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Spatially and chemically resolved measurement of intra- and inter-particle molecular diffusion in a fixed-bed reactor

机译:固定床反应器中颗粒内和颗粒间分子扩散的空间和化学分辨测量

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This work demonstrates for the first time the ability to spatially and chemically resolve inter- and intra-particle apparent diffusion coefficients in a packed bed during reaction using Nuclear Magnetic Resonance. The measurements were performed using a diffusion preconditioned one-dimensional chemical shift imaging pulse sequence; all the data are recorded within a single measurement. The reaction studied was the continuous liquid phase esterification of acetic acid and ethanol to form ethyl acetate and water over an ion-exchange resin at ambient temperature and pressure. Inter- and intra-particle apparent diffusivities of the hydrocarbons were resolved at four different spatial positions along the length of the catalyst bed. Absolute composition measurements were obtained of the liquid in the inter-particle space of the bed. Relative concentration measurements of the chemical species in the intra-particle space are also reported. The development of these measurement methods advances our ability to characterise mass transfer limitations in situ within a working fixed-bed reactor.
机译:这项工作首次证明了在使用核磁共振的反应过程中,可以在空间和化学上解析填充床中颗粒间和颗粒内的表观扩散系数的能力。使用扩散预处理的一维化学位移成像脉冲序列进行测量。所有数据都记录在一次测量中。研究的反应是在环境温度和压力下,在离子交换树脂上进行乙酸和乙醇的连续液相酯化反应,以形成乙酸乙酯和水。沿着催化剂床的长度在四个不同的空间位置分辨了碳氢化合物的颗粒间和颗粒内表观扩散性。获得了床的颗粒间空间中液体的绝对组成测量。还报告了粒子内部空间中化学物质的相对浓度测量结果。这些测量方法的发展提高了我们表征工作固定床反应器内传质限制的能力。

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