Catalysts · 2019 · 49 citations · 36 references
Advanced Oxidation ProcessChemical EngineeringEnvironmental ChemistryEngineeringCatalytic ApplicationLeachingEnvironmental RemediationNatural ClaysWet Peroxide OxidationWater TreatmentFe/co-pillared Clay CatalystsCatalysisTrace LevelsChemistryMineral ProcessingWastewater TreatmentAquatic Environment
Many pharmaceuticals have been recently identified at trace levels worldwide in the aquatic environment. Among them, the highly consumed paracetamol (PCM), an analgesic and antipyretic drug, is largely being accumulated in the aquatic environment due to inefficient removal by conventional sewage treatment plants. This work deals with the treatment of PCM, used as a model pharmaceutical contaminant of emerging concern, by catalytic wet peroxide oxidation using clay-based materials as catalysts. The catalysts were prepared from natural clays, extracted from four different deposits using acid-activated treatment, calcination, and pillarization with Fe and Co. Pillared clays show the highest catalytic activity owing to the presence of metals, allowing to remove completely the PCM after 6 h under the following operating conditions: CPCM = 100 mg L−1, CH2O2 = 472 mg L−1, Ccat = 2.5 g L−1, initial pH = 3.5 and T = 80 °C. The prepared materials presented high stability since leached iron was measured at the end of reaction and found to be lower than 0.1 mg L−1.
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Matthias Thommes, Katsumi Kaneko, Alexander V. Neimark et al. · Pure and Applied Chemistry · 2015 · 18.6K citations
Pore Size Distribution, Chemical Engineering, Pore Structure +14
Acid activated clays: Materials in continuous demand
Peter Komadel · Applied Clay Science · 2016 · 258 citations