4.8 Article

Predation influences the structure of biofilm developed on ultrafiltration membranes

Journal

WATER RESEARCH
Volume 46, Issue 10, Pages 3323-3333

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.watres.2012.03.031

Keywords

Ultrafiltration; Predation; Biofilm structure; Permeate flux; Optical Coherence; Tomography (OCT); Confocal Laser Scanning; Microscopy (CLSM); Gravity-driven membrane; (GDM) filtration

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This study investigates the impact of predation by eukaryotes on the development of specific biofilm structures in gravity-driven dead-end ultrafiltration systems. Filtration systems were operated under ultra-low pressure conditions (65 mbar) without the control of biofilm formation. Three different levels of predation were evaluated: (1) inhibition of eukaryotic organisms, (2) addition of cultured protozoa (Tetrahymena pyriformis), and (3) no modification of microbial community as a control. The system performance was evaluated based on permeate flux and structures of the biofilm. It was found that predation had a significant influence on both the total amount and also the structure of the biofilm. An open and heterogeneous structure developed in systems with predation whereas a flat, compact, and thick structure that homogeneously covered the membrane surface developed in absence of predation. Permeate flux was correlated with the structure of the biofilm with increased fluxes for smaller membrane coverage. Permeate fluxes in the presence or absence of the predators was 10 and 5 L m(-2) h(-1), respectively. It was concluded that eukaryotic predation is a key factor influencing the performance of gravity-driven ultrafiltration systems. (c) 2012 Elsevier Ltd. All rights reserved.

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