Literature DB >> 19109012

Pre-treatment of hospital wastewater by coagulation-flocculation and flotation.

Sonia Suarez1, Juan M Lema, Francisco Omil.   

Abstract

Coagulation-flocculation and flotation processes were evaluated for the pre-treatment of hospital wastewater, including the removal of 13 pharmaceutical and personal care products (PPCPs). Coagulation-flocculation assays were performed in a Jar-Test device and in a continuous pilot-scale plant. Raw hospital wastewater as well as the effluent from the continuous coagulation plant were treated in a flotation cell. Removal of total suspended solids (TSS) during pre-treatment was very effective, reaching an average removal efficiency of 92% in the combined coagulation-flotation process. Musk fragrances were eliminated to a high degree during batch coagulation-flocculation (tonalide: 83.4+/-14.3%; galaxolide: 79.2+/-9.9%; celestolide: 77.7+/-16.8%), presumably due to their strong lipophilic character which promotes the interaction of these compounds with the lipid fraction of solids. For diclofenac (DCF), naproxen (NPX) and ibuprofen (IBP) maximum removals of 46%, 42% and 23%, respectively, were obtained, while the rest of PPCPs were not affected by the physico-chemical treatment. Flotation of raw wastewater led to slightly worse results compared to coagulation-flocculation, although the combined action of both improved the overall efficiency of the process. The proposed pre-treatment strategy for hospital wastewater is useful for assimilating its conventional physico-chemical characteristics to that of municipal wastewater as well as for reducing the load of some PPCPs into the sewer system.

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Year:  2008        PMID: 19109012     DOI: 10.1016/j.biortech.2008.11.015

Source DB:  PubMed          Journal:  Bioresour Technol        ISSN: 0960-8524            Impact factor:   9.642


  21 in total

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2.  A new decentralized biological treatment process based on activated carbon targeting organic micropollutant removal from hospital wastewaters.

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3.  Popular pharmaceutical residues in hospital wastewater: quantification and qualification of degradation products by mass spectroscopy after treatment with membrane bioreactor.

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4.  Treatment of hospital laundry wastewater by UV/H2O2 process.

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5.  Monitoring the release of anti-inflammatory and analgesic pharmaceuticals in the receiving environment.

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Journal:  ACS ES T Eng       Date:  2022-08-23

8.  Biodegradation of NSAIDs and their effect on the activity of ligninolytic enzymes from Pleurotus djamor.

Authors:  Rosbi Cruz-Ornelas; José E Sánchez-Vázquez; Lorena Amaya-Delgado; Karina Guillén-Navarro; Angeles Calixto-Romo
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9.  Removal of Non-Steroidal Anti-Inflammatory Drugs from Aqueous Environments with Reusable Ionic-Liquid-based Systems.

Authors:  Hugo F D Almeida; Isabel M Marrucho; Mara G Freire
Journal:  ACS Sustain Chem Eng       Date:  2017-01-11       Impact factor: 8.198

10.  Minimizing the Risk of Disease Transmission in Emergency Settings: Novel In Situ Physico-Chemical Disinfection of Pathogen-Laden Hospital Wastewaters.

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Journal:  PLoS Negl Trop Dis       Date:  2015-06-25
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