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Développement d'un procédé d'oxydation avancée pour le traitement d'effluents aqueux contaminés par des polluants réfractaires : étude d'un procédé de décharge plasma à pression atmosphérique couplé à un catalyseur supporté / Development of an advanced oxidation process dedicated to the treatment of aqueous effluents contamined by refractory pollutants : study of an atmospheric pressure plasma discharge process coupled to a supported catalystLesage, Olivier 27 May 2014 (has links)
Dans ces travaux de recherche nous avons cherché à développer et optimiser un procédé d'oxydation avancée dédié au traitement de l'eau. Pour cela, nous avons développé un procédé combinant la génération de radicaux hydroxyles par décharge plasma à pression atmosphérique et un catalyseur fixe. L'originalité de ce travail a été d'utiliser un système d'écoulement permettant l'obtention d'un film liquide (épaisseur<1mm) afin de permettre une interaction entre le plasma, le liquide et la surface catalytique. Les résultats ont montré que l'utilisation d'une décharge de type DBD était préférable au Glidarc, thermique, énergétique et produisant trop de NOx. Les valeurs d'efficacité respectives étaient de 0,67g.kWh-1 pour la DBD et 0,23g.kWh-1 pour le Glidarc. Les résultats ont également montré que le matériau de la contre-électrode/plaque d'écoulement pouvait influencer l'efficacité du procédé. Ainsi dans le cas du laiton, la présence de réactions de corrosion produisant des NO2- réduit l'efficacité de moitié comparée à une plaque d'acier. Le développement d'un modèle CFD 1D à partir des données expérimentales du procédé a été effectué. Ce modèle a permis d'estimer que l'efficacité énergétique de production des HO est de 4,4.10-9 molHO.J-1 pour la décharge DBD. Il a également permis de montrer que le facteur majoritairement limitant était la diffusion moléculaire des espèces dans le liquide. En effet les réactions chimiques ne dure pas plus de 1µs après l'impact du streamer et n'ont lieu que dans les premiers 5% d'épaisseur de liquide. Enfin, un dépôt catalytique de DLC dopé à l'argent et réalisé par rf-PECVD a permis d'améliorer de près de 10% l'efficacité maximale du procédé. / The aim of this research lies in the development and optimization of an advanced oxidation process dedicated to wastewater treatment. This process combines an atmospheric plasma discharge with an immobilized catalyst (Ag-DLC) in order to generate hydroxyl radicals. The novelty of this work relies in the use of a falling thin film system (thickness < 1mm) to promote the interaction between plasma discharge, the solution and the catalytic surface. The results demonstrate the interest of employing a Dielectric Barrier Discharge configuration instead of a Glidarc system. Indeed, the Glidarc system leads to a too high production level of NOx. The efficiencies of these two processes were respectively 0,67 g.kWh-1 and 0,23 g.kWh-1 for the DBD and the Glidarc system. Moreover, the influence of the counter-electrode / flowing plate material on the process efficiency was pointed out. Compared to stainless steel, the presence of corrosion reactions on the brass surface produced NO2- and thus, reduced the process efficiency. The production of HO??radicals at the plasma / water interface was estimated to be 4,4.10-9 molHO.J-1 by the use of 1D CFD modeling. Side reactions such as HO? recombinaison appear as the major limiting factors. Futhermore the model demonstrates that the time needed to complete all the chemical reactions was less than 1 µs and these reactions occurred only in the first 5% of the top liquid film. Finally with an Ag-DLC based catalytic coating elaborated by RF-PECVD, the efficiency was increased to 10% compared to the best efficiency observed with the non-catalytic system.
