Preparation of catalyst of cobalt‐ and/or iron‐doped strontium zirconate and its performance in removal of m‐cresol using ozone as oxidant

催化作用 煅烧 锆酸盐 化学 无机化学 降级(电信) 环境污染 材料科学 有机化学 陶瓷 环境保护 电信 钛酸酯 环境科学 计算机科学
作者
Weijun Liu,Ankang Wang,Xunchen Li,Meirong Qi,Fuyuan Li,Liuqian Zhao,Xiaofei Chen,Yihan Lei,Lei Ma
出处
期刊:Journal of Chemical Technology & Biotechnology [Wiley]
卷期号:99 (4): 959-970
标识
DOI:10.1002/jctb.7599
摘要

Abstract BACKGROUND Wastewater containing m ‐cresol has become a global water environmental problem because its degradation is difficult, and it is highly toxic to plants, animals, and humans. The heterogeneous catalytic ozonation process has been widely used in the treatment of environmental pollution, so it is very important to study efficient catalysts. Perovskite catalysts have been widely investigated and applied in catalytic ozonation processes. Among them, strontium zirconate is a promising perovskite catalyst owing to its high oxidation efficiency and environmental friendliness. RESULTS Strontium zirconate was successfully synthesized via the co‐precipitation method. To improve strontium zirconate catalytic performance, some methods such as changing the doping ratio of cobalt and iron, changing the amount of polyethylene glycol added, changing the calcination temperature, and changing the aging time were carried out during the synthesis process. Finally, the optimal conditions were determined. 0.4 g L −1 Sr 2 Co 0.4 Fe 0.6 ZrO 6 prepared under the optimal conditions was used for catalytic ozonation of 100 ppm m ‐cresol, which achieved the optimum degradation (0.136 min −1 ), m ‐cresol conversion rate (92.2%) and total organic carbon removal rate (12.1%) within 20 min. CONCLUSION This work provides the best preparation conditions. The Sr 2 Co 0.4 Fe 0.6 ZrO 6 catalyst, as prepared, is the optimal catalyst for catalytic ozonation of m ‐cresol among the investigated Sr 2 Co x Fe 1− x ZrO 6 catalysts. © 2024 Society of Chemical Industry (SCI).
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