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Smoke Gas Analysis by Fourier Transform Infrared Spectroscopy - Summary of the SAFIR Project Results

机译:傅里叶变换红外光谱法分析烟气-SAFIR项目结果摘要

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摘要

The determination of toxic components from fire gases is difficult because the environment is hot, reactions are often temperature dependent, and a lot of soot may be produced. Due to the different properties of the gas components, a different time-consuming procedure for each species has traditionally been used. The use of FTIR (Fourier transform infrared) spectrometers as a continuous monitoring technique overcomes many of the problems in smoke gas analyses. FTIR offers an opportunity to set up a calibration and prediction method for each gas showing a characteristic spectral band in the infrared region of the spectrum. The objective of the SAFIR project was to further develop the FTIR gas analysis of smoke gases to be an applicable and reliable method for the determination of toxic components in combustion gases related to fire test conditions. The optimum probe design, filter parameters and the most suitable sampling lines in terms of flow rate, diameter, construction material and operating temperature have been specified. In the large scale, special concern was given to the probe design and the effects of the probe location as well as practical considerations of the sampling line length. Quantitative calibration and prediction methods have been constructed for different components present in smoke gases. Recommendations on how to deal with interferents, non-linearities and outliers have been provided and a verification method for the spectrometer for unexpected variations and for the different models have been described. FTIR measurement procedures in different fire test scenarios have been studied using the recommendations of this project for measurement techniques and analysis and an interlaboratory trial of the FTIR technique in smoke gas analysis was carried out to define the repeatability and reproducibility of the method in connection with a small scale fire test method, the cone calorimeter.
机译:由于环境炎热,反应通常取决于温度,并且可能产生大量烟灰,因此很难从火气中确定有毒成分。由于气体成分的不同特性,传统上对每种物质使用了不同的耗时程序。 FTIR(傅立叶变换红外)光谱仪作为连续监测技术的使用克服了烟气分析中的许多问题。 FTIR提供了一种机会,可以针对每种在光谱的红外区域中显示出特征光谱带的气体建立校准和预测方法。 SAFIR项目的目的是进一步发展烟气的FTIR气体分析,使其成为一种确定与燃烧测试条件相关的燃烧气体中有毒成分的适用且可靠的方法。在流量,直径,建筑材料和工作温度方面,已经指定了最佳的探头设计,过滤器参数和最合适的采样线。大规模地,特别关注探针的设计和探针位置的影响,以及对采样线长度的实际考虑。已经针对烟气中存在的不同成分建立了定量校准和预测方法。提供了有关如何处理干扰物,非线性和离群值的建议,并描述了光谱仪针对意外变化和不同模型的验证方法。已使用该项目的建议对测量技术和分析进行了研究,研究了在不同火灾测试场景中的FTIR测量程序,并进行了烟气分析中FTIR技术的实验室间试验,以定义该方法与烟气分析的可重复性和可重复性。小型火试验法,锥形量热仪。

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