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Estudo da aplicação de ZnO fotoirradiado com luz solar no tratamento de efluentes de laticínios / Study of application of ZnO using solar photoirradiation in dairy wastewaterSamanamud, Gisella Rossana Lamas 28 February 2011 (has links)
Os produtos lácteos são tidos como os alimentos mais perfeitos para o homem devido ao seu alto valor nutritivo. Entretanto, esses produtos vêm refletidos na elevada carga orgânica de efluente gerado. Os Processos Oxidativos Avançados (POA) são métodos químicos baseados na geração de radicais hidroxilas, que promovem a oxidação de compostos orgânicos. O uso de semicondutores no tratamento de efluentes tem sido de grande interesse devido à sua alta eficiência, estabilidade fotoquímica, natureza não-tóxica e baixo custo, especialmente quando a luz do sol é usada como fonte de irradiação. O uso de Óxido de Zinco (ZnO), por exemplo, além de mais econômico, absorve uma fração maior de espectro UV e tem melhor desempenho em pH neutro. Este estudo consistiu em avaliar a aplicação e eficiência da fotocatálise heterogênea (POA) solar com ZnO em termos de percentual de degradação de Carga Orgânica Total (COT) para um posterior tratamento biológico aerado visando melhorar as condições de despejo do efluente de modo a preservar o ecossistema e economia dos recursos naturais. O sistema POA consistiu de um volume fixo de efluente de 3L, de uma chapa metálica 800 x 250 mm revestida com uma formulação de tinta contendo ZnO, um reservatório de vidro, uma bomba centrífuga e aberto para absorção de radiações UV solar. Os resultados foram obtidos e analisados a partir do método de planejamento de experimentos em termos de percentual de degradação de COT. O melhor resultado apresentou um percentual de degradação de COT de 31,5% onde os níves das variáveis estudadas ocorreram em pH 8,0 em chapa de ZnO com espessura de 100 micrômetros (?m), utilizando o efluente in natura e o tempo total de reação de 3 h (180min). O efluente tratado pelo POA solar com ZnO foi submetido ao tratamento biológico aerado. O pH ótimo e a concentração de lodo foram de 6,0 e 5,0 mg/L, respectivamente. O percentual de degradação de COT para os tratamentos combinados foi de 75,1 % para o efluente de laticínios utilizado neste estudo. Isto sugere que o tratamento por POA utilizando ZnO seguido de um Tratamento Biológico Aerado seria uma alternativa promissora no tratamento de efluentes de laticínios. / Dairy products are the most perfect type of food for men due to its high nutritive value reflected on its high organic load of wastewater generated. The Advanced Oxidation Processes (AOP) are chemical methods based on the generation of hydroxyls radicals that promote the oxidation of organic compounds. The use of semiconductors in wastewater treatment has been of great interest owing to its high efficiency, photochemical stability, non-toxic nature and lower costs, especially when sunlight is used as source of irradiation. The use of Zinc Oxide (ZnO), for instance, besides being more economic, it also absorbs a greater range of UV spectrum and it has a better performance on neutral pH. This study consisted in evaluating the application and efficiency of solar photocatalytic oxidation (AOP) with ZnO in percentage terms of removal of Total Organic Carbon (TOC) prior to an aerobic biological treatment aiming to improve the conditions of the disposal of this wastewater in order to conserve the water environment and saving natural resources. The AOP system consisted of a working volume of 3 L, a sheet metal 800 x 250 mm covered with a paint formula containing ZnO, a glass vessel, a pump and an open system in order to collect solar UV radiation. The results were obtained and analyzed from design of experiments in terms of percentage of removal of TOC. The maximum percentage was found to be 31.5 % of removal of TOC and at pH 8.0, thickness of the sheet containing ZnO of 100 micrometers (?m), wastewater in natura and total time of reaction of 3 h (180 min). The solar AOP with ZnO treated wastewater was subjected to an aerobic biological treatment. The optimum pH and sludge loading were of 6.0 and 5.0 mg/L, respectively. The combination of both treatments resulted in 75.1 % of removal of TOC from the dairy wastewater used in this study. This suggests that the AOP using ZnO followed by an aerobic biological treatment would be a promising alternative for the treatment of dairy wastewater.
