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Doctoral Thesis
DOI
https://doi.org/10.11606/T.3.2008.tde-04042023-160413
Document
Author
Full name
Adilson Nunes Fernandes
E-mail
Institute/School/College
Knowledge Area
Date of Defense
Published
São Paulo, 2008
Supervisor
Committee
Ferreira Filho, Sidney Seckler (President)
Daniel, Luiz Antonio
Lage Filho, Frederico de Almeida
Paganini, Wanderley da Silva
Pinto Junior, Ernani
Title in Portuguese
Remoção de microcistina-LR no tratamento de águas de abastecimento por processos de oxidação química e adsorção.
Keywords in Portuguese
Adsorção,Oxidação
Algas
Tratamento de água,Toxinas
Abstract in Portuguese
A contaminação dos mananciais de abastecimento, especialmente em regiões com condições inadequadas de saneamento e suprimento de águas, tem como principal consequência para ecossistemas aquáticos a ocorrência de acelerados processos de eutrofização. A principal preocupação com o aumento da ocorrência de florações de cianobactérias é a capacidade desses microrganismos produzirem e liberarem para o meio líquido toxinas (cianotoxinas) que podem afetar a saúde humana. A principal via de intoxicação é pelo consumo oral da água sem um tratamento adequado para remoção dessas toxinas. Neste trabalho foram enfocados os processos de oxidação química e adsorção, associados ao tratamento convencional, para a remoção de microcistina-LR (MYC-LR) no tratamento de águas de abastecimento. Com base nos resultados obtidos, pode-se concluir que tanto o permanganato de potássio (na forma de pré-oxidante), quanto o cloro (na forma de pré, inter ou pós-oxidante), quando utilizados de forma adequada, podem oxidar com eficiência MYC-LR em sistemas de tratamento convencionais. A adsorção de MYC-LR requereu elevadas doses de carvão ativado em pó (CAP), configurando a necessidade de condução de ensaios cinéticos específicos para seleção de CAP para esta finalidade.
Title in English
untiteld in english
Keywords in English
Adsorption
Chemical oxidation
Cyanotoxins
Water treatment plant
Abstract in English
The contamination of water supply resources in areas where the sanitation and water distribution systems are underdeveloped result in serious consequences to the aquatic ecosystems, generating accelerated eutrofization processes. The most important point of concern with the increasing number of events dealing with cyanobacteria bloom has to do with the fact that such microorganisms have a great capacity to produce and release toxins (cyanotoxins) to the water sheds, which can impact human health. The main contamination path takes place though oral ingestion of waters that have not been adequately treated for the removal of such toxins. This work focuses on chemical processes of oxidation and adsorption associated to conventional water supply treatment technologies for the removal of microsystin -LR (MYC-LR). Based on the results achieved in this work, it can be stated that the adequate use of potassium permanganate (in its pre-ox form), as well as chloride (in its pre, inter or post ox form), can effectively oxidize MYC-LR in conventional water treatment processes. The adsorption of MYC-LR has required high doses of powdered activated carbon (PAC), which suggests that kinetic tests should be conducted in order to select the right powdered activated carbon for this application
 
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Publishing Date
2023-04-04
 
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