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首页> 外文期刊>Environmental Science: Processes & Impacts >The applicability of proton transfer reaction-mass spectrometry (PTR-MS) for determination of isocyanic acid (ICA) in work room atmospheres
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The applicability of proton transfer reaction-mass spectrometry (PTR-MS) for determination of isocyanic acid (ICA) in work room atmospheres

机译:质子转移反应质谱法(PTR-MS)在工作室环境中测定异氰酸(ICA)的适用性

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摘要

A method is presented for the real-time quantitative determination of isocyanic acid (ICA) in air using proton transfer reaction-mass spectrometry (PTR-MS). Quantum mechanical calculations were performed to establish the ion-polar molecule reaction rate of ICA and other isocyanates. The PTR-MS was calibrated against different ICA air concentrations and humidity conditions using Fourier transform-infrared spectroscopy (FT-IR) as quantitative reference. Based on these experiments a simple humidity dependant model was derived for correction of the PTR-MS response for ICA. The corrected PTR-MS data was linearly correlated (R~2 >0.99) with the data acquired by FT-IR. The PTR-MS instrumental limit of detection (LOD) for ICA was 2.3 ppb. Humid atmospheres resulted in LODs of 3.4 and 7.8 ppb, at an absolute humidity (AH) of 4.0 and 15.5 g m~3, respectively. Furthermore, off-line sampling using denuder and impinger samplers using di-n-butylamine (DBA) as derlvatization reagent was compared with PTR-MS measurements in a dynamically generated standard ICA atmosphere. Denuder (n = 4) and impinger (n = 4) sampling subsequent to liquid chromatography mass spectrometry (LC-MS) determination compared to corrected PTR-MS data resulted in recoveries of 79.6 (8.1% RSD) and 99.9 (9.3% RSD) %, respectively. Measurements of ICA from thermally decomposed cured 1,6-hexamethylene diisocyanate (HDI)-paint was performed using PTR-MS and denuder (n = 3) sampling. The relation between the average iCA responses using denuders (34.4 ppb) and PTR-MS (42.6 ppb) was 80.6%, which coincided well with the relative recovery obtained from the controlled laboratory experiments using dynamically generated ICA atmospheres (79.6%). The variability in ICA air concentration during the welding process (170% RSD_(PTR-MS)) illustrated the need for real-time measurements.
机译:提出了一种利用质子转移反应质谱(PTR-MS)实时定量测定空气中异氰酸(ICA)的方法。进行量子力学计算以建立ICA和其他异氰酸酯的离子-极性分子反应速率。使用傅立叶变换红外光谱(FT-IR)作为定量参考,针对不同的ICA空气浓度和湿度条件对PTR-MS进行了校准。基于这些实验,得出了一个简单的湿度相关模型,用于校正ICA的PTR-MS响应。校正后的PTR-MS数据与FT-IR数据线性相关(R〜2> 0.99)。 ICA的PTR-MS仪器检测限(LOD)为2.3 ppb。在绝对湿度(AH)分别为4.0和15.5 g m〜3的情况下,潮湿大气导致LOD分别为3.4和7.8 ppb。此外,在动态生成的标准ICA气氛中,将使用二正丁胺(DBA)作为衍生化试剂的使用剥蚀器和撞击器采样器的离线采样与PTR-MS测量进行了比较。将液相色谱质谱(LC-MS)测定之后的Denuder(n = 4)和冲击器(n = 4)采样与校正的PTR-MS数据进行比较,回收率分别为79.6(8.1%RSD)和99.9(RSD9.3%) %, 分别。使用PTR-MS和denuder(n = 3)采样从热分解的固化的1,6-六亚甲基二异氰酸酯(HDI)涂料中测量ICA。使用剥蚀仪(34.4 ppb)和PTR-MS(42.6 ppb)的平均iCA响应之间的关系为80.6%,这与使用动态生成的ICA气氛的受控实验室实验获得的相对回收率(79.6%)吻合得很好。焊接过程中ICA空气浓度的变化(RSD_(PTR-MS)为170%)表明需要进行实时测量。

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