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Effect of pH on Microstructure and Catalytic Oxidation of Formaldehyde in MnO2 Catalyst

机译:pH值对MnO2催化剂中甲醛微观结构及催化氧化的影响

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摘要

Layered d-MnO2 catalysts were prepared using the one-step redox method in precursor solutions with five different pH values (pH = 7, 9, 11, 13, and 14). The effects of pH on the physical properties and catalytic activity of the catalyst were investigated through XRD, SEM, TEM, BET, XPS, H-2-TPR, and HCHO degradation tests at room temperature. The results showed that the layer spacing, manganese vacancy content, Mn4+/Mn3+ ratio, and surface-reactive oxygen species content of MnO2 increased with the increase in pH value in the alkaline range. When the catalyst was prepared at pH = 13, the above characteristics of the catalyst reached the optimal value which contributed to the high catalytic activity. Combined with the related characterization results, it was proved that changing the pH can affect the degree of oxidation in the catalyst synthesis process, increase the number of active oxygen and the oxygen mobility of the catalyst, and effectively improve the catalytic activity of the manganese dioxide catalyst for HCHO. This work represents a giant step toward the preparation of an effective catalyst for practical applications of HCHO removal at room temperature at a low concentration and high velocity.
机译:在具有5种不同pH值(pH=7、9、11、13和14)的前驱体溶液中采用一步法制备层状d-MnO2催化剂。通过XRD、SEM、TEM、BET、XPS、H-2-TPR和HCHO降解试验,研究了pH值对催化剂物理性质和催化活性的影响。结果表明:在碱性范围内,MnO2的层间距、锰空位含量、Mn4+/Mn3+比值和表面活性氧含量均随pH值的增加而增加;当催化剂在pH=13时制备时,催化剂的上述特性达到最佳值,有助于提高催化活性。结合相关表征结果,证明改变pH值可以影响催化剂合成过程中的氧化程度,增加催化剂的活性氧数量和氧迁移率,有效提高HCHO二氧化锰催化剂的催化活性。这项工作代表了朝着制备一种有效的催化剂迈出了一大步,用于在室温下以低浓度和高速去除HCHO的实际应用。

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