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Estudo da aplicação de UV/FENTON (Fe2+/H2O2) no tratamento de efluentes de laticínios / Study of the Application of UV/Fenton (Fe2+ + H2O2) in the Treatment of Dairy Effluent.Loures, Carla Cristina Almeida 25 February 2011 (has links)
O efluente lácteo é o resíduo obtido no beneficiamento do leite e seus derivados, sendo considerado um passivo de alto poder poluidor. Sem o devido tratamento, quando lançado nos rios compromete a sobrevivência da biota como um todo. O objetivo deste trabalho consistiu em avaliar a eficiência e aplicação do processo Foto-Fenton, seguido por um tratamento biológico (lodo ativado), para a redução da carga orgânica do efluente em questão. A caracterização do efluente lácteo in natura e tratado foi realizada empregando-se métodos estabelecidos e otimizados [DQO, COT, DBO5, Nitrogênio (orgânico e amoniacal), Fósforo total, Ferro, e Sólidos (ST, STF, STV), fenol, análise de elementos via absorção atômica]. Por meio de planejamentos estatísticos - Taguchi, Box-Behnken e fatorial completo - foram determinados os melhores experimentos posteriores aos tratamentos fotocatalíticos e biológico, tendo como variável resposta a redução percentual de COT. Após o processo fotocatalítico, a amostra do melhor experimento foi tratada por um processo biológico (Sistema Lodo Ativado SLA), a fim de verificar a eficiência de degradação da matéria orgânica do efluente estudado através do sistema conjugado (POA- SLA). O sistema híbrido que apresentou maior eficiência teve como variáveis do processo de tratamento fotoquímico: pH = 3,5; Temperatura = 30 ºC; reagente Fenton ( 35 g H2O2 + 3,6 g Fe2+ ) e potência de radiação ultravioleta de 28 W, para um tempo de reação de 60 minutos. Para o tratamento biológico por lodo ativado, os melhores níveis das variáveis foram realizados em pH = 8 e concentração de lodo de 3,0 g L-1. Os resultados para o tratamento híbrido apresentou percentuais de reduções para COT = 94 %, DQO = 97 % e DBO = 83 %. / The dairy effluent is the residue obtained from the improvement of milk and its derivatives, being considered a high pollutant. Without the due treatment, when thrown in the rivers it puts in risk the survival of the biota as a whole. The objective of this work consisted of evaluating the efficiency and application of the process photo-Fenton followed by a biological (activated sludge) treatment for the reduction of the organic load of the effluent. The characterization of the dairy effluent in natura and treated was accomplished using established methods [COD, TOC, BOD5, Nitrogen (organic and amoniacal), Total Phosphorus, Iron, and Solids (TS, FTS, VTS), phenol, analysis of elements through atomic absorption]. Through statistical designs, Taguchi, Box-Behnken and Full Factorial, the best experiments were determined for the photocatalytic and biological treatments having the reduction of TOC as their response. After the photocatalytic process, the sample of the best experiment was treated by a biological process in order to verify the efficiency of degradation of the organic matter of the effluent studied through the conjugated (AOP - AS) system. The hybrid system that presented larger efficiency had as factors of the photochemical treatment: pH = 3,5, temperature = 30 ºC, Fenton\'s reagent (35g H2O2 + 3,6 g Fe2+) and potency of ultraviolet radiation of 28 W, for 60 minutes of reaction time. As for the biological treatment, it was accomplished in pH = 8 and concentration of sludge of 3g L-1. Obtained were of the hybrid system the percentage of reductions of TOC = 94 %, COD = 97 % and BOD = 83 %.
