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首页> 外文期刊>Analytical and Bioanalytical Chemistry >Conditions for the optimal analysis of volatile organic compounds in air with sorbent tube sampling and liquid standard calibration: demonstration of solvent effect
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Conditions for the optimal analysis of volatile organic compounds in air with sorbent tube sampling and liquid standard calibration: demonstration of solvent effect

机译:吸附管采样和液体标准品校准对空气中挥发性有机化合物进行最佳分析的条件:溶剂效应的证明

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摘要

The combined use of sorbent tubes (ST) and thermal desorption (TD) has become the common practice for the trace-level analysis of gaseous volatile organic compounds (VOCs). In this research, the potential bias in VOC analysis due to the solvent introduced into the system as a liquid standard (LS) is examined in three stages by analyzing LSs of 19 VOCs in methanol solvent against a three-bed ST (Tenax TA, Carbopack B, and Carboxen 1000). In experimental stage 1, LS made at four concentration levels (between 10 and 150 ng μL−1) were each analyzed at four injection volumes (1, 2, 5, and 10 μL) based on a vaporization method. In experimental stage 2, calibration was also conducted by direct injection over an extended concentration range at two volumes, 1 and 10 μL. In experimental stage 3, the response factors (RF) of a single analyte mass were compared across the four injection volumes and between two injection methods. These results were analyzed to explore the complex relationship between variables such as LS volume, target/solvent chemical type, sorbent strength, and prepurge condition. There was no change in the ST/TD performance up to 2 μL of LS. However, as the injection volume increased up to 5 μL, a notable shift in RF and retention time occurred (e.g., for benzene and methyl ethyl ketone). At the maximum injection volume (10 μL), a significant reduction in sensitivity is evident for all compounds, e.g., 50 % drops relative to 1 μL injection. As such, the TD performance tends to deteriorate with increasing volume of methanol initially loaded on the ST. Although the dominant fraction of solvent was removed by two prepurge steps, residue caught in the strong sorbent fraction is still found to exert an effect on the subsequent analysis, e.g., delayed retention, sensitivity reduction, or disappearance of certain compounds.
机译:吸附剂管(ST)和热脱附(TD)的组合使用已成为气态挥发性有机化合物(VOC)痕量分析的常用方法。在这项研究中,通过针对三床ST(Tenax TA,Carbopack)分析甲醇溶剂中19种VOC的LS,分三个阶段检查了由于溶剂作为液体标准品(LS)引入系统而导致的VOC分析中的潜在偏差。 B和Carboxen 1000)。在实验阶段1中,根据一种汽化方法分析了四个浓度(1、2、5和10μL)的四个浓度水平(10至150ngμL-1之间)的LS。在实验阶段2中,还通过直接注入在1和10μL两个体积的扩展浓度范围内进行校准。在实验阶段3中,在四个进样体积之间以及在两种进样方法之间比较了单个分析物质量的响应因子(RF)。分析了这些结果以探索变量之间的复杂关系,例如LS体积,目标/溶剂化学类型,吸附剂强度和预吹扫条件。直到2μL的LS,ST / TD性能没有变化。但是,随着进样量增加到5μL,RF和保留时间发生了明显变化(例如,苯和甲基乙基酮)。在最大进样量(10μL)下,所有化合物的灵敏度均明显降低,例如,相对于1μL进样量下降50%。这样,随着最初装载在ST上的甲醇体积的增加,TD性能趋于恶化。尽管通过两个预吹扫步骤除去了溶剂的主要部分,但仍发现捕获在强吸附剂部分中的残留物对随后的分析产生影响,例如延迟保留,降低某些化合物的灵敏度或消失。

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