The catalytic wet air oxidation of pharmaceutical wastewater with alkali-activated Mn and Cu composites : preparation of precursors by calcination of kaolin with Mn and Cu
Christophliemk, M. P., Heponiemi, A., Kangas, T., Hu, T., Prokkola, H., & Lassi, U. (2024). The catalytic wet air oxidation of pharmaceutical wastewater with alkali-activated Mn and Cu composites : preparation of precursors by calcination of kaolin with Mn and Cu. Advanced Composites and Hybrid Materials, 7, Article 158. https://doi.org/10.1007/s42114-024-00982-8
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Advanced Composites and Hybrid MaterialsDate
2024Copyright
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In recent decades, the concentration of pharmaceutical residues and narcotics has increased in municipal wastewater. Decomposing these toxic organic chemicals is challenging and requires new techniques and advanced catalytic materials. Precursors of metal composites were prepared by calcining an aqueous suspension of natural clay–based kaolin with Mn and Cu, binding chemically the active metals to the aluminosilicate frame structure of the precursor. The specific surface area of Mn and Cu composite was 67 m2/g and 81 m2/g, respectively. The mechanical durability was determined in terms of compressive strength, and 3.3 MPa and 3.6 MPa were obtained, respectively. In the CWAO of pharmaceutical wastewater, Mn composite gave the highest conversions of 54% and 46% of the chemical oxygen demand (COD) and total organic carbon (TOC), respectively. Metal composites were mechanically and chemically highly durable, inducing only 1.2 wt.% and 1.4 wt.% mass loss. In CWAO, Mn and Cu composite increased the biodegradation of organic species in the wastewater by 65% and 75%, respectively.
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Open Access funding provided by University of Oulu (including Oulu University Hospital). This work was financially supported by the Maa- ja vesitekniikan tuki ry, the KAUTE Foundation, and the University of Oulu Graduate School (UniOGS).License
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