Department of Chemistry, Kumamoto University, Kurokami 2-39-1, Kumamoto 860-8555, Japan.
Talanta. 2010 Oct 15;82(5):1870-5. doi: 10.1016/j.talanta.2010.08.001. Epub 2010 Aug 10.
An open channel scrubber is proposed as a miniature fieldable gas collector. The device is 100mm in length, 26 mm in width and 22 mm in thickness. The channel bottom is rendered hydrophilic and liquid flows as a thin layer on the bottom. Air sample flows atop the appropriately chosen flowing liquid film and analyte molecules are absorbed into the liquid. There is no membrane at the air-liquid interface: they contact directly each other. Analyte species collected over a 10 min interval are determined by fluorometric flow analysis or ion chromatography. A calculation algorithm was developed to estimate the collection efficiency a priori; experimental and simulated results agreed well. The characteristics of the open channel scrubber are discussed in this paper from both theoretical and experimental points of view. In addition to superior collection efficiencies at relatively high sample air flow rates, this geometry is particularly attractive that there is no change in collection performance due to membrane fouling. We demonstrate field use for analysis of ambient SO(2) near an active volcano. This is basic investigation of membraneless miniature scrubber and is expected to lead development of an excellent micro-gas analysis system integrated with a detector for continuous measurements.
提出了一种开放式通道洗涤器作为微型现场气体收集器。该装置长 100mm,宽 26mm,厚 22mm。通道底部亲水,液体在底部形成薄液层。空气样品在适当选择的流动液膜上方流动,分析物分子被吸收到液体中。气-液界面没有膜:它们直接接触。在 10 分钟间隔内收集的分析物通过荧光流动分析或离子色谱法确定。开发了一种计算算法来预先估计收集效率;实验和模拟结果吻合较好。本文从理论和实验两方面讨论了开放式通道洗涤器的特点。除了在相对较高的样品空气流速下具有较高的收集效率外,这种几何形状特别吸引人的地方是由于膜污染而导致收集性能没有变化。我们展示了在活火山附近分析环境 SO(2)的现场应用。这是对无膜微型洗涤器的基础研究,有望开发出与检测器集成的优秀微型气体分析系统,用于连续测量。