Efficient mineralization of nitrogen containing aromatic compounds through catalytic wet peroxidation over CeO₂/SBA-15 catalyst
Abstract
The present study investigated the catalytic performance of the CeO₂/SBA-15 catalyst for the mineralization of nitrogenous aromatic compounds, specifically picoline and aniline, through the catalytic wet peroxidation (CWPO) process. The CeO₂/SBA-15 catalyst was synthesized using two-step impregnation and thoroughly characterized to evaluate structural, textural, and surface properties. The surface area (from 650 to 380 m2/g) and pore volume (from 0.820 to 0.620 cm3/g) declined with incorporation of cerium species, indicating successful metal incorporation within the mesoporous framework. EDX mapping revealed the uniform dispersion of cerium species throughout the silica framework, while NH₃-TPD analysis confirmed the presence of both weak (< 423 K) and strong (773 -873 K) acid sites, which contributed to enhanced catalytic activity. Among the prepared catalysts, 2.5% CeO₂/SBA-15 catalyst demonstrated the highest catalytic efficiency, achieving maximum removal efficiencies of 95% for picoline and 92% for aniline under optimized reaction conditions. The reaction parameters were systematically improved, and Pearson correlation analysis, performed using Python, exhibited that the oxidant concentration, catalyst dose, and temperature were the most influential variables, each independently contributing to the degradation efficiency.
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