Y., LEBLON G., MONTIEL A., An ATP-based method for monitoring the microbiological drinking water quality in a distribution network, Water Res., 2003, 37, 3689.
  • [7] DEININGER R., LEE J., Rapid determination of bacteria in drinking water using an ATP assay, Field Anal. Chem. Technol., 2001, 5 (4), 185.
  • [8] DEININGER R., LEE J., CLARK R., Rapid detection of bacteria in drinking water and water contamination case studies, Front. Earth Sci., 2011, 5 (4), 378.
  • [9] COOPER R., GRIFFITH C., MALIK R., OBEE P., LOOKER N., Monitoring the effectiveness of cleaning in four British hospitals, Am. J. Infect. Control, 2007, 35, 338.
  • [10] HAMMES F., GOLDSCHMIDT F., VITAL M., WANG Y., EGLI T., Measurement and interpretation of microbial adenosine triphosphate (ATP) in aquatic environments, Water Res., 2010, 44 (13), 3915.
  • [11] FARRIS L., HABTESELASSIE M.Y., PERRY L., CHEN S.Y., TURCO R., REUHS B., APPLEGATE B., Luminescence techniques for the detection of bacterial pathogens, [in:] M. Zourob, S. Elwary, A. Turner (Eds.), Principles of Bacterial Detection. Biosensors, Recognition Receptors and Microsystems, Springer, New York 2008, 213–230.
  • [12] LuminUltra Technologies, Ltd., Test Kit Instructions. Test Kit Product: QuenchGone21TM Wastewater Test Kit Product: QG21W-50/QG21Wb-25, Canada.
  • [13] SHAMA G., MALIK D., The uses and abuses of rapid bioluminescence-based ATP assays, Int. J. Hyg. Environ. Health, 2013, 216, 115.
  • [14] EATON A., CLESCERI L., RICE E., GREENBERG A., Standard methods for the examination of water and wastewater, American Public Health Association, American Water Works Association, Water Environment Federation, Washington 2005.
  • [15] TAM N., Effects of wastewater discharge on microbial populations and enzyme activities in mangrove soils, Environ. Pollut., 1998, 102, 233.
  • [16] DALZELL D., CHRISTOFI N., An ATP luminescence method for direct toxicity assessment of pollutants impacting on the activated sewage sludge process, Water Res., 2002, 36, 6, 1493.
  • [17] DALZELL D., ALTE S., ASPICHUETA E., DE LA SOTA A., ETXEBARRIA J., GUTIERREZ M., HOFFMANN C.C., SALES D., OBST U., CHRISTOFI N., A comparison of five rapid direct toxicity assessment methods to determine toxicity of pollutants to activated sludge, Chemosphere, 2002, 47, 535.
  • [18] PISTELOK F., WIERA B., STUCZYŃSKI T., KOPYTKO M., The study on the use of the ATP assay to optimize the operation of the water treatment plant and water supply, [In:] Water Environment Man, X Jubilee Scientific-Technical Conference, 29–30 March, 2012 (in Polish).
  • [19] The Regulation of the Polish Ministry of the Environment of 24 July 2006 on the conditions that must be fulfilled when wastewater is introduced into waters or soils and on the substances acutely harmful for the aquatic environment, Dz.U. 2006.137.984 (in Polish).
  • [20] Ministry of the Environment (Republic of Poland). National Programme for Municipal Wastewater Treatment. Report on implementation of the national program for municipal wastewater treatment in 2008–2009. Warsaw, September 2010 (in Polish).
  • [21] Ministry of the Environment (Republic of Poland, National Programme for Municipal Wastewater Treatment. Report on implementation of the national program for municipal wastewater treatment in 2010–2011, Warsaw, November 2012 (in Polish).
  • [22] PARK J., YOO Y., Biological nitrate removal in industrial wastewater treatment: which electron donor we can choose, Appl. Microbiol. Biotechnol., 2009, 82, 415.
  • [23] CHU L., WANG J., WANG B., XING X.-H., YAN S., SUN X., JURCIK B., Changes in biomass activity and characteristics of activated sludge exposed to low ozone dose, Chemosphere, 2009, 77, 269.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-8795b605-baf8-41dc-8a4d-dab92370058f
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