4.7 Article

Influence of biofilm thickness on the removal of thirteen different organic micropollutants via a Membrane Aerated Biofilm Reactor (MABR)

Journal

JOURNAL OF HAZARDOUS MATERIALS
Volume 432, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.jhazmat.2022.128698

Keywords

Pharmaceutical and personal care products; Biofilm processes; Biofilm thickness; Biofilm microbial community; Aerobic wastewater treatment

Funding

  1. King Abdullah University of Science and Technology (KAUST) , Kingdom of Saudi Arabia [BAS/1/1061-01-01]
  2. KAUST FM Utilities team

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This study evaluated the efficiency of Membrane Aerated Biofilm Reactor (MABR) in removing organic micropollutants (OMPs) from water and found that it can effectively remove a wide range of OMPs while achieving high levels of nitrification and COD removal.
The presence of organic micropollutants (OMPs) in natural water bodies has become an emerging concern due to their fast dissemination into natural water sources, high persistence, ubiquitous nature, and detrimental impact on the environment and human health. This study evaluated the Membrane Aerated Biofilm Reactor (MABR) efficiency in the removal of 13 OMPs commonly reported in water. Results demonstrated that OMPs removal is dependent on biofilm thickness and bacterial cell density, microbial community composition and physicochemical properties of OMPs. Effective removals of ammonium and organic carbon (COD, > 50%), acetaminophen (70%) and triclosan (99%) were obtained even at early stages of biofilm development (thickness < 0.33 mm, 2.9 x 10(5) cell mL(-1)). An increase in biofilm thickness and cell density (1.02 mm, 2.2 x 10(6) cell mL(-1)) enhanced the system performance. MABR achieved over 90% removal of nonpolar, hydrophobic and hydrophilic OMPs and 22-69% removal of negatively charged and acidic OMPs. Relative abundances of Zoogloea, Aqua -bacterium, Leucobacter, Runella, and Paludilbaculum bacteria correlated with the removal of certain OMPs. In addition, MABR achieved up to 96% nitrification and 80% overall COD removal by the end of the experiment. The findings from this study demonstrated MABRs to be a feasible option to treat municipal wastewater polluted by OMPs.& nbsp;

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