Desenvolvimento de membranas porosas de alumina para fins de tratamento de efluente industrial têxtil

Textile production has been considered as an activity of high environmental impact due to the generation of large volumes of waste water with high load of organic compounds and strongly colored effluents, toxic and difficult biodegradability. This thesis deals with obtaining porous alumina ceramic m...

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Autor principal: Souto, Késia Karina de Oliveira
Outros Autores: Paskocimas, Carlos Alberto
Formato: doctoralThesis
Idioma:por
Publicado em: Universidade Federal do Rio Grande do Norte
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Endereço do item:https://repositorio.ufrn.br/jspui/handle/123456789/12837
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id ri-123456789-12837
record_format dspace
institution Repositório Institucional
collection RI - UFRN
language por
topic Alumina. Membranas porosas. Efluente industrial têxtil. Filtração
Alumina. Porous membranes. Textile effluent. Filtration
CNPQ::ENGENHARIAS::ENGENHARIA DE MATERIAIS E METALURGICA
spellingShingle Alumina. Membranas porosas. Efluente industrial têxtil. Filtração
Alumina. Porous membranes. Textile effluent. Filtration
CNPQ::ENGENHARIAS::ENGENHARIA DE MATERIAIS E METALURGICA
Souto, Késia Karina de Oliveira
Desenvolvimento de membranas porosas de alumina para fins de tratamento de efluente industrial têxtil
description Textile production has been considered as an activity of high environmental impact due to the generation of large volumes of waste water with high load of organic compounds and strongly colored effluents, toxic and difficult biodegradability. This thesis deals with obtaining porous alumina ceramic membranes for filtration of textile effluent in the removal of contaminants, mainly color and turbidity. Two types of alumina with different particle sizes as a basis for the preparation of formulation for mass production of ceramic samples and membranes. The technological properties of the samples were evaluated after using sintering conditions: 1,350ºC-2H, 1,450ºC-30M, 1,450ºC-2H, 1,475ºC-30M and 1,475ºC-2H. The sintered samples were characterized by XRD, XRF, AG, TG, DSC, DL, AA, MEA, RL, MRF-3P, SEM and Intrusion Porosimetry by Mercury. After the characterization, a standard membrane was selected with their respective sintering condition for the filterability tests. The effluent was provided by a local Textile Industry and characterized at the entry and exit of the treatment plant. A statistical analysis was used to study the effluent using the following parameters: pH, temperature, EC, SS, SD, oil and grease, turbidity, COD, DO, total phosphorus, chlorides, phenols, metals and fecal coliform. The filtered effluent was evaluated by using the same parameters. These results demonstrate that the feasibility of the use of porous alumina ceramic membranes for removing contaminants from textile effluent with improved average pore size of 0.4 micrometre (distribution range varying from 0,025 to 2.0 micrometre), with total porosity of 29.66%, and average percentages of color removal efficiency of 89.02%, 92.49% of SS, turbidity of 94.55%, metals 2.70% (manganese) to 71.52% (iron) according to each metal and COD removal of 72.80%
author2 Paskocimas, Carlos Alberto
author_facet Paskocimas, Carlos Alberto
Souto, Késia Karina de Oliveira
format doctoralThesis
author Souto, Késia Karina de Oliveira
author_sort Souto, Késia Karina de Oliveira
title Desenvolvimento de membranas porosas de alumina para fins de tratamento de efluente industrial têxtil
title_short Desenvolvimento de membranas porosas de alumina para fins de tratamento de efluente industrial têxtil
title_full Desenvolvimento de membranas porosas de alumina para fins de tratamento de efluente industrial têxtil
title_fullStr Desenvolvimento de membranas porosas de alumina para fins de tratamento de efluente industrial têxtil
title_full_unstemmed Desenvolvimento de membranas porosas de alumina para fins de tratamento de efluente industrial têxtil
title_sort desenvolvimento de membranas porosas de alumina para fins de tratamento de efluente industrial têxtil
publisher Universidade Federal do Rio Grande do Norte
publishDate 2014
url https://repositorio.ufrn.br/jspui/handle/123456789/12837
work_keys_str_mv AT soutokesiakarinadeoliveira desenvolvimentodemembranasporosasdealuminaparafinsdetratamentodeefluenteindustrialtextil
AT soutokesiakarinadeoliveira developmentofporousaluminamembranesfortreatmentoftextileeffluent
