ESTUDO COMPARATIVO DE REMOÇÃO DE FERRO E MANGANÊS DE SOLUÇÃO AQUOSA POR OZONIZAÇÃO SEGUIDA DE FILTRAÇÃO UTILIZANDO AREIA, ZEÓLITA E CARVÃO ATIVADO GRANULAR

Detalhes bibliográficos
Autor(a) principal: Emboaba, Débora Garcia
Data de Publicação: 2019
Tipo de documento: Dissertação
Idioma: por
Título da fonte: Biblioteca Digital de Teses e Dissertações do UNICENTRO
Texto Completo: http://tede.unicentro.br:8080/jspui/handle/jspui/1106
Resumo: Iron and manganese, which are often found in groundwater in the state of Paraná, can dramatically change the aesthetic and organoleptic characteristics of water, and cause inconvenient situations for its consumers. Thus, this problem requires the design of a specific efficient viable treatment to ensure the availability of quality water for the population to be supplied. Therefore, this study investigated the efficiency of ozonation and filtration in the treatment of water containing iron and manganese, regarding to the removal of color, turbidity, total iron and total manganese, comparing three types of filter materials. The study aimed to confirm if this kind of treatment allows that the concentrations of such parameters to suit the drinking water standard. First of all, in the optimization stage, two samples with different Fe/Mn proportions, A (1 mgFe L-1 + 4 mgMn L-1) and B (3 mgFe L-1 + 4 mgMn L-1), were submitted to three different pH scale (acid, neutral and alkaline), and it was ozonated under three levels of ozone (minimum, medium and maximum concentration produced by the apparatus), and each test was performed in triplicate. It was found that ozonation at neutral pH and minimum ozone level shows the best Mn oxidation results for both samples. Subsequently, new samples A and B were prepared, ozonized under the optimum conditions and submitted to filtration in three different granular media: sand, zeolite and granular activated carbon (GAC). The results showed that, for sample A, with any of the filter media tested, it was not possible to reach the potability standards of the evaluated parameters; in the other hand, for sample B, the three filter materials provided suitable treatment efficiency for the concentration of turbidity and iron to comply with the limits established by the legislation. Whereas, regarding to the apparent color and manganese, it was only possible to fit the maximum allowed value (VMP) when the sample was filtered in GAC. In this way, ozone has been confirmed as an excellent oxidant of soluble metals, once it does not require high alkalinity to act effectively, especially in waters with high concentrations of Fe and Mn, although occurring simultaneously. Sample B was favored by the treatment, due to the autocatalytic reactions caused by the metal oxides present in a larger quantity in this sample than in the sample A. Between zeolite, sand and granular activated carbon, this last one showed to be the best material support for filtration, although its greater efficiency in relation to the other materials was not statistically significant; and the proposed treatment system of ozonation followed by filtration is more advantageous for the treatment of water with higher concentrations of Fe and Mn
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spelling Souza, Jeanette Beber dehttp://lattes.cnpq.br/3539413296260672Souza, Kely Viviane dehttp://lattes.cnpq.br/8056003380150636381.751.498-09http://lattes.cnpq.br/5931065993481232Emboaba, Débora Garcia2019-05-31T13:20:56Z2019-02-22Emboaba, Débora Garcia. ESTUDO COMPARATIVO DE REMOÇÃO DE FERRO E MANGANÊS DE SOLUÇÃO AQUOSA POR OZONIZAÇÃO SEGUIDA DE FILTRAÇÃO UTILIZANDO AREIA, ZEÓLITA E CARVÃO ATIVADO GRANULAR. 2019. 