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Infrared Hollow Waveguide Sensors for Simultaneous Gas Phase Detection of Benzene, Toluene, and Xylenes in Field Environments

机译:用于野外环境中苯,甲苯和二甲苯的同时气相检测的红外空心波导传感器

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摘要

Simultaneous and molecularly selective parts-per-billion detection of benzene, toluene, and xylenes (BTX) using a thermal desorption (TD)-FTIR hollow waveguide (HWG) trace gas sensor is demonstrated here for the first time combining laboratory calibration with real-world sample analysis in field. A calibration range of 100-1000 ppb analyte/N_(2) was developed and applied for predicting the concentration of blinded environmental air samples within the same concentration range, and demonstrate close agreement with the validation method used here, GC-FID. The analyte concentration prediction capability of the TD-FTIR-HWG trace gas sensor also compares well with the industrial standard and other experimental techniques including GC-PID, ultrafast GC-FID, and GC-DMS, which were simultaneously operated in the field. With the advent of a quantum cascade laser with emission frequencies specifically tailored to efficiently overlap benzene absorption as the most relevant analyte, the overall sensor footprint could be considerably reduced to ultimately yield hand-held trace gas sensors facilitating direct and real-time detection of BTX in air down to low ppb levels.
机译:本文首次展示了使用热脱附(TD)-FTIR空心波导(HWG)痕量气体传感器同时,分子选择性地检测十亿分之一的苯,甲苯和二甲苯(BTX)现场世界样品分析。已开发出100-1000 ppb分析物/ N_(2)的校准范围,并用于预测相同浓度范围内的盲环境空气样品的浓度,并证明与此处使用的验证方法GC-FID紧密一致。 TD-FTIR-HWG痕量气体传感器的分析物浓度预测能力还可以与工业标准和其他实验技术(包括在现场同时运行的GC-PID,超快GC-FID和GC-DMS)进行比较。随着量子级联激光器的出现,其发射频率经过专门调整以有效地重叠苯吸收作为最相关的分析物,因此可以大大减少传感器的总体占地面积,从而最终产生手持式痕量气体传感器,从而有助于直接和实时检测BTX空气中的ppb较低。

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