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Degradação do antibiótico ciprofloxacina em solução aquosa por meio de processo oxidativo avançado baseado em ozônio. / Degradation of the antibiotic ciprofloxacin in aqueous solution by the advanced oxidation process based on ozone.Cíntia Bardauil Baptistucci 02 March 2012 (has links)
Os tratamentos convencionais de efluentes em geral não são eficientes para a degradação de compostos persistentes como os fármacos. Neste trabalho, estuda-se o tratamento de soluções aquosas contendo o antibiótico ciprofloxacina (CIP) por meio de processo oxidativo avançado baseado em ozônio. Para tanto, foram realizados experimentos em semi-batelada com recirculação de líquido em um reator (coluna de bolhas) com escoamento gás-líquido em contracorrente. Amostras de líquido foram retiradas e analisadas para medida das concentrações de CIP e de carbono orgânico total (COT); a concentração de ozônio no gás foi medida por espectrofotometria UV-vis. Estudaram-se os efeitos das seguintes variáveis quanto à degradação de CIP, por meio de um planejamento Doehlert: concentração de ozônio à entrada do reator (8-25 mgO3 L-1), pH (3,5-10,5) e concentração inicial de CIP (5-26 mg L-1). Avaliaram-se as seguintes variáveis dependentes por meio da análise de superfícies de resposta: variação de concentração de CIP em 2 minutos; taxa inicial de degradação de CIP e variação de concentração de COT em 30 minutos. Os resultados indicaram total degradação de ciprofloxacina em menos de 15 minutos, tanto por via direta, com ataque por ozônio molecular em meio ácido, como por via indireta, com ataque por radicais hidroxila em meio básico. Os compostos resultantes da degradação da CIP mostraram-se recalcitrantes, obtendo-se maiores remoções de COT após 30 minutos apenas em meio básico ou neutro (máximo de 72,8% para pH=7, [O3]=24,9 mgO3 L-1 e [CIP]0=15,8 mg L-1). Apesar da persistência dos compostos orgânicos remanescentes, os ensaios respirométricos sugeriram que os produtos de degradação são menos tóxicos que o composto de partida, com menor inibição da atividade microbiana. No conjunto, os resultados do trabalho indicam que o processo de ozonização pode ser aplicado para pré-tratamento de efluentes aquosos contendo ciprofloxacina em baixas concentrações, podendo ser associado a processos de tratamento biológico em ETEs antes do descarte. / Conventional wastewater treatment processes are not generally efficient for the degradation of persistent substances like pharmaceutical compounds. In this work, the treatment of aqueous solutions containing the antibiotic ciprofloxacin (CIP) by means of the ozone-based advanced oxidation process is studied. With this aim, experiments were carried out in semi-batch mode with liquid circulation in a bubble column reactor with gas-liquid counter flow. Liquid samples were analyzed for CIP and total organic carbon (TOC) concentrations; ozone concentration in the gas was measured by UVvisible spectrophotometry. The effects of the following variables on CIP degradation were studied according to a Doehlert experimental design: inlet ozone concentration (8 to 25 mgO3 L-1), pH (3.5 to 10.5), initial CIP concentration (5 to 26 mg L-1). The following dependent variables were investigated by response surface analysis: variation in CIP concentration after 2 minutes; CIP initial degradation rate and variation in TOC concentration after 30 minutes. The results showed total degradation of ciprofloxacin in less than 15 minutes either by direct reaction with molecular ozone in acidic medium, or by indirect attack of hydroxyl radicals in alkaline medium. Compounds resulting from CIP degradation showed to be recalcitrant, yielding larger TOC removals after 30 minutes only in alkaline or neutral medium (maximum of 72.8% for pH=7, [O3]=24.9 mgO3 L-1, and [CIP]0=15.8 mg L-1). Despite the persistence of remaining organic compounds, respirometric assays suggested that degradation products are less toxic than the parent compound, exhibiting lower inhibition of microbial activity. Overall, the results indicate that the ozonation process can be used in the pre-treatment of aqueous effluents containing ciprofloxacin in low concentrations, and could be associated with biological treatment processes in wastewater treatment plants prior to final disposal.
