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On the thermal stabilization of carbon-supported SiO2 catalysts by phosphorus: Evaluation in the oxidative dehydrogenation of ethylbenzene to styrene and a comparison with relevant catalysts

机译:磷对碳负载的SiO2催化剂的热稳定作用:乙苯氧化脱氢制苯乙烯的评价及与相关催化剂的比较

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摘要

A strategy to enhance the thermal stability of C/SiO2 hybrids for the O2-based oxidative dehydrogenation of ethylbenzene to styrene (ST) by P addition is proposed. The preparation consists of the polymerization of furfuryl alcohol (FA) on a mesoporous precipitated SiO2. The polymerization is catalyzed by oxalic acid (OA) at 160°C (FA:OA = 250). Phosphorous was added as H3PO4 after the polymerization and before the pyrolysis that was carried out at 700°C and will extend the overall activation procedure. Estimation of the apparent activation energies reveals that P enhances the thermal stability under air oxidation, which is a good indication for the ODH tests. Catalytic tests show that the P/C/SiO2 hybrids are readily active, selective and indeed stable in the applied reactions conditions for 60 h time on stream. Coke build-up during the reaction attributed to the P-based acidity is substantial, leading to a reduction of the surface area and pore volume. The comparison with a conventional MWCNT evidences that the P/C/SiO2 hybrids are more active and selective at high temperatures (450-475°C) while the difference becomes negligible at lower temperature. However, the comparison with reference P/SiO2 counterparts shows a very similar yield than the hybrids but more selective to ST. The benefit of the P/C/SiO2 hybrid is the lack of stabilization period, which is observed for the P/SiO2 to create an active coke overlayer. For long term operation, P/SiO2 appears to be a better choice in terms of selectivity, which is crucial for commercialization.
机译:提出了一种提高C / SiO2杂化材料热稳定性的策略,该方法用于通过P加成将乙苯氧化成苯乙烯(ST)的O2基氧化脱氢。该制备包括糠醇(FA)在中孔沉淀的SiO2上的聚合。在160°C(FA:OA = 250)下,草酸(OA)催化聚合。在聚合反应之后以及在700°C进行热解之前,将磷作为H3PO4添加,这将延长整个活化过程。表观活化能的估计表明,P增强了空气氧化下的热稳定性,这是ODH测试的良好指示。催化测试表明,P / C / SiO2杂化物在所应用的反应条件下连续运行60小时很容易活性,选择性并且确实稳定。反应过程中由于P-基酸度而积聚的焦炭很大,导致表面积和孔体积的减少。与常规MWCNT的比较表明,P / C / SiO2杂化物在高温(450-475°C)下更具活性和选择性,而在低温下差异可忽略不计。但是,与参考P / SiO2对应物的比较显示出与杂种非常相似的产率,但对ST的选择性更高。 P / C / SiO2杂化物的好处是缺少稳定期,可以观察到P / SiO2产生活性焦炭覆盖层。对于长期操作,就选择性而言,P / SiO 2似乎是更好的选择,这对商业化至关重要。

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