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首页> 外文期刊>ACS Omega >Oxidative Dehydrogenation of Propane over a High Surface Area Boron Nitride Catalyst: Exceptional Selectivity for Olefins at High Conversion
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Oxidative Dehydrogenation of Propane over a High Surface Area Boron Nitride Catalyst: Exceptional Selectivity for Olefins at High Conversion

机译:丙烷在高表面积氮化硼催化剂上的氧化脱氢:烯烃在高转化率下的出色选择性

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Developing environment-friendly active and selective catalysts for oxidative dehydrogenation of propane for on-purpose propene synthesis is challenging despite tremendous industrial potential for this reaction. Herein, we report on catalytic activity of high surface area hexagonal boron nitride, toward oxidative dehydrogenation of propane. It shows remarkable selectivity for alkenes (~70%) at very high conversion (of ~50%) of propane. Propene and ethene selectivities as high as 53 and 18%, respectively, were obtained at a conversion of 52%. The catalytic activity is retained continuously for 5 h. Regeneration in ammonia brings back the catalytic activity to its full potential. Oxidation of surface B–N bonds in oxygen leads to the diminishing catalytic activity after 5 h which, on heating in ammonia, reduced back to their native form, regaining the indigenous activity. Remarkably, the addition of ammonia in the reaction feed showed stable activity for more than 100 h.
机译:尽管该反应具有巨大的工业潜力,但是开发用于丙烷的氧化脱氢以用于目标丙烯合成的环境友好的活性和选择性催化剂是具有挑战性的。在此,我们报道了高表面积六方氮化硼对丙烷氧化脱氢的催化活性。在很高的丙烷转化率(约50%)下,它对烯烃(约70%)具有显着的选择性。丙烯和乙烯的选择性分别高达53%和18%,转化率为52%。催化活性连续保持5小时。氨气的再生将催化活性恢复到其全部潜力。氧中表面B–N键的氧化会导致5小时后催化活性降低,在氨气中加热后,其还原为天然形式,恢复了原有活性。显着地,在反应进料中添加氨显示超过100小时的稳定活性。

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