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一种用于测定沸石膜中气体扩散系数的光纤干涉传感器平台。

A Fiber Optic Interferometric Sensor Platform for Determining Gas Diffusivity in Zeolite Films.

作者信息

Yang Ruidong, Xu Zhi, Zeng Shixuan, Jing Wenheng, Trontz Adam, Dong Junhang

机构信息

Department of Chemical and Environmental Engineering, University of Cincinnati, Cincinnati, OH 45221, USA.

State Key Laboratory of Materials-Oriented Chemical Engineering, Nanjing Tech University, 5 Xinmofan Road, Nanjing 210009, China.

出版信息

Sensors (Basel). 2018 Apr 4;18(4):1090. doi: 10.3390/s18041090.

Abstract

Fiber optic interferometer (FOI) sensors have been fabricated by directly growing pure-silica MFI-type zeolite (i.e., silicalite) films on straight-cut endfaces of single-mode communication optical fibers. The FOI sensor has been demonstrated for determining molecular diffusivity in the zeolite by monitoring the temporal response of light interference from the zeolite film during the dynamic process of gas adsorption. The optical thickness of the zeolite film depends on the amount of gas adsorption that causes the light interference to shift upon loading molecules into the zeolitic channels. Thus, the time-dependence of the optical signal reflected from the coated zeolite film can represent the adsorption uptake curve, which allows computation of the diffusivity using models derived from the Fick’s Law equations. In this study, the diffusivity of isobutane in silicalite has been determined by the new FOI sensing method, and the results are in good agreement with literature values obtained by various conventional macroscopic techniques. The FOI sensor platform, because of its robustness and small size, could be useful for studying molecular diffusion in zeolitic materials under conditions that are inaccessible to the existing techniques.

摘要

通过在单模通信光纤的直切端面上直接生长纯硅MFI型沸石(即硅沸石)薄膜,制造出了光纤干涉仪(FOI)传感器。通过监测气体吸附动态过程中沸石薄膜光干涉的时间响应,已证明该FOI传感器可用于测定沸石中的分子扩散率。沸石薄膜的光学厚度取决于气体吸附量,当分子进入沸石通道时,气体吸附会导致光干涉发生偏移。因此,从涂覆的沸石薄膜反射的光信号的时间依赖性可以代表吸附摄取曲线,这允许使用从菲克定律方程导出的模型来计算扩散率。在本研究中,通过新的FOI传感方法测定了异丁烷在硅沸石中的扩散率,结果与通过各种传统宏观技术获得的文献值吻合良好。由于其坚固性和小尺寸,FOI传感器平台可用于在现有技术无法达到的条件下研究沸石材料中的分子扩散。

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