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Fiber-optic detection device for GC-UV

机译:用于GC-UV的光纤检测装置

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摘要

Previous studies of the hyphenation of gas chromatographic separation and spectrophotometric detection in the ultraviolet wavelength range between 168 and 330 nm showed a high potential for applications where the analysis of complex samples is required. Within this paper the development of a state-of-the-art detection system for compounds in the vapour phase is described, offering an improved behaviour compared to previous systems: Dependent on the requirements of established detection systems hyphenated with gas chromatography, the main components of the system have to be designed for optimum performance and reliability of the spectrophotometric detector: A deuterium lamp as a broadband light source has been selected for improved stability in the measurements. A new-type absorption cell based on fiber-optics has been developed considering the dynamic necessary to compete with existing techniques. In addition, the influence of the volume of the cell on the chromatogram needs to be analyzed. Tests for determining the performance of the absorption cell in terms of chemical and thermal influences have been carried out. A new spectrophotometer with adequate spectral resolution in the wavelength range, offering improved stability and dynamic for an efficient use in this application was developed. Furthermore, the influence of each component on the performance, reliability and stability of the sensor system will be discussed. An overview and outlook over the potential applications in the environmental, scientific and medical field will be given.
机译:先前在168至330 nm的紫外线波长范围内气相色谱分离和分光光度检测的联用研究表明,在需要分析复杂样品的应用中具有很高的潜力。在本文中,描述了一种最新的气相化合物检测系统的开发,与以前的系统相比,该系统提供了改进的性能:根据已建立的气相色谱联用检测系统的要求,主要成分必须对系统的设计进行优化,以实现分光光度检测器的最佳性能和可靠性:已选择氘灯作为宽带光源,以提高测量的稳定性。考虑到与现有技术竞争所必需的动力,已经开发了一种基于光纤的新型吸收池。此外,还需要分析细胞体积对色谱图的影响。已经进行了用于确定吸收池的化学和热影响的测试。开发了一种新的分光光度计,该分光光度计在波长范围内具有适当的光谱分辨率,可提供更高的稳定性和动态性,以在此应用中有效使用。此外,将讨论每个组件对传感器系统的性能,可靠性和稳定性的影响。将对环境,科学和医学领域的潜在应用进行概述和展望。

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