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首页> 外文期刊>Analytical chemistry >Ultimate Detectability of Volatile Organic Compounds: How Much Further Can We Reduce Their Ambient Air Sample Volumes for Analysis?
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Ultimate Detectability of Volatile Organic Compounds: How Much Further Can We Reduce Their Ambient Air Sample Volumes for Analysis?

机译:挥发性有机化合物的最终可检测性:我们还能进一步减少其环境空气样品量以进行分析?

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To understand the ultimately lowest detection range of volatile organic compounds (VOCs) in air, application of a high sensitivity analytical system was investigated by coupling thermal desorption (TD) technique with gas chromatography (GC) and time-of-flight (TOF) mass spectrometry (MS). The performance of the TD-GC/TOF MS system was evaluated using liquid standards of 19 target VOCs prepared in the range of 35 pg to 2.79 ng per μL. Studies were carried out using both total ion chromatogram (TIC) and extracted ion chromatogram (EIC) mode. EIC mode was used for calibration to reduce background and to improve signal-to-noise. The detectability of 19 target VOCs, if assessed in terms of method detection limit (MDL, per US EPA definition) and limit of detection (LOD), averaged 5.90 pg and 0.122 pg, respectively, with the mean coefficient of correlation (R~2) of 0.9975. The minimum quantifiable mass of target analytes, when determined using real air samples by the TD-GC/TOF MS, is highly comparable to the detection limits determined experimentally by standard. In fact, volumes for the actual detection of the major aromatic VOCs like benzene, toluene, and xylene (BTX) in ambient air samples were as low as 1.0 mL in the 0.11-2.25 ppb range. It was thus possible to demonstrate that most target compounds including those in low abundance could be reliably quantified at concentrations down to 0.1 ppb at sample volumes of less than 10 mL. The unique sensitivity of this advanced analytical system can ultimately lead to a shift in field sampling strategy with smaller air sample volumes facilitating faster, simpler air sampling (e.g., use of gas syringes rather than the relative complexity of pumps or bags/canisters), with greatly reduced risk of analyte breakthrough and minimal interference, e.g., from atmospheric humidity. The improved detection limits offered by this system can also enhance accuracy and measurement precision.
机译:为了了解空气中挥发性有机化合物(VOC)的最终最低检测范围,通过将热脱附(TD)技术与气相色谱(GC)和飞行时间(TOF)质量结合使用,研究了高灵敏度分析系统的应用光谱(MS)。 TD-GC / TOF MS系统的性能使用19种目标VOC的液体标准品进行了评估,这些标准品的制备范围为35 pg至2.79 ng /μL。使用总离子色谱图(TIC)和提取离子色谱图(EIC)模式进行研究。 EIC模式用于校准,以减少背景并改善信噪比。如果按照方法检出限(MDL,根据美国EPA定义)和检出限(LOD)进行评估,则19种目标VOC的可检测性分别平均为5.90 pg和0.122 pg,平均相关系数为(R〜2 )的0.9975。通过TD-GC / TOF MS使用真实空气样品测定时,目标分析物的最小定量质量与标准实验确定的检测限高度可比。实际上,在环境空气样品中实际检测主要芳香族VOC(如苯,甲苯和二甲苯(BTX))的体积低至1.0 mL,范围为0.11-2.25 ppb。因此,有可能证明,大多数目标化合物(包括那些低丰度化合物)可以在样品体积小于10 mL时以低至0.1 ppb的浓度可靠地定量。这种先进的分析系统的独特灵敏度最终会导致田间采样策略的改变,使空气采样体积更小,从而有助于更快,更简单的空气采样(例如,使用气体注射器而不是相对复杂的泵或袋/罐),大大降低了分析物突破的风险,并最大程度降低了干扰,例如来自大气湿度的干扰。该系统提供的改进的检测极限也可以提高准确性和测量精度。

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