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Doctoral Thesis
DOI
https://doi.org/10.11606/T.18.2006.tde-28032007-104838
Document
Author
Full name
Jenny Alexandra Rodríguez Victoria
E-mail
Institute/School/College
Knowledge Area
Date of Defense
Published
São Carlos, 2006
Supervisor
Committee
Foresti, Eugenio (President)
Monteggia, Luiz Olinto
Nour, Edson Aparecido Abdul
Rodrigues, José Alberto Domingues
Sperling, Marcos Von
Title in Portuguese
Filtro biológico aeróbio-anóxico para remoção de nitrogênio de efluentes de reatores UASB
Keywords in Portuguese
Biogás
Desnitrificação
Filtro biológico
Nitrificação
Pós-tratamento
Abstract in Portuguese
Constata-se, principalmente em países em desenvolvimento, o uso crescente de reatores anaeróbios de manta de lodo (UASB) como primeira unidade de tratamento biológico de esgotos sanitários. Embora eficientes na remoção de fração considerável de matéria orgânica, os reatores anaeróbios produzem efluentes que requerem pós-tratamento, principalmente para a remoção de compostos nitrogenados reduzidos. No presente estudo, foi avaliado o desempenho de uma nova configuração de filtro biológico percolador (FB), constituído por dois compartimentos superpostos, um para a nitrificação e outro para a desnitrificação. Utilizou-se um novo material plástico como leito suporte para crescimento da biomassa e avaliou-se a viabilidade da utilização do biogás produzido no reator UASB como doador de elétrons para desnitrificação. Embora a nova configuração de FB tenha permitido a ocorrência dos processos de nitrificação e desnitrificação, são necessárias mudanças no projeto da interface entre os compartimentos para evitar o acúmulo de biomassa nesse local. O material suporte caracterizou-se pela durabilidade e elevado índice de vazios, além de ter oferecido condições favoráveis para a aderência e colonização de biomassa. A utilização de biogás para a desnitrificação mostrou-se viável e eficiente. Como foi constatada a presença de oxigenio dissolvido no compartimento desnitrificante, o metano foi o principal constituinte do biogás utilizado como doador de elétrons. Para a taxa de carregamento hidráulica média aplicada de 5,6 'M POT.3'/'M POT.2'.d e taxa de carregamento orgânica média aplicada de 0,26 kgDQO/'M POT.3'.d, a nitrificação ocorreu de forma eficiente, obtendo-se entre 60 e 74% de conversão de N-amon, sendo que o efluente final apresentou, em média, concentração abaixo de 10 mg/L. A desnitrificação ocorreu de forma bastante satisfatória mesmo na presença de OD. Obtiveram-se concentrações de nitrato menores que 10 mg/L. Contudo, acredita-se ser possível a obtenção de maiores eficiencias de remoção desde que as condições anóxicas no compartimento desnitrificante sejas mantidas.
Title in English
Aerobic/anoxic biological filter for nitrogen removal of UASB effluents
Keywords in English
Biogas
Biological filter
Denitrification
Nitrification
Post-treatment
Abstract in English
UASB reactors have been increased used as first unit of biological domestic sewage treatment mainly in developing countries. Although efficient in the removal of considerable fraction of organic matter, effluents from anaerobic reactors, however, require being post-treated, especially for the removal of reduced nitrogen compounds. In the present study, the performance of a new configuration of trickling filter (TF) composed of a nitrification compartment at its upper part followed by a denitrification compartment was evaluated. A new plastic material was used as support media for biomass attached-growth and the biogas produced by the UASB reactor was used as electron donor for denitrification. Although the new TF configuration has allowed obtaining the nitrification and denitrification, the design in the interface among the compartments should be changed to avoid biomass accumulation. The support media was characterized by the durability and high percentage of void spaces, resides offering favorable conditions for the biomass attachment and colonization. The use of the biogas for denitrification was found to be viable and efficient. The presence of disolved oxygen (DO) was verified in the denitrification compartment, leading to the hypothesis that methane might have been the main component of the biogas used as electrons donor. Regarding the performance of TF for nitrogen removal, efficient nitrification was achieved for the applied hydraulic load around 5.6 'M POT.3'/'M POT.2'.d and applied organic load around 0.26 kgDQO/'M POT.3'.d. Under such conditions, about 74% of N-ammonia was removed and the final effluent presented average concentrations of N-ammonia below 10 mg/L. Despite the presence of OD, the denitrification was performed in a satisfactory way. Nitrate concentrations smaller than 10 mg/L were obtained. In addition, it is believed that maintaining anoxic conditions in the lower compartment would make it possible to obtain higher denitrification efficiencies.
 
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TESEFINAL.pdf (3.93 Mbytes)
Publishing Date
2007-03-30
 
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