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Laser-activated membrane introduction mass spectrometry for high-throughput evaluation of bulk heterogeneous catalysts

机译:激光活化膜引入质谱法用于批量非均相催化剂的高通量评估

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Laser-activated membrane introduction mass spectrometry (LAMIMS), a high-throughput screening method, evaluates heterogeneous catalysts under realistic reactor conditions. It is a precise, versatile system requiring no moving parts. The catalyst array is supported on carbon paper overlaid upon a silicone rubber membrane configured in a variation of membrane introduction mass spectrometry as introduced by Cooks. The carbon paper serves as a heat-dissipating gas diffusion layer that permits laser heating of catalyst samples far above the decomposition temperature of the polymer membrane that separates the array from the mass spectrometer vacuum chamber. A computer-controlled CO2 bar code writing laser is used for fine-tune heating of the catalyst spots above the base temperature of the LAMIMS reactor. The detailed design and performance of LAMIMS is demonstrated on arrays of "real world" bulk water-gas shift catalysts using natural and isotopically labeled reactor feed streams. A bulk catalyst array spot can be evaluated for activity and selectivity in as little as 1.5 min. All array screening results were confirmed by industrial microreactor evaluations. [References: 31]
机译:激光活化膜引入质谱(LAMIMS)是一种高通量筛选方法,用于评估实际反应器条件下的多相催化剂。这是一个精密,通用的系统,不需要任何活动部件。催化剂阵列被支撑在覆盖在硅橡胶膜上的复写纸上,该硅橡胶膜被配置成由Cooks介绍的膜引入质谱的变化形式。碳纸用作散热气体扩散层,允许激光加热催化剂样品,使其远高于将阵列与质谱仪真空室分开的聚合物膜的分解温度。计算机控制的CO2条形码写入激光器用于对LAMPMS反应器基本温度以上的催化剂斑点进行微调加热。使用天然和同位素标记的反应器进料流,在一系列“现实世界”的大量水煤气变换催化剂上证明了LAMIMS的详细设计和性能。可以在短短1.5分钟内评估大量催化剂阵列点的活性和选择性。所有的阵列筛选结果均通过工业微反应器评估得到证实。 [参考:31]

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