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Catalytic Wet Air Oxidation of Antibiotics over Supported Platinum on Different Supports Fractions Based CeO2 and ZrO2.
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SYSNO ASEP 0545797 Document Type A - Abstract R&D Document Type The record was not marked in the RIV R&D Document Type Není vybrán druh dokumentu Title Catalytic Wet Air Oxidation of Antibiotics over Supported Platinum on Different Supports Fractions Based CeO2 and ZrO2. Author(s) Bourassi, Mahdi (UCHP-M) ORCID, RID, SAI
Lafaye, G. (FR)
Gaálová, Jana (UCHP-M) RID, SAI, ORCID
Barbier Jr., J. (FR)Source Title Prague, 2021 Number of pages 2 s. Publication form Online - E Action International Conference on Catalysis and Chemical Engineering and Technology (Catalysis 2021) /9./ Online Event Event date 21.10.2021 - 23.10.2021 VEvent location Orlando City, Florida state Country US - United States Event type WRD Language eng - English Keywords membranes ; catalytic oxidation ; analysis Subject RIV CI - Industrial Chemistry, Chemical Engineering OECD category Chemical process engineering R&D Projects GJ19-08153Y GA ČR - Czech Science Foundation (CSF) Institutional support UCHP-M - RVO:67985858 Annotation Emerging contaminants have serious effects on the environment. Especially contaminants loaded with used water, which affect fauna, flora, and contaminate soils. Antibiotics are considered as an emerged threat originated from leaking and incompletely treated wastewater loaded with pharmaceuticals. Antibiotics risks are divers, the most pertinent are environment useful microorganism deterioration and harmful bacteria gaining antibiotics resistance. Those factors could generate in the future sanitary and environmental crisis. Facing these issues, many technologies propose sufficient solutions to release only cleaned water, as example, adsorbents and membrane separations, which have successful separation results. The only issue is these separation methods generate highly contaminated solutions or adsorbents, which are even more threatening and extremely hard to handle. Catalytic Wet Air Oxidation (CWAO) is one of the most efficient concentrated wastewater detoxification processes. Workplace Institute of Chemical Process Fundamentals Contact Eva Jirsová, jirsova@icpf.cas.cz, Tel.: 220 390 227 Year of Publishing 2022
Number of the records: 1