DOI: 10.3390/pr14193127 ISSN: 2227-9717

Optimization of Cr(VI) Photoreduction in Water over Ag-Promoted Nb2O5: Effects of Operating Conditions and Reactive Species

A. K. G. dos Santos, M. E. K. Fuziki, F. H. S. S. Pinheiro, M. M. Menechelli, A. L. W. Araujo, D. T. Dias, E. Abreu, Onelia A. A. dos Santos, T. M. Prados, A. M. Tusset, G. G. Lenzi

Photocatalytic reduction of Cr(VI) using Nb2O5-based catalysts has been reported; however, Ag-promoted Nb2O5 remains scarcely explored. In this context, the present study describes the performance of Ag/Nb2O5 catalysts in removing Cr6+ under various experimental conditions. The catalyst was studied, maintaining the nominal metallic load of 5% Ag. To optimize the process, the following operating conditions were analyzed: pH, catalyst concentration, calcination temperature, additive, air bubbling, photolysis, and additive (hole scavenger). The results obtained indicated that the 5%Ag/Nb2O5 catalyst achieves a higher photoreduction rate than bare Nb2O5. Optimization of process parameters showed that the scavenger inhibits chromium adsorption on the catalytic surface. Optimal conditions observed in the tests were as follows: solution pH of 2, with hole scavenger addition, in the absence of oxygen, using a catalyst concentration of 1 g L−1, and a calcination temperature of 300 °C (resulting in a poorly crystalline Nb2O5 phase). Photolysis in the presence of sodium formate reduced Cr6+; however, the reduction was slower. In the quenching tests, the radical scavengers that most influenced the reduction of Cr6+ were silver nitrate (e− scavenger) and oxalate (h+ scavenger). Oxalate was the only one to reduce the total chromium concentration in the solution.