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      A review on pharmaceuticals removal from waters by single and combined biological, membrane filtration and ultrasound systems

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          Highlights

          • Pharmaceutical removal using biological digesters, sonication and membrane filtration.

          • Biotransformation of pharmaceutical in biological and ultrasound treatment.

          • Hybrid ultrasound coupled treatment processes with biological reactor and membrane filtration.

          Abstract

          Contaminants of emerging concern (CEC) such as pharmaceuticals commonly found in urban and industrial wastewater are a potential threat to human health and have negative environmental impact. Most wastewater treatment plants cannot efficiently remove these compounds and therefore, many pharmaceuticals end up in aquatic ecosystems, inducing problems such as toxicity and antibiotic-resistance. This review reports the extent of pharmaceutical removal by individual processes such as bioreactors, advanced oxidation processes and membrane filtration systems, all of which are not 100% efficient and can lead to the direct discharge of pharmaceuticals into water bodies. Also, the importance of understanding biotransformation of pharmaceutical compounds during biological and ultrasound treatment, and its impact on treatment efficacy will be reviewed. Different combinations of the processes above, either as an integrated configuration or in series, will be discussed in terms of their degradation efficiency and scale-up capabilities. The trace quantities of pharmaceutical compounds in wastewater and scale-up issues of ultrasound highlight the importance of membrane filtration as a concentration and volume reduction treatment step for wastewater, which could subsequently be treated by ultrasound.

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          Hydrogen Peroxide Synthesis: An Outlook beyond the Anthraquinone Process

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            A review on the occurrence of micropollutants in the aquatic environment and their fate and removal during wastewater treatment.

            Micropollutants are emerging as a new challenge to the scientific community. This review provides a summary of the recent occurrence of micropollutants in the aquatic environment including sewage, surface water, groundwater and drinking water. The discharge of treated effluent from WWTPs is a major pathway for the introduction of micropollutants to surface water. WWTPs act as primary barriers against the spread of micropollutants. WWTP removal efficiency of the selected micropollutants in 14 countries/regions depicts compound-specific variation in removal, ranging from 12.5 to 100%. Advanced treatment processes, such as activated carbon adsorption, advanced oxidation processes, nanofiltration, reverse osmosis, and membrane bioreactors can achieve higher and more consistent micropollutant removal. However, regardless of what technology is employed, the removal of micropollutants depends on physico-chemical properties of micropollutants and treatment conditions. The evaluation of micropollutant removal from municipal wastewater should cover a series of aspects from sources to end uses. After the release of micropollutants, a better understanding and modeling of their fate in surface water is essential for effectively predicting their impacts on the receiving environment. Copyright © 2013 Elsevier B.V. All rights reserved.
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              Evaluation of advanced oxidation processes for water and wastewater treatment – A critical review

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                Author and article information

                Contributors
                Journal
                Ultrason Sonochem
                Ultrason Sonochem
                Ultrasonics Sonochemistry
                Elsevier
                1350-4177
                1873-2828
                01 July 2021
                August 2021
                01 July 2021
                : 76
                : 105656
                Affiliations
                [a ]Chemical and Process Engineering, University of Surrey, Guildford GU27XH, United Kingdom
                [b ]Grupo de Investigación en Remediación Ambiental y Biocatálisis (GIRAB), Instituto de Química, Facultad de Ciencias Exactas y Naturales, Universidad de Antioquia UdeA, Calle 70 No. 52-21, Medellín, Colombia
                [c ]Grupo de Investigaciones Biomédicas, Facultad de Ciencias de la Salud, Corporación Universitaria Remington (Uniremington), Calle 51 No. 51-27, Medellín, Colombia
                Article
                S1350-4177(21)00198-X 105656
                10.1016/j.ultsonch.2021.105656
                8319449
                34274706
                25cbd571-248f-425b-ab73-1485a7df8ce7
                © 2021 The Authors

                This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).

                History
                : 24 February 2021
                : 21 June 2021
                : 28 June 2021
                Categories
                Ultrasound hybridized technologies: A new breathing for Sonochemistry

                pharmaceutical waste,activated sludge,membrane filtration,ultrasound,biotransformation

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