Page 36 - MaSzeSz hírcsatorna 2019/4.
P. 36

Oberoi, A. S. , Jia, Y., Zhang, H. , Khanal, S. K., & LU,  Rodarte-Morales, A. I. Feijoo, G., Moreira, M. T. & Lema,
            H. (2019). Insights into fate and removal of antibiotics  J. M. (2011a). Biotransformation of three pharmaceuti-
            in engineered biological treatment systems: A critical  cal active compounds by the fungus Phanerochaete
            review. Environmental Science & Technology.      chrysosporium in a fed batch stirred reactor under air
                                                             and oxygen supply. Biodegradation, 23(1), 145–156.
            Osorio-Lozada, A.Surapaneni, S. Skiles, G.L. Subrama-
            nian. R. (2008). Biosynthesis of drug metabolites using  Rodarte-Morales, A. I. Feijoo, G. Moreira, M. T. & Lema,
            microbes in hollow fiber cartridge reactors: case stu- J. M. (2011b). Degradation of selected pharmaceutical
            dy of diclofenac metabolism by actinoplanes species.  and personal care products (PPCPs) by white-rot fun-
            Drug Metab. Dispos. 36, 234–240.                 gi. World Journal of Microbiology and Biotechnology,
                                                             27 (8), 1839–1846.
            Perei K. , Pernyeszi  T., Lakatos Gy. (2013). Bioreme-
            diáció. Szegedi Tudományegyetem; Debreceni Tu- Rodríguez-Rodríguez, C. E. Marco-Urrea, E., & Cami-
            dományegyetem; Pécsi Tudományegyetem. a TÁ- nal, G. (2010). Naproxen degradation test to monitor
            MOP-4.1.2.A/1-11/1-2011-0025.                    Trametes versicolor activity in solid-state bioremedia-
                                                             tion processes. Journal of Hazardous Materials, 179(1-
            Quintana, J. Weiss , S., & Reemtsma, T. (2005). Pat- 3), 1152–1155.
            hways and metabolites of microbial degradation of
            selected acidic pharmaceutical and their occurrence  Roh, H., Subramanya, N., Zhao, F. Yu, C.-P., Sandt, J.,
            in municipal wastewater treated by a membrane bio- & Chu, K.-H. (2009). Biodegradation potential of wa-
            reactor. Water Research, 39 (12), 2654–2664.     stewater micropollutants by ammonia-oxidizing bac-
                                                             teria. Chemosphere, 7(78), 1084–1089.
            Reintjes,  G.  Arnosti,  C.,  Fuchs,  B.,  and  Amann,  R.
            (2019). Selfish, sharing and scavenging bacteria in the  Sathyamoorthy, S., Chandran, K., & Ramsburg, C. A.
            Atlantic Ocean: a biogeographical study of bacterial  (2013). Biodegradation and cometabolic modeling of se-
            substrate utilisation. ISME J. 13, 1119–1132.    lected beta blockers during ammonia oxidation. Environ-
                                                             mental Science & Technology, 47(22), 12835–12843.
            Ricken, B., Corvini, P. F. X., Cichocka, D., Parisi, M.,
            Lenz, M., Wyss, D., Martínez-Lavanchy, P.M., Müller,  Shi, J. (2004). Biodegradation of natural and synthe-
            J.A., Shahgaldian, P., Tulli, L.G., Kohler, H-P.E., Kolven- tic estrogens by nitrifying activated sludge and am-
            bach, B. A. (2013).Ipso -hydroxylation and subsequent  monia-oxidizing bacterium Nitrosomonas europaea.
            fragmentation: a novel microbial strategy to eliminate  Water Research, 38(9), 2323–2330.
            sulfonamide antibiotics. Applied and Environmental
            Microbiology, 79(18), 5550–5558.                 Tran, N. H., Urase, T., & Ta, T. T. (2013a). A preliminary
                                                             study on the occurrence of pharmaceutically active
                                                             compounds in hospital wastewater and surface water in
                                                             Hanoi, Vietnam. CLEAN - Soil, Air, Water, 42(3), 267–275.



           36
   31   32   33   34   35   36   37   38   39   40   41