84 f. Dissertação (Programa de Pós-Graduação em Engenharia Sanitária e Ambiental - Mestrado / Associação Ampla com UEPG) - Universidade Estadual do Centro-Oeste, Irati - PR.http://tede.unicentro.br:8080/jspui/handle/jspui/1106Iron and manganese, which are often found in groundwater in the state of Paraná, can dramatically change the aesthetic and organoleptic characteristics of water, and cause inconvenient situations for its consumers. Thus, this problem requires the design of a specific efficient viable treatment to ensure the availability of quality water for the population to be supplied. Therefore, this study investigated the efficiency of ozonation and filtration in the treatment of water containing iron and manganese, regarding to the removal of color, turbidity, total iron and total manganese, comparing three types of filter materials. The study aimed to confirm if this kind of treatment allows that the concentrations of such parameters to suit the drinking water standard. First of all, in the optimization stage, two samples with different Fe/Mn proportions, A (1 mgFe L-1 + 4 mgMn L-1) and B (3 mgFe L-1 + 4 mgMn L-1), were submitted to three different pH scale (acid, neutral and alkaline), and it was ozonated under three levels of ozone (minimum, medium and maximum concentration produced by the apparatus), and each test was performed in triplicate. It was found that ozonation at neutral pH and minimum ozone level shows the best Mn oxidation results for both samples. Subsequently, new samples A and B were prepared, ozonized under the optimum conditions and submitted to filtration in three different granular media: sand, zeolite and granular activated carbon (GAC). The results showed that, for sample A, with any of the filter media tested, it was not possible to reach the potability standards of the evaluated parameters; in the other hand, for sample B, the three filter materials provided suitable treatment efficiency for the concentration of turbidity and iron to comply with the limits established by the legislation. Whereas, regarding to the apparent color and manganese, it was only possible to fit the maximum allowed value (VMP) when the sample was filtered in GAC. In this way, ozone has been confirmed as an excellent oxidant of soluble metals, once it does not require high alkalinity to act effectively, especially in waters with high concentrations of Fe and Mn, although occurring simultaneously. Sample B was favored by the treatment, due to the autocatalytic reactions caused by the metal oxides present in a larger quantity in this sample than in the sample A. Between zeolite, sand and granular activated carbon, this last one showed to be the best material support for filtration, although its greater efficiency in relation to the other materials was not statistically significant; and the proposed treatment system of ozonation followed by filtration is more advantageous for the treatment of water with higher concentrations of Fe and MnFrequentemente encontrados em águas de poços de captação do Estado do Paraná, o ferro e o manganês podem alterar as características estéticas e organolépticas da água, bem como causar situações inconvenientes para seus consumidores. Nesse sentido, este problema demanda a concepção de um tratamento específico para garantir disponibilidade hídrica de qualidade para a população a ser abastecida. Com este propósito, este trabalho investigou a eficiência da ozonização seguida de filtração no tratamento de águas com estes metais, observando a remoção de cor aparente, cor verdadeira, turbidez, ferro total e manganês total, objetivando confirmar se este tipo de tratamento viabiliza que as concentrações de tais parâmetros se adequem ao padrão de potabilidade da água. O estudo foi conduzido em duas etapas. Primeiramente, na etapa de otimização, dois tipos de amostras com diferentes proporções de Fe/Mn, A (1 mgFe L-1 + 4 mgMn L-1) e B (3 mgFe L-1 + 4 mgMn L-1), preparadas a partir de água destilada e concentrações pré-determinadas de sulfato ferroso e sulfato manganoso, foram submetidas a três diferentes faixas de pH (ácida, neutra e alcalina) e ozonizadas sob três níveis de produção de ozônio (mínima, média e máxima produção do equipamento), sendo cada ensaio realizado em triplicata. Verificou-se que a ozonização em pH neutro e produção mínima de ozônio proporcionaram os melhores resultados de oxidação de Fe e Mn, para ambas as amostras. Posteriormente, novas amostras A e B foram preparadas, ozonizadas