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Estudo da aplicação de ZnO fotoirradiado com luz solar no tratamento de efluentes de laticínios / Study of application of ZnO using solar photoirradiation in dairy wastewaterGisella Rossana Lamas Samanamud 28 February 2011 (has links)
Os produtos lácteos são tidos como os alimentos mais perfeitos para o homem devido ao seu alto valor nutritivo. Entretanto, esses produtos vêm refletidos na elevada carga orgânica de efluente gerado. Os Processos Oxidativos Avançados (POA) são métodos químicos baseados na geração de radicais hidroxilas, que promovem a oxidação de compostos orgânicos. O uso de semicondutores no tratamento de efluentes tem sido de grande interesse devido à sua alta eficiência, estabilidade fotoquímica, natureza não-tóxica e baixo custo, especialmente quando a luz do sol é usada como fonte de irradiação. O uso de Óxido de Zinco (ZnO), por exemplo, além de mais econômico, absorve uma fração maior de espectro UV e tem melhor desempenho em pH neutro. Este estudo consistiu em avaliar a aplicação e eficiência da fotocatálise heterogênea (POA) solar com ZnO em termos de percentual de degradação de Carga Orgânica Total (COT) para um posterior tratamento biológico aerado visando melhorar as condições de despejo do efluente de modo a preservar o ecossistema e economia dos recursos naturais. O sistema POA consistiu de um volume fixo de efluente de 3L, de uma chapa metálica 800 x 250 mm revestida com uma formulação de tinta contendo ZnO, um reservatório de vidro, uma bomba centrífuga e aberto para absorção de radiações UV solar. Os resultados foram obtidos e analisados a partir do método de planejamento de experimentos em termos de percentual de degradação de COT. O melhor resultado apresentou um percentual de degradação de COT de 31,5% onde os níves das variáveis estudadas ocorreram em pH 8,0 em chapa de ZnO com espessura de 100 micrômetros (?m), utilizando o efluente in natura e o tempo total de reação de 3 h (180min). O efluente tratado pelo POA solar com ZnO foi submetido ao tratamento biológico aerado. O pH ótimo e a concentração de lodo foram de 6,0 e 5,0 mg/L, respectivamente. O percentual de degradação de COT para os tratamentos combinados foi de 75,1 % para o efluente de laticínios utilizado neste estudo. Isto sugere que o tratamento por POA utilizando ZnO seguido de um Tratamento Biológico Aerado seria uma alternativa promissora no tratamento de efluentes de laticínios. / Dairy products are the most perfect type of food for men due to its high nutritive value reflected on its high organic load of wastewater generated. The Advanced Oxidation Processes (AOP) are chemical methods based on the generation of hydroxyls radicals that promote the oxidation of organic compounds. The use of semiconductors in wastewater treatment has been of great interest owing to its high efficiency, photochemical stability, non-toxic nature and lower costs, especially when sunlight is used as source of irradiation. The use of Zinc Oxide (ZnO), for instance, besides being more economic, it also absorbs a greater range of UV spectrum and it has a better performance on neutral pH. This study consisted in evaluating the application and efficiency of solar photocatalytic oxidation (AOP) with ZnO in percentage terms of removal of Total Organic Carbon (TOC) prior to an aerobic biological treatment aiming to improve the conditions of the disposal of this wastewater in order to conserve the water environment and saving natural resources. The AOP system consisted of a working volume of 3 L, a sheet metal 800 x 250 mm covered with a paint formula containing ZnO, a glass vessel, a pump and an open system in order to collect solar UV radiation. The results were obtained and analyzed from design of experiments in terms of percentage of removal of TOC. The maximum percentage was found to be 31.5 % of removal of TOC and at pH 8.0, thickness of the sheet containing ZnO of 100 micrometers (?m), wastewater in natura and total time of reaction of 3 h (180 min). The solar AOP with ZnO treated wastewater was subjected to an aerobic biological treatment. The optimum pH and sludge loading were of 6.0 and 5.0 mg/L, respectively. The combination of both treatments resulted in 75.1 % of removal of TOC from the dairy wastewater used in this study. This suggests that the AOP using ZnO followed by an aerobic biological treatment would be a promising alternative for the treatment of dairy wastewater.
