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Innovative catalysts for oxidative dehydrogenation in the gas phase - Metallic short fibers and coated glass fabrics

机译:气相氧化脱氢的创新催化剂-金属短纤维和涂层玻璃纤维

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摘要

The catalytic activity of metallic short fibers with chosen alloy components and textures was investigated in the oxidative dehydrogenation (ODH) of propane to yield propene, and of isopropanol to yield acetone. The short fibers were synthesized using a melt extraction process and the properties of the fibers were intensely characterized. A correlation between the structure and the catalytic activity of the material was established. Optical microscopic, DSC, XRD, REM and EDX methods were used to characterize the fibers. Selective results of the dependency of the temperature on the propane conversion are presented in this work. A yield of more than 35 % propene is obtained at a propane conversion of 50 %. The ODH of isopropanol to acetone occurred with attractive yields of over 80 %. The results demonstrate the high innovative potential of the metal fiber materials. The use of coated glass fabrics as catalysts for the ODH and total oxidation of propane were also part of this investigation.
机译:在丙烷的氧化脱氢(ODH)产生丙烯,异丙醇的氧化脱氢(ODH)产生丙酮的过程中,研究了具有选定合金成分和织构的金属短纤维的催化活性。使用熔体萃取法合成了短纤维,并强烈表征了纤维的性能。建立了材料的结构与催化活性之间的相关性。使用光学显微镜,DSC,XRD,REM和EDX方法表征纤维。这项工作提出了温度对丙烷转化率依赖性的选择性结果。丙烷转化率为50%时,丙烯的收率超过35%。异丙醇对丙酮的ODH发生,收率超过80%。结果表明金属纤维材料具有很高的创新潜力。使用涂层玻璃织物作为ODH和丙烷完全氧化的催化剂也是这项研究的一部分。

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