Instytut Inżynierii Wody i Ścieków, Politechnika Śląska w Gliwicach, ul.Konarskiego 18, 44-100 Gliwice
Bibliografia
BODZEK M., KONIECZNY K., 2005. Wykorzystanie procesów membranowych w uzdatnianiu wody. Projprzem EKO, Bydgoszcz.
DUDZIAK M., 2010. Usuwanie oraz badanie mechanizmów separacji mikrozanieczyszczeń estrogennych w procesie odwróconej osmozy i nanofiltracji. Technol. Wody 1: 22-26.
DUDZIAK M., BODZEK M., 2006. Removal of natural estrogens and synthetic compounds considered to be endocrine disrupting substances (EDs) by coagulation and nanofiltration. Pol. J. Environ. Stud. 15, 1: 35-40.
GROMADZKA K., WAŚKIEWICZ A., GOLIŃSKI P., ŚWIETLIK J., 2009. Occurrence of estrogenic mycotoxin zearalenone in aqueous environmental samples with various NOM content. Water Res. 43, 4: 1051-1059.
HARTMANN N., ERBS M., WETTSTEIN F.E., SCHWARZENBACH R.P., BUCHELI T.D., 2007. Quantification of estrogenic mycotoxins at the ng/l level in aqueous environmental samples using deuterated internal standards. J. Chromatogr. A 1138, 1-2: 132-140.
HARTMANN N., ERBS M., WETTSTEIN F.E., HÖRGER C.C., VOGELGSANG S., FORRER, H.R., SCHWARZENBACH R.P., BUCHELI, T.D., 2008. Environmental exposure to estrogenic and other myco- and phytotoxins. Chimia 62, 5: 364-367.
LAGANA A., BACALONI A., DE LEVA I., FABERI A., FAGO G., MARINO A., 2004. Analytical methodologies for determining the occurrence of endocrine disrupting chemicals in sewage treatment plants and natural waters. Anal. Chim. Acta 501, 1: 79-88.
VAN DER BRUGGEN B., VANDECASTEELE C., 2003. Removal of pollutants from surface water and groundwater by nanofiltration: overview of possible applications in the drinking water industry. Environ. Pollut. 122, 3: 435-445.