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spelling ri-123456789-128372024-03-19T04:07:13Z Desenvolvimento de membranas porosas de alumina para fins de tratamento de efluente industrial têxtil Development of porous alumina membranes for treatment of textile effluent Souto, Késia Karina de Oliveira Paskocimas, Carlos Alberto http://lattes.cnpq.br/4712628443097348 http://lattes.cnpq.br/2365059843175411 Nascimento, José Heriberto Oliveira do http://lattes.cnpq.br/7033735079037677 Ladchumananandasivam, Rasiah http://lattes.cnpq.br/8553209522282182 Santos, Andarair Gomes dos http://lattes.cnpq.br/3470634368296605 Brito, Luiz Pereira de http://lattes.cnpq.br/4719691319300166 Alumina. Membranas porosas. Efluente industrial têxtil. Filtração Alumina. Porous membranes. Textile effluent. Filtration CNPQ::ENGENHARIAS::ENGENHARIA DE MATERIAIS E METALURGICA Textile production has been considered as an activity of high environmental impact due to the generation of large volumes of waste water with high load of organic compounds and strongly colored effluents, toxic and difficult biodegradability. This thesis deals with obtaining porous alumina ceramic membranes for filtration of textile effluent in the removal of contaminants, mainly color and turbidity. Two types of alumina with different particle sizes as a basis for the preparation of formulation for mass production of ceramic samples and membranes. The technological properties of the samples were evaluated after using sintering conditions: 1,350ºC-2H, 1,450ºC-30M, 1,450ºC-2H, 1,475ºC-30M and 1,475ºC-2H. The sintered samples were characterized by XRD, XRF, AG, TG, DSC, DL, AA, MEA, RL, MRF-3P, SEM and Intrusion Porosimetry by Mercury. After the characterization, a standard membrane was selected with their respective sintering condition for the filterability tests. The effluent was provided by a local Textile Industry and characterized at the entry and exit of the treatment plant. A statistical analysis was used to study the effluent using the following parameters: pH, temperature, EC, SS, SD, oil and grease, turbidity, COD, DO, total phosphorus, chlorides, phenols, metals and fecal coliform. The filtered effluent was evaluated by using the same parameters. These results demonstrate that the feasibility of the use of porous alumina ceramic membranes for removing contaminants from textile effluent with improved average pore size of 0.4 micrometre (distribution range varying from 0,025 to 2.0 micrometre), with total porosity of 29.66%, and average percentages of color removal efficiency of 89.02%, 92.49% of SS, turbidity of 94.55%, metals 2.70% (manganese) to 71.52% (iron) according to each metal and COD removal of 72.80% A produção têxtil tem sido considerada uma atividade de alto impacto ambiental, devido à geração de grandes volumes de rejeitos com alta carga de compostos orgânicos e efluente fortemente colorido, tóxico e difícil biodegradabilidade. O presente trabalho trata da obtenção de membranas cerâmicas porosas de alumina para filtração de efluente industrial têxtil na remoção de contaminantes, em especial, cor e turbidez. Utilizou-se dois tipos de alumina com granulometrias diferentes como base para o preparo de formulações de massas cerâmicas para a produção dos corpos de prova e membranas. As propriedades tecnológicas dos corpos de prova foram avaliadas após suas sinterizações nas condições de: 1.350ºC 2H, 1.450ºC 30M, 1.450ºC 2H, 1.475ºC 30 M e 1.475ºC 2H. Foram caracterizadas por DRX, FRX, AG, TG, DSC, DL, AA, MEA, RL, MRF-3P, MEV e Porosimetria por Intrusão de Mercúrio. Após essa caracterização definiu-se uma membrana padrão, com a sua respectiva condição de sinterização, para os ensaios de filtrabilidade. O efluente foi fornecido por uma Indústria têxtil do RN, e caracterizado nos pontos de entrada e saída da ETE. Utilizou-se um tratamento estatístico dos resultados analisados no efluente através dos seguintes parâmetros: pH, temperatura, CE, SS, SD, óleos e graxas, turbidez, DQO, OD, fósforo total, cloretos, fenóis, metais e coliformes termotolerantes. O permeado (EF) foi avaliado pelos mesmos parâmetros. Os resultados obtidos demonstram a viabilidade no uso de membranas cerâmicas porosas de alumina na remoção de contaminantes de efluente industrial têxtil, com melhor tamanho médio de poro de 0,4μm (faixa de distribuição de tamanhos de poros variando de 0,025 a 2 μm), com porosidade total de 29,66%, com percentuais médios de eficiência na remoção de cor de 89,02%, SS de 92,49%, turbidez de 94,55%, metais variando de 2,70% (manganês) até 71,52% (ferro) de acordo com cada metal e remoção de DQO de 72,80% 2020-01-01 2014-12-17T14:07:17Z 2014-01-15 2014-12-17T14:07:17Z 2013-07-01 doctoralThesis SOUTO, Késia Karina de Oliveira. Development of porous alumina membranes for treatment of textile effluent. 2013. 218 f. Tese (Doutorado em Processamento de Materiais a partir do Pó; Polímeros e Compósitos; Processamento de Materiais a part) - Universidade Federal do Rio Grande do Norte, Natal, 2013. https://repositorio.ufrn.br/jspui/handle/123456789/12837 por Acesso Aberto application/pdf application/pdf application/pdf Universidade Federal do Rio Grande do Norte BR UFRN Programa de Pós-Graduação em Ciência e Engenharia de Materiais Processamento de Materiais a partir do Pó; Polímeros e Compósitos; Processamento de Materiais a part