4.5 Article

Simultaneous removal of selenite and phenol from wastewater in an upflow fungal pellet bioreactor

Journal

JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGY
Volume 93, Issue 4, Pages 1003-1011

Publisher

WILEY
DOI: 10.1002/jctb.5452

Keywords

selenite; phenol; oil refinery wastewater; upflow bioreactor; P. chrysosporium; fungal pellets

Funding

  1. Netherlands Fellowship Program (NFP) [NFP-MA. 14/5140]

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BACKGROUND: The simultaneous treatment of wastewater containing selenite and phenol in batch and continuous systems, inoculated with pellets of Phanerochaete chrysosporium, was evaluated in this study. RESULTS: Synthetic oil refinery wastewater containing 15 mg L-1 selenite and 100-600 mg L-1 phenol was used in batch incubations for 5 days. Orange-red colored pellets developed during selenite incubations in the presence of up to 400 mg L-1 of phenol, which confirms the formation of elemental selenium with removal efficiencies ranging from 57-78.5% and 75-90.8% for, respectively, phenol and selenite. Continuous experiments in two upflow fungal pelleted bioreactors (30 degrees C, pH 4.5, hydraulic retention time of 16.7 h) fed the synthetic oil refinery wastewater containing phenol or phenol with selenite were performed for 38 days. The maximum removal efficiency of phenol in the fungal bioreactor was 100% (up to day 26). CONCLUSION: Selenite mass balance showed that the overall maximum removal efficiency of selenite in the presence of phenol was 67.3%. The critical phenol and selenite loading rates of the upflow bioreactors were similar to 12 and 4.3mg L-1 h(-1), respectively. (C) 2017 Society of Chemical Industry.

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