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Application of bioassay panel for assessing the impact of advanced oxidation processes on the treatment of reverse osmosis brine
Author(s) -
Justo Ana,
González Óscar,
Aceña Jaume,
Mita Luigi,
Casado Marta,
Pérez Sandra,
Piña Benjamín,
Sans Carme,
Barceló Damià,
Esplugas Santiago
Publication year - 2014
Publication title -
journal of chemical technology and biotechnology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.64
H-Index - 117
eISSN - 1097-4660
pISSN - 0268-2575
DOI - 10.1002/jctb.4389
Subject(s) - bioassay , brine , reverse osmosis , chemistry , environmental chemistry , pollutant , wastewater , ozone , environmental science , environmental engineering , organic chemistry , membrane , biochemistry , genetics , biology
BACKGROUND The persistence of microcontaminants through conventional wastewater treatments is a matter of concern and it suggests the implementation of advanced treatment steps. Although there is evidence that reverse osmosis ( RO ) is the most efficient treatment for the the removal of these compounds, it has the drawback of producing significant amounts of highly polluted brine. In this work, chemical analyses and toxicity bioassays were combined to evaluate the removal of different pharmaceuticals and of dioxin‐like compounds from RO brine through oxidative processes such as ozone, UV and UV / H 2 O 2 . RESULTS The removal of the selected pharmaceuticals required a relatively high oxidative capacity, either by ozonation or by the combination of UV radiation and H 2 O 2 . Bioassays showed a significant dioxin‐like activity in brine samples, whereas antibacterial or estrogenic activities were negligible. UV by itself was the least efficient in removing this dioxin‐like activity. Ozonation appeared as the most competent treatment. CONCLUSIONS The results of this work indicate the usefulness of advanced oxidation methods, especially ozonation, to remove biologically active micropollutants from brine samples. They also show that only the combination of chemical analyses and bioassays allows complete characterization of the efficiency of advanced water treatment processes to remove recalcitrant pollutants. © 2014 Society of Chemical Industry