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基于溶胶-凝胶的光学二氧化碳传感器,采用双发光体参比技术,应用于食品包装技术。

Sol-gel based optical carbon dioxide sensor employing dual luminophore referencing for application in food packaging technology.

作者信息

von Bultzingslöwen Christoph, McEvoy Aisling K, McDonagh Colette, MacCraith Brian D, Klimant Ingo, Krause Christian, Wolfbeis Otto S

机构信息

Department of Physics/National Centre for Sensor Research, Dublin City University, Ireland.

出版信息

Analyst. 2002 Nov;127(11):1478-83. doi: 10.1039/b207438a.

Abstract

An optical sensor for the measurement of carbon dioxide in Modified Atmosphere Packaging (MAP) applications has been developed. It is based on the fluorescent pH indicator 1-hydroxypyrene-3,6,8-trisulfonate (HPTS) immobilised in a hydrophobic organically modified silica (ormosil) matrix. Cetyltrimethylammonium hydroxide was used as an internal buffer system. Fluorescence is measured in the phase domain by means of the Dual Luminophore Referencing (DLR) sensing scheme which provides many of the advantages of lifetime-based fluorometric sensors and makes it compatible with established optical oxygen sensor technology. The long-term stability of the sensor membranes has been investigated. The sensor displays 13.5 degrees phase shift between 0 and 100% CO2 with a resolution of better than 1% and a limit of detection of 0.08%. Oxygen cross-sensitivity is minimised (0.6% quenching in air) by immobilising the reference luminophore in polymer nano-beads. Cross-sensitivity towards chloride and pH was found to be negligible. Temperature effects were studied, and a linear Arrhenius correlation between ln k and 1/T was found. The sensor is stable over a period of at least seven months and its output is in excellent agreement with a standard reference method for carbon dioxide analysis.

摘要

已开发出一种用于气调包装(MAP)应用中二氧化碳测量的光学传感器。它基于固定在疏水性有机改性二氧化硅(有机硅)基质中的荧光pH指示剂1-羟基芘-3,6,8-三磺酸盐(HPTS)。十六烷基三甲基氢氧化铵用作内部缓冲系统。通过双发光体参考(DLR)传感方案在相域中测量荧光,该方案具有基于寿命的荧光传感器的许多优点,并使其与成熟的光学氧传感器技术兼容。研究了传感器膜的长期稳定性。该传感器在0至100%二氧化碳之间显示13.5度的相移,分辨率优于1%,检测限为0.08%。通过将参考发光体固定在聚合物纳米珠中,可将氧交叉敏感性降至最低(空气中淬灭0.6%)。发现对氯离子和pH的交叉敏感性可忽略不计。研究了温度影响,发现ln k与1/T之间存在线性阿伦尼乌斯相关性。该传感器在至少七个月的时间内保持稳定,其输出与二氧化碳分析的标准参考方法高度一致。

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