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Effect of Small Molecular Organic Acids on the Structure and Catalytic Performance of Sol–Gel Prepared Cobalt Cerium Oxides towards Toluene Combustion

机译:小分子有机酸对溶胶制备钴铈氧化物对甲苯燃烧的结构和催化性能的影响

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Cobalt cerium oxide catalysts with small molecular organic acids (SOAs) as chelating agents were prepared via the sol–gel method and investigated for the complete oxidation of toluene. Four kinds of natural SOAs, i.e. malic acid (MA), citric acid (CA), glycolic acid (GA), and tartaric acid (TA), were selected. The effect of organic acids on the composition, structure, morphology and catalytic performance of metal oxides is discussed in details. The cobalt cerium oxides catalysts were characterized by various techniques, including TG–DSC, XRD, SEM–EDS, N 2 –adsorption and desorption, XPS, and H 2 –TPR analyses. The results show that the nature of organic acids influenced the hydrolysis, condensation and calcination processes, as well as strongly affected the textural and physicochemical properties of the metal oxides synthesized. The best catalytic activity was obtained with the CoCe–MA catalyst, and the toluene conversion reached 90% at 242 °C. This outstanding catalytic activity could be related to its textural, redox properties and unique surface compositions and oxidation states. In addition, the CoCe–MA catalyst also showed excellent stability in long–time activity test.
机译:通过溶胶 - 凝胶法制备具有小分子有机酸(SOA)的氧化铈氧化铈催化剂作为螯合剂,并研究了甲苯的完全氧化。选择四种天然索拉,即苹果酸(MA),柠檬酸(CA),乙醇酸(GA)和酒石酸(TA)。细节讨论了有机酸对金属氧化物的组成,结构,形态和催化性能的影响。通过各种技术表征钴氧化铈催化剂,包括TG-DSC,XRD,SEMEDS,N 2 - 吸收和解吸,XPS和H 2 -TPR分析。结果表明,有机酸的性质影响了水解,缩合和煅烧过程,以及强烈影响合成的金属氧化物的纹理和物理化学性质。用冰淇淋催化剂获得最佳催化活性,甲苯转化率在242℃下达到90%。这种出色的催化活性可能与其纹理,氧化还原性能和独特的表面组合物和氧化态有关。此外,CoCE-MA催化剂还表现出优异的长时间活性试验稳定性。

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