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基于介孔二氧化硅薄膜中亚甲基蓝选择性氧化的实时臭氧传感器。

Real-Time Ozone Sensor Based on Selective Oxidation of Methylene Blue in Mesoporous Silica Films.

作者信息

Ghazaly Christelle, Hébrant Marc, Langlois Eddy, Castel Blandine, Guillemot Marianne, Etienne Mathieu

机构信息

Département de Métrologie des Polluants, Institut National de Recherche et de Sécurité (INRS), 54500 Vandœuvre-lès-Nancy, France.

Laboratoire de Chimie Physique et Microbiologie pour les Matériaux et l'Environnement (LCPME), UMR 7564 CNRS-Université de Lorraine, 405 rue de Vandœuvre, 54600 Villers-lès-Nancy, France.

出版信息

Sensors (Basel). 2019 Aug 10;19(16):3508. doi: 10.3390/s19163508.

Abstract

Sensitive and selective personal exposure monitors are needed to assess ozone (O) concentrations in the workplace atmosphere in real time for the analysis and prevention of health risks. Here, a cumulative gas sensor using visible spectroscopy for real-time O determination is described. The sensing chip is a mesoporous silica thin film deposited on transparent glass and impregnated with methylene blue (MB). The sensor is reproducible, stable for at least 50 days, sensitive to 10 ppb O (one-tenth of the occupational exposure limit value in France, Swiss, Canada, U.K., Japan, and the USA) with a measurement range tested up to 500 ppb, and insensitive to NO and to large variation in relative humidity. A model and its derivative as a function of time are proposed to convert in real time the sensor response to concentrations, and an excellent correlation was obtained between those data and reference O concentrations. This sensor is based on a relatively cheap sensing material and a robust detection system, and its analytical performance makes it suitable for monitoring real-time O concentrations in workplaces to promote a safer environment for workers.

摘要

为了分析和预防健康风险,需要灵敏且具选择性的个人暴露监测器来实时评估工作场所空气中的臭氧(O)浓度。在此,描述了一种使用可见光谱法进行实时O测定的累积式气体传感器。传感芯片是沉积在透明玻璃上并浸渍有亚甲基蓝(MB)的介孔二氧化硅薄膜。该传感器具有可重复性,至少50天稳定,对10 ppb O敏感(法国、瑞士、加拿大、英国、日本和美国职业暴露限值的十分之一),测量范围测试高达500 ppb,并且对NO和相对湿度的大幅变化不敏感。提出了一个模型及其作为时间函数的导数,用于实时将传感器响应转换为浓度,并且在这些数据与参考O浓度之间获得了极好的相关性。该传感器基于相对廉价的传感材料和强大的检测系统,其分析性能使其适用于监测工作场所的实时O浓度,以促进为工人营造更安全的环境。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d4d5/6720768/7627d06bc08a/sensors-19-03508-g001.jpg

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