Hori Hajime, Ishimatsu Sumiyo, Fueta Yukiko, Hinoue Mitsuo, Ishidao Toru
Department of Environmental Management, School of Health Sciences, University of Occupational and Environmental Health, Japan.
J UOEH. 2013 Dec 1;35(4):267-72. doi: 10.7888/juoeh.35.267.
Performance and sensor characteristics of a monitor for volatile organic compounds (VOC monitor) using the interference enhanced reflection (IER) method were investigated for 52 organic solvent vapors that are designated as class 1 and class 2 organic solvents by the Ordinance of Organic Solvent Poisoning Prevention in Japan. Test vapors were prepared by injecting 1 to 3 μl of liquid solvent into a 20 l Tedlar(®) bag and perfectly vaporizing them. The vapor concentration was simultaneously measured with the monitor and a gas chromatograph (GC) equipped with flame ionization detector, and both values were compared. The monitor could detect all the solvent vapors that we used. Linear response was obtained between the concentration measured by the monitor and those by the GC. The monitor could detect 1/10 of the administrative control level for 37 of 52 solvent vapors, including toluene and xylenes. For 15 vapors, on the other hand, the monitor could not be used for the working environment measurement because the sensor response was low or the regression lines did not pass through the origin.
采用干涉增强反射(IER)法的挥发性有机化合物监测仪(VOC监测仪)对52种被日本《有机溶剂中毒预防条例》指定为第1类和第2类有机溶剂的有机溶剂蒸气的性能和传感器特性进行了研究。通过将1至3微升液态溶剂注入20升Tedlar(®)袋并使其完全汽化来制备测试蒸气。使用该监测仪和配备火焰离子化检测器的气相色谱仪(GC)同时测量蒸气浓度,并对两者的值进行比较。该监测仪能够检测我们所使用的所有溶剂蒸气。监测仪测得的浓度与GC测得的浓度之间呈现线性响应。该监测仪能够检测52种溶剂蒸气中37种的行政控制水平的十分之一,包括甲苯和二甲苯。另一方面,对于15种蒸气,该监测仪不能用于工作环境测量,因为传感器响应较低或回归线未通过原点。