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Rapid investigation of paraffin dehydrogenation catalyst by TPRn/SPI-TOF-MS technique for industrial application

机译:TPRn / SPI-TOF-MS技术快速研究石蜡脱氢催化剂的工业应用

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Dehydrogenation of long chain paraffins over commercial Pt-Sn-K-Mg/Al2O3 and Pt-Sn-Na-Co/Al2O3 catalysts were investigated using a temperature programmed reaction/single-photon ionization time of-flight mass spectrometry (TPRn/SPI-TOF-MS) system under realistic reaction conditions using model compound C-12(0) and in the industrial PACOL dehydrogenation plant using n-C-10(0)-C-13(0) mixture. The catalysts were characterized by BET, mercury intrusion porosimetry, CO-chemisorption and NH3-TPD. Catalytic activity, selectivity to various components and stability were compared between TPRn/SPI-TOF-MS measurement and industrial plant run data to explore the reliability, predictability and application of TPRn/SPI-TOF-MS for rapid catalyst testing and screening. Characteristics of the catalysts, such as Pt dispersion and acidity, affected paraffin dehydrogenation conversion and mono-olefin selectivity. This was reflected in the catalyst performance data obtained on TPRn/SPI-TOF-MS system, which was in good agreement with the data from industrial runs. It is shown that use of TPRn/SPI-TOF-MS measurements allows to identify the reaction temperature range for maximum mono-olefin yield. Further it is possible to judge onset temperature for all the products and help identify operation temperature for industrial plant operation. Investigation of aromatics formation over the catalysts establishes the consecutive reaction pathways of long chain paraffin dehydrogenation over modified Pt-Sn/Al2O3 catalyst. (C) 2016 Elsevier B.V. All rights reserved.
机译:使用程序升温反应/飞行中单光子电离时间质谱仪(TPRn / SPI- TOF-MS)系统在逼真的反应条件下使用模型化合物C-12(0)和在工业PACOL脱氢工厂中使用nC-10(0)-C-13(0)混合物。通过BET,压汞法,CO-化学吸附和NH3-TPD对催化剂进行了表征。在TPRn / SPI-TOF-MS测量值和工业运行数据之间比较了催化活性,对各种组分的选择性和稳定性,以探索TPRn / SPI-TOF-MS的可靠性,可预测性和在快速催化剂测试和筛选中的应用。催化剂的特性,例如Pt分散度和酸度,会影响石蜡的脱氢转化率和单烯烃的选择性。这在TPRn / SPI-TOF-MS系统上获得的催化剂性能数据中得到了反映,这与来自工业运行的数据非常吻合。结果表明,使用TPRn / SPI-TOF-MS测量可以确定最大单烯烃收率的反应温度范围。此外,可以判断所有产品的起始温度,并帮助确定工厂运行的操作温度。对在催化剂上形成芳烃的研究建立了在改性Pt-Sn / Al2O3催化剂上长链烷烃脱氢的连续反应途径。 (C)2016 Elsevier B.V.保留所有权利。

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