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Five parabens (methyl, ethyl, propyl, butyl and benzyl) present in water matrices were used as model compounds for this evaluation.
An alternative analysis technique for the quantitation of 15 poly- and perfluoroalkyl substances (PFASs) in water matrices is reported.
Accuracy, repeatability and reproducibility of the proposed analytical procedure were tested in determination of Cr VI) in synthetic solutions and environmental water matrices spiked with the analyte.
Finally, an exhaustive analysis presents the photocatalytic reduction applications for treating real water matrices and the competing effect of other species.
The effects of water matrices (drinking water and treated wastewater) and H2O2 concentrations (10, 40, and 90 mg/L) on the pilot efficiency were first determined.
Chlorophyll a in several water matrices was determined with good results in presence of other pigments such as chlorophyll b, pheophytin a and pheophytin b.
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Mineralization rates and pharmaceutical degradation were monitored for all water matrixes and different experimental conditions employed.
The influence of chemical composition of the water matrix was also investigated.
In addition, the effect of water matrix and pH was studied.
The degradation of micropollutants largely differs due to variations in target compounds, water matrix composition and UV system.
The deviation from experimental data was found to be <5 10%, independent of the composition of the water matrix.
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