Enhancing ultrafiltration performance for dairy wastewater treatment using a 3D printed turbulence promoter

Author:

Al-Tayawi Aws N.,Gulyás Nikolett Sz.,Gergely Gréta,Fazekas Ákos Ferenc,Szegedi Balázs,Hodúr Cecilia,Lennert József Richárd,Kertész SzabolcsORCID

Abstract

AbstractDairy factories annually generate an increasing amount of wastewater, which can cause eutrophication due to high concentrations of amino acids and lipids. To address this issue, membrane technology has emerged as a promising solution, but membrane fouling remains a significant challenge, since it can cause decreased flux, decrease membrane rejection performance, and increased energy demand. This study aimed to reduce membrane fouling by integrated a three-dimensional printed (3DP) turbulence promoter into an ultrafiltration dead-end cell and varying stirring speeds. Two mathematical models, Hermia and resistance-in-series, were used to analyze the fouling process. According to both models, the cake layer formation model indicated the most prevalent fouling mechanism. Specific energy demand, permeate flux, membrane rejection, and membrane reversible and irreversible resistances were measured, calculated, and compared. The results suggest that the combination of an integrated 3DP turbulence promoter and high stirring speeds can effectively reduce membrane fouling in a dairy wastewater treatment module.

Funder

NKFI-FK

János Bolyai Research Scholarship of the Hungarian Academy of Sciences

University of Szeged Open Access Fund

University of Szeged

Publisher

Springer Science and Business Media LLC

Subject

Health, Toxicology and Mutagenesis,Pollution,Environmental Chemistry,General Medicine

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