Search results for "lääkeainejäämät"

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Mass loading, distribution, and removal of antibiotics and antiretroviral drugs in selected wastewater treatment plants in Kenya.

2020

The discharge of active pharmaceutical ingredients (APIs) into the aquatic environment from wastewater effluents is a concern in many countries. Although many studies have been conducted to evaluate the APIs removal efficiencies and emissions to the environment in wastewater treatment plants (WWTPs), most of these studies considered the aqueous and sludge phases, disregarding the suspended particulate matter (SPM) phase. To try to understand the role of the SPM, the occurrence of five most common antibiotics and three antiretroviral drugs (ARVDs) commonly used in Kenya were investigated in this study. APIs partitioning and mass loading in influents and effluents of three different WWTPs: tr…

Environmental Engineering010504 meteorology & atmospheric sciencesHydraulic retention timeTrickling filterlääkeainejäämätHIV Infectionsjätevesi010501 environmental sciencespharmaceuticalsWastewater01 natural sciencesMass loadingWaste Disposal FluidEnvironmental ChemistryHumansWaste Management and DisposalEffluent0105 earth and related environmental sciencesjäteveden käsittelyjätevedenpuhdistamotSewageenvironmental emissionantibiootitParticulatesPulp and paper industryPollutionsuspended particulate matterKenyaAnti-Bacterial Agentsnegative removal efficienciessludgelääkkeetWastewaterHigh massEnvironmental scienceSewage treatmentWater Pollutants ChemicalEnvironmental MonitoringThe Science of the total environment
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Removal of selected antibiotics and antiretroviral drugs during post‐treatment of municipal wastewater with UV, UV/chlorine and UV/hydrogen peroxide

2020

Active pharmaceutical ingredients (APIs) are only partially removed by convectional wastewater treatment plants. This study aimed at assessing the post‐treatment degradation of selected antibiotics and antiretroviral drugs by direct UV photolysis and advanced oxidation processes (UV/H2O2 and UV/Cl2) using low‐pressure mercury lamp. The rate of degradation largely followed pseudo first‐order reaction kinetics. Amongst the six studied APIs, sulfamethoxazole, ciprofloxacin and zidovudine were readily degraded by more than 90% using direct UV photolysis. Addition of Cl2 and H2O2 to the UV process led to an increase in the rate of degradation for all the compounds. The effectiveness UV/Cl2 proce…

advanced oxidation processEnvironmental Engineeringmedicine.drug_classAntibioticslääkeainejäämätchemistry.chemical_elementhydrogen peroxidejätevesiManagement Monitoring Policy and Lawchemistry.chemical_compoundantibiotics antiretroviral drugskloorivetyperoksidimedicineChlorinehapetus-pelkistysreaktioHydrogen peroxidepost‐treatmentwastewaterWater Science and Technologyjäteveden käsittelyAdvanced oxidation processyhdyskuntajätteetlääkeaineetPulp and paper industryPollutionbiohajoaminenUVchemistryWastewaterchlorinePost treatment
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