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用于苯酚污染物臭氧化的三元催化剂Mn-Fe-Ce/AlO:性能与机理

Ternary catalyst Mn-Fe-Ce/AlO for the ozonation of phenol pollutant: performance and mechanism.

作者信息

Zhang Manning, Yin Dulin, Guo Jinjin, Wu Huanghe, Gong Meiling, Feng Xiangdong

机构信息

College of Chemistry and Chemical Engineering, Hunan Normal University, Changsha, 410081, China.

Wuhu Gefeng Green Technology Research Center Co., Ltd, Wuhu, 241000, China.

出版信息

Environ Sci Pollut Res Int. 2021 Feb 26. doi: 10.1007/s11356-021-13006-5.

Abstract

In this study, a novel ternary catalyst Mn-Fe-Ce/AlO was synthesized by co-impregnation method, and was characterized by XRD, SEM, XPS, and FTIR. The catalytic performance of this ternary catalyst was evaluated in the heterogeneous catalytic ozonation of phenol pollutants and it improved the removal rate and mineralization degree of phenol pollutants. The changes of dissolved ozone in water and the TBA experiment proved that the ternary catalyst could accelerate the decomposition of ozone into hydroxyl radicals, thus accelerating the oxidation of phenol. Phosphate experiments and surface hydroxyl density measurements proved that surface hydroxyl was the active site of the catalyst. XPS analysis showed that the ternary catalysts accelerated electron transfer through the redox cycles of Mn-Mn-Mn, Fe-Fe, and Ce-Ce, which also contributed to the high catalytic activity. Moreover, the catalyst maintained high catalytic activity after five cycles of use. Therefore, the ternary catalyst was considered an efficient and promising catalyst for catalytic ozonation system.

摘要

在本研究中,采用共浸渍法合成了一种新型三元催化剂Mn-Fe-Ce/AlO,并通过XRD、SEM、XPS和FTIR对其进行了表征。在苯酚污染物的非均相催化臭氧化反应中评估了该三元催化剂的催化性能,其提高了苯酚污染物的去除率和矿化度。水中溶解臭氧的变化和TBA实验证明,该三元催化剂可加速臭氧分解为羟基自由基,从而加速苯酚的氧化。磷酸盐实验和表面羟基密度测量证明,表面羟基是催化剂的活性位点。XPS分析表明,三元催化剂通过Mn-Mn-Mn、Fe-Fe和Ce-Ce的氧化还原循环加速电子转移,这也有助于提高催化活性。此外,该催化剂在使用五个循环后仍保持较高的催化活性。因此,该三元催化剂被认为是催化臭氧化体系中一种高效且有前景的催化剂。

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