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Headspace needle-trap analysis of priority volatile organic compounds from aqueous samples: application to the analysis of natural and waste waters

机译:顶空进样捕集器分析水性样品中的优先挥发性有机化合物:在天然和废水分析中的应用

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摘要

Combining headspace (HS) sampling with a needle-trap device (NTD) to determine priority volatile organic compounds (VOCs) in water samples results in improved sensitivity and efficiency when compared to conventional static HS sampling. A 22 gauge stainless steel, 51-mm needle packed with Tenax TA and Carboxen 1000 particles is used as the NTD. Three different HS-NTD sampling methodologies are evaluated and all give limits of detection for the target VOCs in the ng L−1 range. Active (purge-and-trap) HS-NTD sampling is found to give the best sensitivity but requires exhaustive control of the sampling conditions. The use of the NTD to collect the headspace gas sample results in a combined adsorption/desorption mechanism. The testing of different temperatures for the HS thermostating reveals a greater desorption effect when the sample is allowed to diffuse, whether passively or actively, through the sorbent particles. The limits of detection obtained in the simplest sampling methodology, static HS-NTD (5 mL aqueous sample in 20 mL HS vials, thermostating at 50 °C for 30 min with agitation), are sufficiently low as to permit its application to the analysis of 18 priority VOCs in natural and waste waters. In all cases compounds were detected below regulated levels
机译:与传统的静态HS采样相比,将顶空(HS)采样与针阱设备(NTD)结合以确定水样中的优先挥发性有机化合物(VOC)可以提高灵敏度和效率。 NTD使用装有Tenax TA和Carboxen 1000颗粒的22号不锈钢,51毫米针头。对三种不同的HS-NTD采样方法进行了评估,所有方法均给出了ng L-1范围内目标VOC的检测限。主动(吹扫捕集)HS-NTD采样具有最佳灵敏度,但需要全面控制采样条件。使用NTD收集顶空气体样品会导致组合的吸附/解吸机理。 HS恒温器在不同温度下的测试表明,允许样品通过吸附剂粒子被动或主动扩散时,解吸效果更大。在最简单的采样方法中,静态HS-NTD(20 mL HS小瓶中的5 mL水性样品,在50°C搅拌下恒温30分钟)获得的检测限足够低,可用于分析天然和废水中的18种优先VOC。在所有情况下都检测到化合物低于规定水平

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