Zobrazeno 1 - 5
of 5
pro vyhledávání: '"Maja Ekblad"'
Autor:
Maja Ekblad, Per Falås, M. Hagman, Kai Bester, Fredrik Nilsson, Haitham El-taliawy, Michael Cimbritz
Publikováno v:
Ekblad, M, Falås, P, El-taliawy, H, Nilsson, F, Bester, K, Hagman, M & Cimbritz, M 2019, ' Is dissolved COD a suitable design parameter for ozone oxidation of organic micropollutants in wastewater? ', Science of the Total Environment, vol. 658, pp. 449-456 . https://doi.org/10.1016/j.scitotenv.2018.12.085
Ozone oxidation of organic micropollutants in biologically treated wastewater was investigated in pilot-scale after a high- and a low loaded activated sludge process. Higher ozone doses were required to remove organic micropollutants in the effluent
Autor:
Jeppe Bregendahl, Kai Bester, Michael Stapf, Suman Kharel, Josefine Nilsson, Michael Cimbritz, Robert Sehlén, Ulf Miehe, Maja Ekblad, Per Falås
Publikováno v:
Kharel, S, Stapf, M, Miehe, U, Ekblad, M, Cimbritz, M, Falås, P, Nilsson, J, Sehlén, R, Bregendahl, J & Bester, K 2021, ' Removal of pharmaceutical metabolites in wastewater ozonation including their fate in different post-treatments ', Science of the Total Environment, vol. 759, 143989 . https://doi.org/10.1016/j.scitotenv.2020.143989
Advanced treatment technologies for the removal of pharmaceuticals and other organic micropollutants inWWTPs primarily target the removal of parent compounds. Nevertheless, the removal of metabolites originatingfrom human- or microbial metabolism dur
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::9ecafd38e72b0d687ac6526d35061922
https://pure.au.dk/portal/da/publications/removal-of-pharmaceutical-metabolites-in-wastewater-ozonation-including-their-fate-in-different-posttreatments(714629d9-121d-46ca-b1cb-5ebc6e0cad90).html
https://pure.au.dk/portal/da/publications/removal-of-pharmaceutical-metabolites-in-wastewater-ozonation-including-their-fate-in-different-posttreatments(714629d9-121d-46ca-b1cb-5ebc6e0cad90).html
Autor:
Maja Ekblad, Per Falås, Robert Sehlén, Michael Cimbritz, Michael Stapf, Ulf Miehe, Josefine Nilsson, Kai Bester, Suman Kharel
Publikováno v:
Kharel, S, Stapf, M, Miehe, U, Ekblad, M, Cimbritz, M, Falås, P, Nilsson, J, Sehlén, R & Bester, K 2020, ' Ozone dose dependent formation and removal of ozonation products of pharmaceuticals in pilot and full-scale municipal wastewater treatment plants ', Science of the Total Environment, vol. 731, 139064 . https://doi.org/10.1016/j.scitotenv.2020.139064
The removal of micropollutants from municipal wastewater is challenged by the number of compounds with diverse physico-chemical properties. Ozonation is increasingly used to remove micropollutants from wastewater. However, ozonation does not necessar
Publikováno v:
Water Practice and Technology. 12:871-881
Pilot-scale tests were run with ozonation for reduction of 24 pharmaceuticals at 10 full-scale wastewater treatment plants in southern Sweden. Reduction was evaluated based on doses of 3, 5 and 7 g O3/m3 at all plants. The reduction of pharmaceutical
Autor:
M. Hagman, Fredrik Nilsson, Maja Ekblad, Haitham El-taliawy, Michael Cimbritz, Karin Jönsson, N. Paxeus, J. la Cour Jansen, Kai Bester
Publikováno v:
El-taliawy, H, Ekblad, M, Nilsson, F, Hagman, M, Paxeus, N, Jönsson, K, Cimbritz, M, La Cour Jansen, J & Bester, K 2017, ' Ozonation efficiency in removing organic micro pollutants from wastewater with respect to hydraulic loading rates and different wastewaters ', Chemical Engineering Journal, vol. 325, pp. 310-321 . https://doi.org/10.1016/j.cej.2017.05.019
Organic micro pollutants can be removed from water by ozonation. In this article we studied the performance of ozonation under real life conditions and compared results of the same ozonation pilot plant installed at different wastewater treatment pla