首页> 外文期刊>Journal of Chemical Engineering of Japan >Application of a Microreactor in the Oxidative Dehydrogenation of Propane to Propylene on Calcium Hydroxyapatite and Magnesium ortho-Vanadate Doped and Undoped with Palladium
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Application of a Microreactor in the Oxidative Dehydrogenation of Propane to Propylene on Calcium Hydroxyapatite and Magnesium ortho-Vanadate Doped and Undoped with Palladium

机译:微反应器在掺杂和未掺杂钯的羟基磷灰石钙和原钒酸钙上丙烷氧化脱丙烯为丙烯

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摘要

A microreactor was employed for the oxidative dehydrogenation of propane to propylene in order to suppress a deep oxidation of the resultant propylene to CO and CO_(2). Magnesium ortho -vanadate, doped and undoped with palladium, and calcium hydroxyapatite, were used as catalysts while the reaction temperature was controlled by steady- and unsteady-state conditions. The enhancement of the selectivity to propylene was the most advantageous effect from using the microreactor, and it occurred when calcium hydroxyapatite was used under an unsteady-state. For example, the selectivity to propylene was 0 and 73.0% using a fixed-bed continuous-flow reactor and the microreactor, respectively, under almost identical propane conversion of 3.1 and 3.2%, respectively. The advantageous effect was also achieved, although to a lesser degree, when magnesium ortho -vanadate was used undoped with palladium under both steady- and unsteady-state conditions. However these advantageous effects of the microreactor were not observed with magnesium ortho -vanadate doped with palladium. With regard to the selectivity to propylene, the redox nature of the catalysts seemed to influence the performance of the microreactor.
机译:为了抑制所得的丙烯向CO和CO_(2)的深度氧化,使用微型反应器将丙烷氧化脱氢为丙烯。掺杂和不掺杂钯和羟基磷灰石钙的原钒酸镁用作催化剂,而反应温度由稳态和非稳态条件控制。使用微反应器对丙烯的选择性的增强是最有利的效果,并且当在不稳定状态下使用羟基磷灰石钙时会发生。例如,使用丙烷固定床连续流反应器和微反应器,分别在几乎相同的丙烷转化率分别为3.1%和3.2%的情况下,对丙烯的选择性分别为0和73.0%。当在稳态和非稳态条件下使用原钒酸镁不掺钯时,虽然程度较小,但也获得了有益的效果。然而,用掺杂有钯的原钒酸镁没有观察到微反应器的这些有利作用。关于对丙烯的选择性,催化剂的氧化还原性质似乎影响微反应器的性能。

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