Water Science and Technology (Jan 2023)

Application of partial ozonation on tank truck cleaning concentrate and the influence on biodegradability and ecotoxicity: a pilot-scale study

  • Sven Poelmans,
  • Maarten Nagels,
  • Mélanie Mignot,
  • Raf Dewil,
  • Deirdre Cabooter,
  • Jan Dries

DOI
https://doi.org/10.2166/wst.2022.408
Journal volume & issue
Vol. 87, no. 1
pp. 1 – 12

Abstract

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This study investigates the pilot-scale ozone treatment of reverse osmosis concentrate (ROC), originating from variable tank truck cleaning wastewater. The influence of ozonation on short- and long-term biodegradation potential was examined through respirometry and Zahn–Wellens, respectively. Ecotoxicity was also examined for several concentrate batches and ozonation steps. Chemical oxidation through ozone had a beneficial effect on chemical oxygen demand removal, with a removal efficiency up to 56%. Formation of short-term biochemical oxygen demand (BODst) was induced for several, but not all batches, showing the potential of subsequent biological treatment of ozonated ROC. An increase in the inherent biodegradability through Zahn-Wellens was observed for all tested samples after ozonation, rising to a maximum of 68% after 3 hours of ozonation, highlighting the importance of sludge adaptation. Ecotoxicity, tested with Artemia franciscana and the saltwater algae P. tricornutum, showed initial decreases in algae inhibition after short ozonation periods. An increase in algae inhibition was, however, seen after prolonged ozonation for all tested ROC samples, pointing to the formation of ecotoxic by-products. Artemia showed no significant toxicity effects. When applying biological treatment through Zahn-Wellens, a decrease in ecotoxicity was observed for several samples, likely through biological oxidation of the produced degradation products. HIGHLIGHTS Ozone removed recalcitrant COD from tank truck cleaning reverse osmosis concentrate.; Short-term and inherent biodegradability increased after extended ozone treatment.; Ecotoxicity showed initial decrease after ozone, but increased with extended treatment.; Biological post-treatment was seen as a good way to remove ecotoxic by-products.;

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