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Βeta-bloqueadores em efluente hospitalar: ocorrência, degradação por processos avançados de oxidação e identificação de subprodutos / Βeta-blockers in hospital wastewater; occurence, degradation by advanced oxidation process and byproducts identificationWilde, Marcelo Luís 15 December 2011 (has links)
Coordenação de Aperfeiçoamento de Pessoal de Nível Superior / β-Blockers are an important group of prescription drugs; as a consequence of the large and continuous use, they are commonly found in the environment.
This study assessed, preliminary, the inherent risk of the β-blockers Atenolol, Metoprolol and Propranolol, mostly used in the University Hospital of Santa Maria (HUSM), and showed that Propranolol has high Risk Quotient (RQ) of 0.56.
HPLC-FLD and SPE methodologies were developed and optimized with the aid of experimental design in order to analyze the occurrence of β-blockers in the HUSM sewage system. The average concentration for Atenolol, Metoprolol and Propranolol found for a week sampling were 2.45, 4.67 and 0.70 μg L-1 in the sewage of the Emergence; 0.95, 0.70 and 0.315 μg L-1 in the HUSM main sewage, and 1.26, 1.27 and 0.56 μg L-1 in the water course receptor, respectively,
As possible remediation methodologies for the Hospital Wastewater (HWW) were investigated Advanced Oxidation Process (AOPs) such as photo-Fenton, K2FeO4, Ozonation and O3/Fe2+. The operational parameters were optimized by Response Surface Methodology (RSM). Using optimized conditions for photo-Fenton, Atenolol, Metoprolol and Propranolol were totally degraded in 5 min in aqueous solution, and the mineralization achieved 80% after 120 min of treatment. In HWW, the β-blockers were also totally degraded, however, only 26.5% of the organic matter and 38.6% of the aromaticity were removed. The ready biodegradability and toxicity of the photo-Fenton s samples were estimated by official methods, which indicated an increase in the biodegradability and toxicity. This behavior may be correlated to the formation of degradation products (DPs), relatively, more toxic. The DPs were identified with aid of Liquid Chromatography tandem Mass Spectrometry (LC-MSn).
Other proposed degradation process was oxidation-coagulation using Fe(VI), which achieved above 90% degradation for Atenolol, Metoprolol and Propranolol in HWW, while only 17% COD and 60% aromaticity removal. In aqueous solution this process led to 71.7%, 24.7% and 96.5% degradation of Atenolol, Metoprolol and Propranolol, respectively. No mineralization was found, indicating the formation of DPs, identified by LC-MSn. The ready biodegradability of the post-process samples was tested and the results showed that the oxidation-coagulation with Fe(VI) increased the biodegradability.
The applicability of ozonation was evaluated varying the pH (3-11) for HWW and aqueous solution. More than 95% of the β-blockers were degraded independently of the initial pH, while above 50% of the aromaticity was removed. In aqueous solution the β-blockers were degraded in 10 min treatment and the identification of the DPs were carried out for process pH 5, 7 and 9. Catalytic ozonation (O3/Fe2+) was applied to HWW and a mineralization of 49% was achieved, with 77.9% aromaticity removal. The β-blockers were totally degraded.
Therefore, the present study represents a high qualified analytical information contribution concerning the occurrence of β-blockers in HWW. The studied AOPs/Fe(VI) processes demonstrated to be suitable to degrade Atenolol, Metoprolol and Propranolol. Moreover, high removal of organic matter and aromaticity were achieved by appling O3/Fe2+ process.
In many aspects, this work can be considered original, in especial, by regarding the application of Ferrate(VI) and Catalytic Ozonation to the degradation of β-blockers in HWW. / Os β-bloqueadores são uma importante classe de fármacos prescritos na terapia de doenças cardiovasculares e como consequência de seu grande e contínuo uso são comumente encontrados no meio ambiente.