sob condições ótimas e submetidas à filtração em três diferentes meios granulares: areia, zeólita e carvão ativado granular (CAG). Os resultados evidenciaram que, para a amostra A, nenhum dos materiais testados possibilitou o alcance dos padrões de potabilidade dos parâmetros avaliados; já para a amostra B, os três materiais filtrantes proporcionaram suficiente eficiência de tratamento para que os resultados de turbidez e ferro atendessem aos limites estabelecidos pela legislação, enquanto que em relação à cor aparente e à concentração de Mn, só foi possível o enquadramento ao valor máximo permitido pela legislação (VMP) quando a amostra foi filtrada em CAG. O ozônio confirmou-se um excelente oxidante de metais solúveis, por não demandar alta alcalinidade para agir com eficácia, principalmente em águas com elevadas concentrações de Fe e Mn, ainda que ocorrendo simultaneamente. A amostra B foi favorecida pelo tratamento devido às reações autocatalíticas provocadas pelos óxidos metálicos, presentes em maior quantidade nesta amostra do que na amostra A. Entre zeólita, areia e CAG, este último demonstrou ser o melhor material suporte para filtração. O sistema de tratamento proposto, de ozonização seguido de filtração, é mais vantajoso para o tratamento de águas com maiores concentrações de Fe e Mn (amostra B).Submitted by Fabiano Jucá (fjuca@unicentro.br) on 2019-05-31T13:20:56Z No. of bitstreams: 1 Débora Garcia Emboaba.pdf: 1800805 bytes, checksum: 3870e58b2a04999e9f4c0e2a00f3bcb0 (MD5)Made available in DSpace on 2019-05-31T13:20:56Z (GMT). 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dc.title.por.fl_str_mv ESTUDO COMPARATIVO DE REMOÇÃO DE FERRO E MANGANÊS DE SOLUÇÃO AQUOSA POR OZONIZAÇÃO SEGUIDA DE FILTRAÇÃO UTILIZANDO AREIA, ZEÓLITA E CARVÃO ATIVADO GRANULAR
title ESTUDO COMPARATIVO DE REMOÇÃO DE FERRO E MANGANÊS DE SOLUÇÃO AQUOSA POR OZONIZAÇÃO SEGUIDA DE FILTRAÇÃO UTILIZANDO AREIA, ZEÓLITA E CARVÃO ATIVADO GRANULAR
spellingShingle ESTUDO COMPARATIVO DE REMOÇÃO DE FERRO E MANGANÊS DE SOLUÇÃO AQUOSA POR OZONIZAÇÃO SEGUIDA DE FILTRAÇÃO UTILIZANDO AREIA, ZEÓLITA E CARVÃO ATIVADO GRANULAR
Emboaba, Débora Garcia
metais
carvão ativado granular
zeólita
adsorção
ozonização
metals
granular activated carbon
zeolite
adsorption
ozonization
ENGENHARIAS::ENGENHARIA SANITARIA
title_short ESTUDO COMPARATIVO DE REMOÇÃO DE FERRO E MANGANÊS DE SOLUÇÃO AQUOSA POR OZONIZAÇÃO SEGUIDA DE FILTRAÇÃO UTILIZANDO AREIA, ZEÓLITA E CARVÃO ATIVADO GRANULAR
title_full ESTUDO COMPARATIVO DE REMOÇÃO DE FERRO E MANGANÊS DE SOLUÇÃO AQUOSA POR OZONIZAÇÃO SEGUIDA DE FILTRAÇÃO UTILIZANDO AREIA, ZEÓLITA E CARVÃO ATIVADO GRANULAR
title_fullStr ESTUDO COMPARATIVO DE REMOÇÃO DE FERRO E MANGANÊS DE SOLUÇÃO AQUOSA POR OZONIZAÇÃO SEGUIDA DE FILTRAÇÃO UTILIZANDO AREIA, ZEÓLITA E CARVÃO ATIVADO GRANULAR
title_full_unstemmed ESTUDO COMPARATIVO DE REMOÇÃO DE FERRO E MANGANÊS DE SOLUÇÃO AQUOSA POR OZONIZAÇÃO SEGUIDA DE FILTRAÇÃO UTILIZANDO AREIA, ZEÓLITA E CARVÃO ATIVADO GRANULAR
title_sort ESTUDO COMPARATIVO DE REMOÇÃO DE FERRO E MANGANÊS DE SOLUÇÃO AQUOSA POR OZONIZAÇÃO SEGUIDA DE FILTRAÇÃO UTILIZANDO AREIA, ZEÓLITA E CARVÃO ATIVADO GRANULAR
author Emboaba, Débora Garcia
author_facet Emboaba, Débora Garcia
author_role author
dc.contributor.advisor1.fl_str_mv Souza, Jeanette Beber de
dc.contributor.advisor1Lattes.fl_str_mv http://lattes.cnpq.br/3539413296260672
dc.contributor.advisor-co1.fl_str_mv Souza, Kely Viviane de
dc.contributor.advisor-co1Lattes.fl_str_mv http://lattes.cnpq.br/8056003380150636
dc.contributor.authorID.fl_str_mv 381.751.498-09
dc.contributor.authorLattes.fl_str_mv http://lattes.cnpq.br/5931065993481232
dc.contributor.author.fl_str_mv Emboaba, Débora Garcia
contributor_str_mv Souza, Jeanette Beber de
Souza, Kely Viviane de
dc.subject.por.fl_str_mv metais
carvão ativado granular
zeólita
adsorção
ozonização
topic metais
carvão ativado granular
zeólita
adsorção
ozonização
metals
granular activated carbon
zeolite
adsorption
ozonization
ENGENHARIAS::ENGENHARIA SANITARIA
dc.subject.eng.fl_str_mv metals
granular activated carbon
zeolite
adsorption
