Journal Article10.1016/J.JECE.2018.05.051
Pharmaceutical removal from different water matrixes by Fenton process at near-neutral pH: Doehlert design and transformation products identification by UHPLC-QTOF MS using a purpose-built database
E. Cuervo Lumbaque,Renata M. Cardoso,Alexsandro Dallegrave,L.O. dos Santos,María Ibáñez,Félix Hernández,Carla Sirtori +6 more
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TL;DR: In this paper, the authors evaluated the Fenton process in the removal of eight pharmaceuticals (gemfibrozil, nimesulide, furosemide, paracetamol, propranolol, dipyrone, fluoxetine, and diazepam) from three different water matrixes (distilled water, simulated wastewater, and hospital wastewater).
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Abstract: This work evaluates the Fenton process in the removal of eight pharmaceuticals (gemfibrozil, nimesulide, furosemide, paracetamol, propranolol, dipyrone, fluoxetine, and diazepam), present at an initial concentration of 500 μg L−1 for each compound, from three different water matrixes (distilled water, simulated wastewater, and hospital wastewater). The Fenton process conditions (iron and hydrogen peroxide concentrations, and pH) were optimized for the distilled water matrix by Doehlert design associated with response surface methodology. These corresponded to initial Fe2+ and hydrogen peroxide concentrations of 12.5 and 533 mg L−1, respectively, and pH 5.0. Mineralization rates and pharmaceutical degradation were monitored for all water matrixes and different experimental conditions employed. Unique iron addition, using low (12.5 mg L−1) and increased concentrations (37.5 mg L−1) were evaluated. These preliminary results motivated the study of the Fenton process employing successive iron additions and using an excess of hydrogen peroxide in the reaction medium. Multiple iron addition favored higher oxidation of the initial contaminants. Finally, the most persistent transformation products generated during the Fenton process were identified by liquid chromatography coupled with quadrupole-time of flight mass spectrometry (UHPLC-QTOF MS) using a purpose-built database that allowed monitoring 97 transformation products in a single injection. In this study, 12 transformation products (TPs) were tentatively identified employing this purpose-built database. Most TPs generated were classified as of high toxicity (Cramer rules) and showed ready biodegradability (START biodegradability).
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Citations
Pharmaceutically active compounds in aqueous environment: A status, toxicity and insights of remediation
TL;DR: The various transformation products formed from various PhACs during treatment have been highlighted and significant stress has been given on the role of various process parameters, water matrix, oxidizing radicals, and the mechanism of degradation.
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Magnetic MIL(Fe)-type MOF-derived N-doped nano-ZVI@C rods as heterogeneous catalyst for the electro-Fenton degradation of gemfibrozil in a complex aqueous matrix
TL;DR: In this paper, metal-organic frameworks (MOFs) were used as suspended heterogeneous catalysts in the electro-Fenton (EF) process for water treatment, and the nano-ZVI@C-N catalyst obtained at 800°C showed the highest activity with high stability as deduced from the low iron leaching and high recyclability.
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A critical review on paracetamol removal from different aqueous matrices by Fenton and Fenton-based processes, and their combined methods.
Martin Pacheco-Alvarez,Ricardo Picos Benítez,Oscar M. Rodriguez-Narvaez,Enric Brillas,Juan M. Peralta-Hernández +4 more
TL;DR: In this article , a comprehensive and critical review over the application of such Fenton technologies to remove Paracetamol from natural waters, synthetic wastewaters, and real wastewater is presented.
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Solar photo-Fenton-like process at neutral pH: Fe(III)-EDDS complex formation and optimization of experimental conditions for degradation of pharmaceuticals
Elisabeth Cuervo Lumbaque,Débora Salmoria Araújo,Thágor Moreira Klein,Elaine Regina Lopes Tiburtius,Jacqueline Arguello,Carla Sirtori +5 more
TL;DR: In this paper, the effectiveness of Fe(III)-EDDS complex for degradation of pharmaceutical compounds in a solar photo-Fenton-like process at neutral pH in two different aqueous matrixes was demonstrated.
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Combination of solar photo-Fenton and adsorption process for removal of the anticancer drug Flutamide and its transformation products from hospital wastewater
Alexandre Della-Flora,Marcelo Luis Wilde,Pascal S. Thue,Diana Ramos Lima,Eder C. Lima,Carla Sirtori +5 more
TL;DR: The SPF process was further combined with adsorption onto avocado seed activated carbon (ASAC) as an environmentally friendly approach for the removal of remained FLUT and the TPs.
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