Chemical Approaches for Food Applications Research Group, Faculty of Science, Chulalongkorn University, Bangkok, Thailand; Department of Chemistry, Faculty of Science, Chulalongkorn University, Bangkok, Thailand.
Chemical Approaches for Food Applications Research Group, Faculty of Science, Chulalongkorn University, Bangkok, Thailand; Department of Chemistry, Faculty of Science, Chulalongkorn University, Bangkok, Thailand.
Talanta. 2018 Dec 1;190:78-84. doi: 10.1016/j.talanta.2018.07.056. Epub 2018 Jul 21.
A simple and highly sensitive procedure based on the combination of hollow fiber membrane liquid phase microextraction and a microfluidic paper-based analytical device (µPAD) was developed for pre-concentration and determination of hexavalent chromium in water samples. The hexavalent chromium was pre-concentrated using the HF-LPME technique via ion exchange or a coupled transport process through a supported ionic liquid (Aliquat 336) prior to colorimetric detection with diphenylcarbazide on the µPAD. The violet colour could be seen by the naked eye. Images from the µPADs were scanned using a commercial desktop scanner at 600 dpi resolution. ImageJ software was used for quantitative analysis by measuring the intensity values at green colour channel since it gave the best sensitivity among the RGB colour. Under optimal conditions, the calibration curve was linear in the range 10-90 µg L, with a limit of detection of 3 µg L. The developed method was successfully applied to determine the level of hexavalent chromium spiked into natural water samples at the parts-per-billion (ppb) level, and the results were in good agreement with those obtained using inductively coupled plasma atomic emission spectroscopy (ICP-AES). The developed method was able to improve the detection limit of the conventional µPAD, and was expected to be used for the effective analysis of hexavalent chromium in natural water.
一种基于中空纤维膜液相微萃取和微流控纸基分析装置(µPAD)组合的简单、高灵敏的程序被开发出来,用于预浓缩和水中六价铬的测定。通过离子交换或通过负载离子液体(Aliquat 336)的偶联传输过程,HF-LPME 技术可将六价铬预浓缩,然后在 µPAD 上用二苯卡巴肼进行比色检测。µPAD 上可以看到紫色。使用商业台式扫描仪以 600dpi 的分辨率扫描 µPAD 图像。使用 ImageJ 软件通过测量绿色通道的强度值进行定量分析,因为它在 RGB 颜色中具有最佳的灵敏度。在最佳条件下,校准曲线在 10-90μg/L 范围内呈线性,检出限为 3μg/L。该方法成功应用于测定自然水样中ppm 级别的六价铬水平,结果与电感耦合等离子体原子发射光谱法(ICP-AES)的结果吻合良好。所开发的方法能够提高传统 µPAD 的检测限,有望用于天然水中六价铬的有效分析。