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Estudo da aplicação de UV/FENTON (Fe2+/H2O2) no tratamento de efluentes de laticínios / Study of the Application of UV/Fenton (Fe2+ + H2O2) in the Treatment of Dairy Effluent.Carla Cristina Almeida Loures 25 February 2011 (has links)
O efluente lácteo é o resíduo obtido no beneficiamento do leite e seus derivados, sendo considerado um passivo de alto poder poluidor. Sem o devido tratamento, quando lançado nos rios compromete a sobrevivência da biota como um todo. O objetivo deste trabalho consistiu em avaliar a eficiência e aplicação do processo Foto-Fenton, seguido por um tratamento biológico (lodo ativado), para a redução da carga orgânica do efluente em questão. A caracterização do efluente lácteo in natura e tratado foi realizada empregando-se métodos estabelecidos e otimizados [DQO, COT, DBO5, Nitrogênio (orgânico e amoniacal), Fósforo total, Ferro, e Sólidos (ST, STF, STV), fenol, análise de elementos via absorção atômica]. Por meio de planejamentos estatísticos - Taguchi, Box-Behnken e fatorial completo - foram determinados os melhores experimentos posteriores aos tratamentos fotocatalíticos e biológico, tendo como variável resposta a redução percentual de COT. Após o processo fotocatalítico, a amostra do melhor experimento foi tratada por um processo biológico (Sistema Lodo Ativado SLA), a fim de verificar a eficiência de degradação da matéria orgânica do efluente estudado através do sistema conjugado (POA- SLA). O sistema híbrido que apresentou maior eficiência teve como variáveis do processo de tratamento fotoquímico: pH = 3,5; Temperatura = 30 ºC; reagente Fenton ( 35 g H2O2 + 3,6 g Fe2+ ) e potência de radiação ultravioleta de 28 W, para um tempo de reação de 60 minutos. Para o tratamento biológico por lodo ativado, os melhores níveis das variáveis foram realizados em pH = 8 e concentração de lodo de 3,0 g L-1. Os resultados para o tratamento híbrido apresentou percentuais de reduções para COT = 94 %, DQO = 97 % e DBO = 83 %. / The dairy effluent is the residue obtained from the improvement of milk and its derivatives, being considered a high pollutant. Without the due treatment, when thrown in the rivers it puts in risk the survival of the biota as a whole. The objective of this work consisted of evaluating the efficiency and application of the process photo-Fenton followed by a biological (activated sludge) treatment for the reduction of the organic load of the effluent. The characterization of the dairy effluent in natura and treated was accomplished using established methods [COD, TOC, BOD5, Nitrogen (organic and amoniacal), Total Phosphorus, Iron, and Solids (TS, FTS, VTS), phenol, analysis of elements through atomic absorption]. Through statistical designs, Taguchi, Box-Behnken and Full Factorial, the best experiments were determined for the photocatalytic and biological treatments having the reduction of TOC as their response. After the photocatalytic process, the sample of the best experiment was treated by a biological process in order to verify the efficiency of degradation of the organic matter of the effluent studied through the conjugated (AOP - AS) system. The hybrid system that presented larger efficiency had as factors of the photochemical treatment: pH = 3,5, temperature = 30 ºC, Fenton\'s reagent (35g H2O2 + 3,6 g Fe2+) and potency of ultraviolet radiation of 28 W, for 60 minutes of reaction time. As for the biological treatment, it was accomplished in pH = 8 and concentration of sludge of 3g L-1. Obtained were of the hybrid system the percentage of reductions of TOC = 94 %, COD = 97 % and BOD = 83 %.
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Kinetic Study on Degradation of Gas-phase 1, 3-Butadiene and Propylene Glycol Monomethyl Ether Acetate (PGMEA) by UV/O3Huang, Bo-Jen 24 October 2005 (has links)
This study investigates the rate kinetics for BD and PGMEA oxidation by UV/O3 process. The reactor constructs of a 100 cm x 20 cm x 85 cm (L x W x H) stainless steel chamber, in which four vertical steel plates (20 cm x 65 cm, W x H) were inserted to establish a plug flow path for the flowing gas. The reactor has a total effective volume of 170 L. Each of the five compartments of the reactor is equipped with an individual UV irradiation system with a 3.0-cm x 15-cm (ID x L) quartz sheath that housed an UV lamp, and two electric UV power inputs of 0.147 or 0.294 W/L were obtained. The gas flows perpendicularly to the UV lamps in the reactor. The influent tested VOC concentration was adjusted to about 50 ppm, and the gas flows were controlled at the individual flow rate of 60 and 120 L/min. The effects of moisture content (relative humidity, RH), ozone dosage (initial molar ratio of ozone to the tested VOC, m) and UV volumetric electric power input on the removal of the tested VOCs are investigated in the study. Also, kinetic models of the tested VOCs by photolysis, ozonation and UV/O3 have been developed and confirmed with reference to the experimental data.
