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Sistema de tratamento convencional seguido de eletrodiálise aplicado à simulação de dessalinização de águas salobras

Engenharia Sanitaria e Ambiental 2023 Score: 30 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Meiryellen Cristina Vargas Proença, Marcos Rogério Szeliga

Summary

Researchers evaluated a bench-scale water treatment system combining coagulation-flocculation-sedimentation-filtration with electrodialysis for desalinating brackish water. Improved water treatment technologies that can handle multiple contaminants are relevant to developing systems that also remove microplastics from drinking water sources.

Resumo A escassez de água disponível tem gerado a necessidade da utilização de fontes alternativas de água para abastecimento público. Neste trabalho foi avaliada a eficiência do sistema de bancada por batelada no tratamento por coagulação, floculação, sedimentação e filtração (CFS-F) seguido de eletrodiálise (ED) no tratamento de água salobra, a fim de propor uma alternativa para a dessalinização. A água salobra (afluente do sistema de tratamento proposto) possuía concentrações de 1.000, 2.000 e 3.000 ± 180 mg.L-1 de sólidos dissolvidos totais (SDT). O tratamento convencional consistia em CFS-F com cloreto de polialumínio como coagulante, sendo a dosagem previamente ajustada por ensaios de Jar Test. A CFS-F removeu sólidos suspensos totais (20,02 a 99,99%), turbidez (78,13 a 98,45%) e cor aparente (85,05 a 99,99%), porém não ocorreu alteração da concentração de SDT. A ED foi eficiente na redução de 90,01, 94,72 e 96,73% de SDT do diluído para as concentrações afluentes de 1.000, 2.000 e 3.000 ± 180 mg.L-1 de SDT, respectivamente. Para obter diluído efluente pelo sistema proposto com concentração de SDT menor que 100 mg.L-1, observou-se maior tempo de tratamento para as maiores concentrações de SDT afluente à ED. No entanto, quanto maior o teor de SDT de diluído e concentrado afluente maior a corrente elétrica correspondente ao aplicar tensão constante de 30 V. Isso demonstra que a concentração de SDT dentro do equipamento de ED influencia a corrente elétrica que, por sua vez, aumenta a taxa de fluxo de íons do diluído para o concentrado, amenizando o fator tempo de tratamento para as maiores concentrações de SDT afluentes.

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