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Direct membrane filtration (DMF) of municipal wastewater by mixed matrix membranes (MMMs) filled with graphene oxide (GO): Towards a circular sanitation model

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Autor(es):
Subtil, Eduardo L. ; Ragio, Rodrigo Almeria ; Lemos, Hugo G. ; Scaratti, Gidiane ; Garcia, Joan ; Le-Clech, Pierre
Número total de Autores: 6
Tipo de documento: Artigo Científico
Fonte: CHEMICAL ENGINEERING JOURNAL; v. 441, p. 12-pg., 2022-08-01.
Resumo

Direct membrane filtration (DMF) is an emerging wastewater treatment technology for providing high-quality effluents as well as efficient organic waste recovery from the concentrate. The latter may then be used for methane production, a renewable energy source. However, widespread application of DMF in large systems still faces challenges due to fouling effects. In this work, polyethersulfone-graphene oxide (PES-GO) ultrafiltration membranes were successfully synthesized by phase-inversion and applied for the first time in a DMF system for a real municipal wastewater. The incorporation of GO resulted in membranes showing increased flux recovery, higher rejection capacity and enhanced irreversible fouling resistance which could be mainly attributed to their more hydrophilic and restrictive selective layer. More specifically, PES-GO(0.6%) membrane reached 91% of flux recovery, indicating a substantial improvement in the membrane reusability when compared to PES membrane. The findings of cake layer characterization confirm that changes in the membrane surface caused by the addition of GO allowed for a reduction in protein deposition, and that its contribution to fouling formation during DMF is greater than carbohydrates. Thereby, these results show promising features for GO modified membranes in DMF systems aiming organic matter recovery for self-energy sustainable wastewater treatment plants. (AU)

Processo FAPESP: 20/11059-0 - Desenvolvimento de módulos de ultrafiltração com membranas de fibra oca de matriz mista, polietersulfona e nanopartículas inorgânicas, para tratamento de água e esgoto
Beneficiário:José Carlos Mierzwa
Modalidade de apoio: Auxílio à Pesquisa - Parceria para Inovação Tecnológica - PITE
Processo FAPESP: 16/23684-0 - Uma nova abordagem para o tratamento de esgoto e recuperação de água e energia: desenvolvimento de um biorreator eletroquímico com membranas condutivas (BREMc) operado em condição de nitrificação e desnitrificação simultânea (NDS)
Beneficiário:Eduardo Lucas Subtil
Modalidade de apoio: Auxílio à Pesquisa - Regular