Journal of Environmental Protection

Journal of Environmental Protection

ISSN Print: 2152-2197
ISSN Online: 2152-2219
www.scirp.org/journal/jep
E-mail: jep@scirp.org
"Photocatalytic Degradation of Ibuprofen Using TiO2 and Ecotoxicological Assessment of Degradation Intermediates against Daphnia similis"
written by Farley S. Braz, Milady R. A. Silva, Flávio S. Silva, Sandro J. Andrade, Ana L. Fonseca, Márcia M. Kondo,
published by Journal of Environmental Protection, Vol.5 No.7, 2014
has been cited by the following article(s):
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[2] Analytical procedures for the determination of estrogen compounds in a surface water reservoir in Southeast Brazil
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[3] Degradation of Selected Analgesics in Aqueous Solutions by TiO2 Photocatalysis: A Review
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[7] Photodegradation of dipyrone by heterogeneous catalysis using TiO2/UV
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[8] Semiconductor based photocatalysts for detoxification of emerging pharmaceutical pollutants from aquatic systems: A critical review
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[9] Remotion of the 17α-Ethinylestradiol Hormone (EE2) by Biosorbent (Arachis hypogaea) in Aqueous Solutions: Validation of Analytical Methodology and …
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[10] TiO2 and Active Coated Glass Photodegradation of Ibuprofen
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[11] Ibuprofen as an emerging organic contaminant in environment, distribution and remediation
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[12] Degradation of Carbamazepine in Aqueous Solution Using Ozanation Process
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[13] Photocatalytic degradation of ibuprofen in water using TiO2 and ZnO under artificial UV and solar irradiation
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[14] Phase-Pure Brookite TiO2 as a Highly Active Photocatalyst for the Degradation of Pharmaceutical Pollutants
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[15] Development of Bismuth Oxyhalide Photocatalysts for Environmental and Industrial Applications
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[16] Self-assembled thin films of PAA/PAH/TiO2 for the photooxidation of ibuprofen. Part II: Characterization, sensitization, kinetics and reutilization
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[17] Self-assembled thin films of PAA/PAH/TiO2 for the photooxidation of ibuprofen. Part I: Optimization of photoactivity using design of experiments and surface response …
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[18] Micro-TiO2 coated glass surfaces safely abate drugs in surface water
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[19] Electrochemical properties of the scheelite BaWO4 prepared by co-precipitation: Application to electro-photocatalysis of ibuprofen degradation
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[20] PHOTOCATALYTIC DEGRADATION OF CEPROFLOXACIN USING MAGNETIC IRON OXIDE
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[21] Application of BiOX Photocatalysts in Remediation of Persistent Organic Pollutants
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[22] Degradation of anti-inflammatory drugs in municipal wastewater by heterogeneous photocatalysis and electro-Fenton process
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[23] Photocatalytic Degradation of Ibuprofen over BiOCl Nanosheets with Identification of Intermediates
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[24] Modeling, Optimization and Kinetic Study for Photocatalytic Treatment of Ornidazole Using Slurry and Fixed-Bed Approach
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[25] Avaliação do comportamento do Albendazol e Sulfóxido de Albendazol em Latossolo vermelho amarelo e remoção dos fármacos por Fotocatálise Heterogênea em …
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[26] Evaluación del efecto de las condiciones del proceso de síntesis y operación de un catalizador compuesto de TiO2-Diatomita modificada sobre su desempeño …
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[27] Heterogeneous photocatalytic degradation of ibuprofen in ultrapure water, municipal and pharmaceutical industry wastewaters using a TiO2/UV-LED system
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[28] Avaliação do comportamento do Albendazol e Sulfóxido de Albendazol em Latossolo vermelho amarelo e remoção dos fármacos por Fotocatálise …
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[29] Evaluation of Membrane Resistance and Operational Variables for the Micellar-Enhanced Ultrafiltration of Ibuprofen Containing Aqueous Waste
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[30] Fotodegradación de Ibuprofeno, empleando el nanocomposito Ag/Ag2O bajo irradiación de luz visible
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[31] Highly active non-metals doped mixed-phase TiO2 for photocatalytic oxidation of ibuprofen under visible light
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[32] Toxicity and biodegradation of ibuprofen by Bacillus thuringiensis B1(2015b)
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[33] Photocatalytic Performance of Highly Active Brookite in the Degradation of Hazardous Organic Compounds Compared to Anatase and Rutile
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[34] Toxicity and biodegradation of ibuprofen by Bacillus thuringiensis B1 (2015b)
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[35] Removal of Ibuprofen from aqueous solutions by Ozonation process
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[36] بررسی کارآیی فرآیند ازن زنی جهت حذف ایبوپروفن از محلولهای آبی‎
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[37] Transition metal doped TiO2 mediated photocatalytic degradation of anti-inflammatory drug under solar irradiations
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[38] Synthesis of molecularly imprinted photocatalysts containing low TiO2 loading: Evaluation for the degradation of pharmaceuticals
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[39] Remoção de Ibuprofeno por Fotocatálise Heterogênea e Avaliação Ecotoxicológica de possíveis subprodutos.
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[40] Ibuprofen removal by heterogeneous photocatalysis and ecotoxicological evaluation of the treated solutions
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[41] Transition metal doped TiO 2 mediated photocatalytic degradation of anti-inflammatory drug under solar irradiations
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[42] Photocatalytic Degradation of Pharmaceuticals Wastewater
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[43] Synthesis of molecularly imprinted photocatalysts containing low TiO 2 loading: Evaluation for the degradation of pharmaceuticals
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