McLeish Kimberley, Ryan M Cathryn, Chu Angus
Department of Civil Engineering, University of Calgary, Calgary, Alberta T2N1N4.
Environ Sci Technol. 2007 Dec 15;41(24):8388-93. doi: 10.1021/es0716094.
A novel passive gas diffusion sampler (PGDS) combines sampling, storage and direct injection into a single gas chromatograph (GC). The sampler has a 4.5 mL internal volume when deployed, is easy to operate, and eliminates sample-partitioning. The associated GC method analyzes for a large, dynamic sampling range from a single, small volume injection. Dissolved gases were separated on parallel Rt-Molsieve 5A and Rt-Q-PLOT columns and eluted solutes were quantified using a pulse discharge helium ionization detector (PD-HID). The combined sampling and analytical method appears to be less prone to systematic bias than conventional sampling and headspace partitioning and analysis. Total dissolved gas pressure used in tandem with the PGDS improved the accuracy of dissolved gas concentrations. The incorporation of routine measurements of dissolved biogeochemical and permanent gases into groundwater investigations will provide increased insight into chemical and biological processes in groundwater and improve chemical mass balance accuracy.
一种新型的被动气体扩散采样器(PGDS)将采样、储存和直接进样整合到一台气相色谱仪(GC)中。该采样器在部署时内部体积为4.5 mL,操作简便,且无需进行样品分配。相关的气相色谱方法可通过单次小体积进样分析较大的动态采样范围。溶解气体在平行的Rt-Molsieve 5A和Rt-Q-PLOT柱上分离,洗脱的溶质使用脉冲放电氦离子化检测器(PD-HID)进行定量。与传统采样以及顶空分配和分析相比,这种组合的采样和分析方法似乎更不易产生系统偏差。与PGDS串联使用的总溶解气体压力提高了溶解气体浓度的准确性。将溶解的生物地球化学和永久性气体的常规测量纳入地下水调查,将有助于更深入了解地下水中的化学和生物过程,并提高化学质量平衡的准确性。