According to the kinetic models, both photolysis rate and oxidation rate by UV/O3 are following the first order behavior with respect to the tested VOC concentrations which are low. The result reveals the absorbance for the reactions is weak absorbance under UV irradiation. The reaction rates are proportional to the UV electric power inputs in UV-initiated reactions. And the parameter, £i, which represents the ratio of OH radical consumption rate by the tested VOC to the total OH radical consumption rate, can be obtained by simulating the performance of experimental data of OH reactions.
The experimental results reveal that for BD oxidation with a gas space time of 85 sec and RH = 40 ¡V 99%, BD photolysis did not occur at wavelength of 185 nm with UV electric power inputs of 0.147 and 0.294 W/L. The ozonation efficiency of BD reached 90% at m = 3.5, and RH had no influence on the removal efficiency of BD. The removal efficiencies by UV/O3 process reached 90% with m = 2.2 and 1.6 for UV power inputs of 0.147 and 0.294 W/L, respectively. The addition of ozone apparently encouraged BD removal efficiency by UV/O3 process. And the enhancement of ozone dosage (m = 0.5 ¡V 4.4) would promote the decomposition of BD more effectively than the enhancements of UV power input (from 0.147 to 0.294 W L-1) and RH (from 40 to 99%).
For PGMEA photolysis in a batch reactor with volume of 1.188 L, the photolysis occurred at wavelength of 185 nm under UV irradiation. And the photolysis rate follows the first order behavior with respect to the concentration of PGMEA. But PGMEA photolysis did not occurred at UV wavelength of 254 nm. PGMEA ozonation was performed in the same batch reactor; and the removal efficiency of only 50% at m = 3.96 would take 35 min. So, PGMEA ozonation in the plug flow reactor did not be observed at the conditions of the gas space time of 85 sec and RH = 15 ¡V 99%. Besides, the photolysis of PGMEA was carried out at the above conditions. The removal efficiency of PGMEA by UV/O3 could reach 90% at the conditions of the gas space time of 170 sec, UV volumetric electric power input of 0.294 W/L and m = 2.9. And the enhancement of UV power input (from 0.147 to 0.294 W L-1) would promote the decomposition of PGMEA more effectively than the addition of ozone dosage (m = 1.05 ¡V 15.63) and RH = 15 ¡V 99%.
