@article{scholars18290, doi = {10.1007/s11783-023-1711-3}, number = {9}, note = {cited By 3}, title = {Property-performance relationship of core-shell structured black TiO2 photocatalyst for environmental remediation}, year = {2023}, volume = {17}, journal = {Frontiers of Environmental Science and Engineering}, author = {Haider, S. and Nawaz, R. and Anjum, M. and Haneef, T. and Oad, V. K. and Uddinkhan, S. and Khan, R. and Aqif, M.}, url = {https://www.scopus.com/inward/record.uri?eid=2-s2.0-85154565485&doi=10.1007\%2fs11783-023-1711-3&partnerID=40&md5=a7ff618e2b50ba10172feaa41b9a0950}, abstract = {Understanding the relationship between the properties and performance of black titanium dioxide with core-shell structure (CSBT) for environmental remediation is crucial for improving its prospects in practical applications. In this study, CSBT was synthesized using a glycerol-assisted sol-gel approach. The effect of different water-to-glycerol ratios (W:G = 1:0, 9:1, 2:1, and 1:1) on the semiconducting and physicochemical properties of CSBT was investigated. The effectiveness of CSBT in removing phenolic compounds (PHCs) from real agro-industrial wastewater was studied. The CSBT synthesized with a W:G ratio of 9:1 has optimized properties for enhanced removal of PHCs. It has a distinct core-shell structure and an appropriate amount of Ti3+ cations (11.18), which play a crucial role in enhancing the performance of CSBT. When exposed to visible light, the CSBT performed better: 48.30 of PHCs were removed after 180 min, compared to only 21.95 for TiO2 without core-shell structure. The CSBT consumed only 45.5235 kWh/m3 of electrical energy per order of magnitude and cost 2.4127 per unit volume of treated agro-industrial wastewater. Under the conditions tested, the CSBT demonstrated exceptional stability and reusability. The CSBT showed promising results in the treatment of phenols-containing agro-industrial wastewater. Figure not available: see fulltext. {\^A}{\copyright} 2023, Higher Education Press.}, keywords = {Effluents; Glycerol; Phenols; Physicochemical properties; Reusability; Sewage; Shells (structures); Sol-gels; Structural properties; Wastewater treatment, Agro-industrial effluents; Black TiO2; Core shell structure; Environmental remediation; Industrial wastewaters; Performance; Phenolic compounds; Property; Property-performance relationship; Synthesised, Titanium dioxide} }