O presente estudo avaliou preliminarmente o risco inerente dos β-bloqueadores mais usados no Hospital Universitário de Santa Maria (HUSM), Atenolol, Metoprolol e Propranolol, evidenciando que Propranolol apresentou maior risco inerente com Quociente de Risco teórico de 0,56 (risco médio).
Métodos HPLC-FLD e de clean-up/pré-concentração por SPE foram desenvolvidos e otimizados com auxílio de Metodologia de Superfície de Resposta (RSM) para avaliar a ocorrência de β-bloqueadores no sistema de esgotos do HUSM. A concentração ambiental mensurada para Atenolol, Metoprolol e Propranolol durante um ciclo semanal no ponto de lançamento Efluente PA foi 2,45; 4,67 e 0,70 μg L-1, no ponto HUSM principal 0,95; 0,70 e 0,32 μg L-1 e para o Córrego onde os efluentes são lançados de 1,26; 1,27 e 0,56 μg L-1, respectivamente.
Como metodologia de remediação da contaminação de β-bloqueadores em Efluente Hospitalar (EH) foram investigados os Processos Avançados de Oxidação (PAOs) Foto-Fenton, K2FeO4, Ozonização e O3/Fe2+. Os parâmetros operacionais foram otimizados por RSM. Usando as condições otimizadas para o processo Foto-Fenton, Atenolol, Metoprolol e Propranolol foram totalmente degradados em 120 min de tratamento, contudo somente 26,5 e 38,6% da carga orgânica e aromaticidade, respectivamente, foram removidos em EH. A pronta biodegradabilidade e toxicidade para amostras aquosas do processo Foto-Fenton foram analisadas por métodos oficiais e indicaram aumento na biodegradabilidade e toxicidade. Este comportamento esta relacionado à formação de Produtos de Degradação (PD) relativamente mais tóxicos. Os PDs foram identificados por Cromatografia Líquida acoplada a Espectrometria de Massas (LC-MSn).
Outro processo proposto foi oxidação-coagulação com Fe(VI) que alcançou degradação de Atenolol, Metoprolol e Propranolol acima de 90% em EH, enquanto apenas 17 e 60% da matéria orgânica e aromaticidade foram removidos, respectivamente. Em solução aquosa este processo conduziu a degradação de 71,7; 24,7 e 96,5% de Atenolol, Metoprolol e Propranolol, respectivamente. Nenhuma mineralização foi encontrada indicando a formação de PDs, identificados por LC-MSn. A pronta biodegradabilidade para as amostras aquosas pós-processo foram avaliadas e os resultados encontrados mostraram que houve aumento na biodegradabilidade.
A aplicabilidade de ozonização foi avaliada variando o pH de 3-11 em EH e solução aquosa. Mais de 95% dos β-bloqueadores foram degradados independente do pH inicial, enquanto mais de 50% da aromaticidade e 30% da matéria orgânica foram. Em solução aquosa todos os β-bloqueadores foram degradados em menos de 10 min e para os processos em pH 5, 7 e 9 foram identificados os PDs. O processo de O3/Fe2+ alcançou 49% de remoção de matéria orgânica, 77,9% de redução da aromaticidade e completa degradação de Atenolol, Metoprolol e Propranolol em EH.
Portanto, o presente estudo contribui com informação analítica qualificada sobre a ocorrência de β-bloqueadores em EH. Os processos de degradação estudados mostraram-se adequados para a degradação de Atenolol, Metoprolol e Propranolol. Ademais, a maior remoção de matéria orgânica e aromaticidade foram observadas para o processo de O3/Fe2+.
Em muitos aspectos, este trabalho pode ser considerado original, em especial sobre a aplicação de ferrato(VI) e ozonização catalítica para a degradação de β-bloqueadores em EH.