ozonization
dc.subject.cnpq.fl_str_mv ENGENHARIAS::ENGENHARIA SANITARIA
description Iron and manganese, which are often found in groundwater in the state of Paraná, can dramatically change the aesthetic and organoleptic characteristics of water, and cause inconvenient situations for its consumers. Thus, this problem requires the design of a specific efficient viable treatment to ensure the availability of quality water for the population to be supplied. Therefore, this study investigated the efficiency of ozonation and filtration in the treatment of water containing iron and manganese, regarding to the removal of color, turbidity, total iron and total manganese, comparing three types of filter materials. The study aimed to confirm if this kind of treatment allows that the concentrations of such parameters to suit the drinking water standard. First of all, in the optimization stage, two samples with different Fe/Mn proportions, A (1 mgFe L-1 + 4 mgMn L-1) and B (3 mgFe L-1 + 4 mgMn L-1), were submitted to three different pH scale (acid, neutral and alkaline), and it was ozonated under three levels of ozone (minimum, medium and maximum concentration produced by the apparatus), and each test was performed in triplicate. It was found that ozonation at neutral pH and minimum ozone level shows the best Mn oxidation results for both samples. Subsequently, new samples A and B were prepared, ozonized under the optimum conditions and submitted to filtration in three different granular media: sand, zeolite and granular activated carbon (GAC). The results showed that, for sample A, with any of the filter media tested, it was not possible to reach the potability standards of the evaluated parameters; in the other hand, for sample B, the three filter materials provided suitable treatment efficiency for the concentration of turbidity and iron to comply with the limits established by the legislation. Whereas, regarding to the apparent color and manganese, it was only possible to fit the maximum allowed value (VMP) when the sample was filtered in GAC. In this way, ozone has been confirmed as an excellent oxidant of soluble metals, once it does not require high alkalinity to act effectively, especially in waters with high concentrations of Fe and Mn, although occurring simultaneously. Sample B was favored by the treatment, due to the autocatalytic reactions caused by the metal oxides present in a larger quantity in this sample than in the sample A. Between zeolite, sand and granular activated carbon, this last one showed to be the best material support for filtration, although its greater efficiency in relation to the other materials was not statistically significant; and the proposed treatment system of ozonation followed by filtration is more advantageous for the treatment of water with higher concentrations of Fe and Mn
publishDate 2019
dc.date.accessioned.fl_str_mv 2019-05-31T13:20:56Z
dc.date.issued.fl_str_mv 2019-02-22
dc.type.status.fl_str_mv info:eu-repo/semantics/publishedVersion
dc.type.driver.fl_str_mv info:eu-repo/semantics/masterThesis
format masterThesis
status_str publishedVersion
dc.identifier.citation.fl_str_mv Emboaba, Débora Garcia. ESTUDO COMPARATIVO DE REMOÇÃO DE FERRO E MANGANÊS DE SOLUÇÃO AQUOSA POR OZONIZAÇÃO SEGUIDA DE FILTRAÇÃO UTILIZANDO AREIA, ZEÓLITA E CARVÃO ATIVADO GRANULAR. 2019. 84 f. Dissertação (Programa de Pós-Graduação em Engenharia Sanitária e Ambiental - Mestrado / Associação Ampla com UEPG) - Universidade Estadual do Centro-Oeste, Irati - PR.
dc.identifier.uri.fl_str_mv http://tede.unicentro.br:8080/jspui/handle/jspui/1106
identifier_str_mv Emboaba, Débora Garcia. ESTUDO COMPARATIVO DE REMOÇÃO DE FERRO E MANGANÊS DE SOLUÇÃO AQUOSA POR OZONIZAÇÃO SEGUIDA DE FILTRAÇÃO UTILIZANDO AREIA, ZEÓLITA E CARVÃO ATIVADO GRANULAR. 2019. 84 f. Dissertação (Programa de Pós-Graduação em Engenharia Sanitária e Ambiental - Mestrado / Associação Ampla com UEPG) - Universidade Estadual do Centro-Oeste, Irati - PR.
url http://tede.unicentro.br:8080/jspui/handle/jspui/1106
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