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HI-Light: A Glass-Waveguide-Based Shell-and-Tube Photothermal Reactor Platform for Converting CO

机译:高灯:用于转换CO的玻璃 - 波导的壳管光热反应器平台

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摘要

In this work, we introduce HI-Light, a surface-engineered glass-waveguide-based “shell-and-tube” type photothermal reactor which is both scalable in diameter and length. We examine the effect of temperature, light irradiation, and residence time on its photo-thermocatalytic performance for CO2 hydrogenation to form CO, with a cubic phase defect-laden indium oxide, In2O3-x(OH)y, catalyst. We demonstrate the light enhancement effect under a variety of reaction conditions. Notably, the light-on performance for the cubic nanocrystal photocatalyst exhibits a CO evolution rate at 15.40 mmol gcat−1 hr−1 at 300°C and atmospheric pressure. This is 20 times higher conversion rate per unit catalyst mass per unit time beyond previously reported In2O3-x(OH)y catalyst in the cubic form under comparable operation conditions and more than 5 times higher than that of its rhombohedral polymorph. This result underscores that improvement in photo-thermocatalytic reactor design enables uniform light distribution and better reactant/catalyst mixing, thus significantly improving catalyst utilization.
机译:在这项工作中,我们介绍了高光,一种基于表面设计的玻璃 - 波导的“壳管”型光热反应器,其直径和长度可扩展。我们研究了温度,光照和停留时间对其光学热催化性能的影响,以形成CO,具有立方相缺陷含含量的氧化物,In2O3-x(OH)Y,催化剂。我们在各种反应条件下证明了光增强效果。值得注意的是,立方纳米晶体光催化剂的光型性能在300℃和大气压下在15.40mmol GCAT-1 HR-1处表现出CO进化速率。这是每单位时间的单位催化剂质量的转化率高20倍以前在比较的操作条件下以2O3-x(OH)Y催化剂,比其rhombohedral多晶型物高出5倍以上。该结果强调了光热催化反应器设计的改善能够实现均匀的光分布和更好的反应物/催化剂混合,从而显着提高催化剂利用。

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