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Flotace rozpuštěným vzduchem – od poloprovozního modelu po plnou realizaci / Dissolved Air Flotation – From Pilot Plant to Full Scale ImplementationDobiáš, Pavel January 2018 (has links)
The thesis deals with the use of dissolved air flotation (DAF) in water treatment technology in the Czech Republic. It summarizes the knowledge gained at pilot plant studies as well as the experience with full-scale flotation units which have been built in potable water treatment plants in the Czech Republic in years 2006-2018. This thesis provides a broad background of experimental studies of a modern separation process, which does have great advantages in the removal of natural organic matter and microorganisms from water in the drinking water treatment industry. In this thesis, there are presented some examples of the excellent efficiency of the microorganisms removal, both under the experimental conditions as well as water treatment plants, which were improved by DAF units installation in full scale. In addition to the high separation efficiency, it is shown, how DAF units could influence the subsequent separation steps as for example filtration through the granular media. The negative influence of the pre-ozonization on the DAF separation efficiency in Hradec Králové WTP is demonstrated too. The results of the pilot experiments support the idea, that the key condition for high removal efficiency is the optimal coagulation process chemistry. Design of pilot experiments was based on the factorial planning theory and some results are discussed in this thesis. The very big portion of the pilot experiments was made for estimating of the full-scale DAF design parameters before the water treatment plants reconstruction phase
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Znovu-užití vyčištěných odpadních vod v papírenském a textilním průmyslu / Reuse of treated wastewater in paper and textile industryMatysíková, Jana January 2012 (has links)
This thesis deals with Advanced oxidation processes (AOP) and its aplication for textile wastewaters treatment and reuse. AOP is a modern technology which currently recieves increased attention due to it´s high efficiency in removing resistant and hardly-degradable pollution. Thesis consists of search and practical part. Search part is created by three chapters. First chapter describe briefly wastewater reuse. The second chapter deals with Advanced oxidation processes. AOP principle, AOP division and descriotion is included with the strong focus on the ozonation technology. The third chapter presents the textile industry and its wastewaters. The practical part of this thesis consists of two chapters. Chapter 5 describes testing of textile wastewaters decoloration by ozonation in the selected textile copany and its results. This results are used in chapter 6. Chapter 6 is the study of textile industry treatment and reuse in the selected textile company. This study contains the design of two options for wastewater treatment and reuse in the textile processes.
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Analysis and modelling of ozone pre-treatment of sludge for biogas production / Analys och modellering av ozonförbehandling av slam för biogasproduktionPrasad, Gokul January 2022 (has links)
Ozonförbehandling av avloppsvattenslam har diskuterats i litteraturen som en potentiell metod för att öka biogasproduktionen och minska slamvolymen. I detta arbete utvecklades en numerisk modell för att simulera effekten av ozonförbehandling på biogasproduktion genom anaerobrötning. Modellen bygger på en befintlig modell från litteraturen. Den antar att ozonering leder till en förbättring av hydrolyssteget samtidigt som de övriga stegen (acidogen, acetogen och metanogen) lämnas opåverkade. Modellen kan förutsäga biogasproduktionen för ett givet substrat förutsatt att den matas in i sin makromolekylära koncentration. Modellen är validerad mot fyra uppsättningar data från laboratorieexperiment rapporterade i litteraturen. Även genomförbarhetanalys och känslighetsanalys av modellen studerades. Skillnad i simulerade och experimentella data beräknades för olika ozondoser och en regressionsplot gjordes för att studera robustheten och noggrannheten hos modellen. / Ozone pretreatment of wastewater sludge has been discussed in the literature as a potential method for increasing biogas production and reducing sludge volume. In this work, a numerical model to simulate the effect of ozone pretreatment on biogas production by anaerobic digestion was developed. The model is based on an existing model from the literature. It assumes that ozonation leads to an enhancement of the hydrolysis step while leaving the other steps (acidogenic, acetogenic and methanogenic) unaffected. The model can predict the biogas production for any given substrate provided it is being inputted in its macromolecular concentration. The model is validated against four sets of data from laboratory experiments reported in the literature. Feasibility and sensitivity analysis of the model was also studied. Difference in the simulated and experimental data were calculated for different ozone dosages and a regression plot was made to study the robustness and accuracy of the model.
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