Jayawardane B Manori, Wongwilai W, Grudpan K, Kolev S D, Heaven M W, Nash D M, McKelvie I D
J Environ Qual. 2014 May;43(3):1081-5. doi: 10.2134/jeq2013.08.0336.
The evaluation and validation of a new low-cost microfluidic paper-based analytical device (μPAD) for the determination of reactive phosphate in soil solution is described. This device allows up to 15 replicate measurements of reactive phosphate on one credit card-sized device and requires only a desktop or hand scanner for signal detection and quantification. The proposed method showed a linear response between 0.1 and 1.0 mg L and between 1.0 and 10.0 mg L P with a limit of detection of 0.05 mg L P. When applied to the analysis of soil solution, there was excellent agreement between results obtained using the μPAD and those obtained by a reference spectrophotometric method, as indicated by the following regression equation: [P] = (0.997 ± 0.005)[P] - (0.020 ± 0.008) ( = 0.997; = 110). It was found that the ambient temperature storage stability of the μPAD could be extended to 15 d by incorporating a removable polymeric interleaving sheet between the adjacent paper layers of the device. The observed sensitivity of the μPADs to sunlight, which was manifested by photoreduction of the chromogenic molybdate reagent used in the assay, was overcome by preparing the μPADs with an ultraviolet-filtering laminating material. The proposed method is rapid, with a reaction time of only 10 min, is easy to perform, and is suitable for application in the field.
本文描述了一种用于测定土壤溶液中活性磷酸盐的新型低成本微流控纸基分析装置(μPAD)的评估与验证。该装置在一张信用卡大小的器件上最多可对活性磷酸盐进行15次重复测量,并且仅需一台台式或手持式扫描仪用于信号检测和定量。所提出的方法在0.1至1.0 mg/L以及1.0至10.0 mg/L的磷浓度范围内呈现线性响应,检测限为0.05 mg/L磷。当应用于土壤溶液分析时,μPAD获得的结果与参考分光光度法获得的结果高度一致,如下回归方程所示:[P] = (0.997 ± 0.005)[P] - (0.020 ± 0.008)(r = 0.997;n = 110)。研究发现,通过在该装置相邻纸层之间加入可移除的聚合物间隔片,μPAD在环境温度下的储存稳定性可延长至15天。通过用紫外线过滤层压材料制备μPAD,克服了观察到的μPAD对阳光的敏感性,这种敏感性表现为测定中使用的显色钼酸盐试剂发生光还原。所提出的方法快速,反应时间仅为10分钟,易于操作,适用于现场应用。