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Uso de processos oxidativos avançados e ferro elementar na remediação de agua subterranea contendo compostos organoclorados / Use of advanced oxidation process and zero valent ironinremediation of groundwater containing chlorinated compoundsArruda, Tatiana Langbeck de 11 April 2005 (has links)
Orientador: Wilson de Figueiredo Jardim / Dissertação (mestrado) - Universidade Estadual de Campinas, Instituto de Quimica / Made available in DSpace on 2018-08-05T13:56:31Z (GMT). No. of bitstreams: 1
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Previous issue date: 2005 / Mestrado / Quimica Analitica / Mestre em Química
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Conjugação de processos fisico-quimicos ( UV;H2O2; UV/H2O2; reagente de fenton; foto-fenton) e biologico (lodos ativados) para tratamento de aguas residuarias contendo formol / Combined physical-chemistry (UV; H2O2; UV/H2O2; reagent of fenton; photo-Fenton) and biological (activated sludge) process for treatment of contaminated wastewater by formaldehydeFarah, Carolina Rittes Turato 28 February 2007 (has links)
Orientador: Jose Roberto Guimaraes, Pedro Sergio Fadini / Tese (doutorado) - Universidade Estadual de Campinas, Faculdade de Engenharia Civil / Made available in DSpace on 2018-08-09T14:26:18Z (GMT). No. of bitstreams: 1
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Previous issue date: 2007 / Resumo: Nesse trabalho foram realizados ensaios de tratabilidade de soluções e efluentes contendo formol conjugando-se processos físico-químicos com biológicos. Dentre os vários processos, o UV/H2O2 foi o que apresentou a melhor eficácia no tratamento do efluente do Laboratório de Anatomia/IB-UNICAMP. A redução dos teores de CH2O, COD, DQO e DBO, foram 91, 48, 46 e 53 % para o UV/H2O2 e, 94, 38, 38 e 43 % para o Foto-Fenton, respectivamente, ao final de 420 minutos de ensaio. Para uma solução de formol com concentração inicial de 12.000 mg L-1, as reduções de COD foram de 65 e 61 %, para Foto-Fenton e UV/H2O2, respectivamente, ao final de 390 minutos de ensaio. Para soluções com 400 mg L-1 em formol as redu?es em COD foram 65 e 98 % nos processos Foto-Fenton e UV/H2O2, respectivamente, em ensaios com 120 minutos de duração. O sistema Lodo Ativado por Batelada convencional (?c 7 dias) apresentou reduções nos valores de COD, DQO e DBO de 88, 83 e 96 % e 88, 86 e 98 % para sistemas com aeração prolongada (?c 20 dias), alimentados com efluente tratado por POA / Abstract: In this work assays of treatment of solutions had been carried through and effluent I contend formaldehyde conjugating processes physicist-chemistries with biological. Amongst the some processes, the UV/H2O2 was what it presented the best efficiency in the treatment of the effluent one of the "Laboratorio de Anatomia/IB-UNICAMP. The reduction of the values of the CH2O, COD, DQO and DBO, had been 91, 48, 46 and 53 % for the UV/H2O2 and, 94, 38, 38 and 43 % for Photo- Fenton, in the 420 minutes of assay, respectively. Solution of formaldehyde with initial concentration of 12.000 mg L-1, the TOC reductions had been of 65 and 61 %, for Photo-Fenton and UV/H2O2, respectively, for 390 minutes of assay. For solutions with 400 mg L-1 in formaldehyde the reductions in TOC had been 65 and 98 % in processes Photo-Fenton and UV/H2O2, respectively, for 120 minutes of assay. Systems Activated Sludge had presented reductions in the values of TOC, COD and BOD of 88, 83 and 96 % for conventional systems (?c 7 days) and 88, 86 and 98 % for systems with drawn out aeration (?c 20 days), using effluent treated by POA / Doutorado / Saneamento e Ambiente / Doutor em Engenharia Civil
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Chalcogenide semiconductor photocatalysis for the photocatalytic degradation of organic pollutants in waterSithole, Manishana Precious 01 1900 (has links)
This research work discusses the removal of organic pollutants specifically diclofenac and acid blue-25 using chalcogenide semiconductors. Semiconductors are materials that absorb light of specific energy and potentially degrade these organic pollutants into smaller compounds that are not toxic such as carbon dioxide and water. / Civil and Chemical Engineering
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Quantitative Microbial Risk Assessment of Water Treatment Process for Reducing Chlorinous Odor / カルキ臭低減型浄水処理プロセスにおける定量的微生物リスク評価Zhou, Liang 24 November 2015 (has links)
京都大学 / 0048 / 新制・課程博士 / 博士(工学) / 甲第19372号 / 工博第4117号 / 新制||工||1635(附属図書館) / 32386 / 新制||工||1635 / 京都大学大学院工学研究科都市環境工学専攻 / (主査)教授 伊藤 禎彦, 教授 田中 宏明, 教授 米田 稔 / 学位規則第4条第1項該当 / Doctor of Philosophy (Engineering) / Kyoto University / DFAM
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