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Miniaturized Sample Preparation and Rapid Detection of Arsenite in Contaminated Soil Using a Smartphone

机译:使用智能手机微型化样品制备和污染土壤中砷的快速检测

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摘要

Conventional methods for analyzing heavy metal contamination in soil and water generally require laboratory equipped instruments, complex procedures, skilled personnel and a significant amount of time. With the advancement in computing and multitasking performances, smartphone-based sensors potentially allow the transition of the laboratory-based analytical processes to field applicable, simple methods. In the present work, we demonstrate the novel miniaturized setup for simultaneous sample preparation and smartphone-based optical sensing of arsenic As(III) in the contaminated soil. Colorimetric detection protocol utilizing aptamers, gold nanoparticles and NaCl have been optimized and tested on the PDMS-chip to obtain the high sensitivity with the limit of detection of 0.71 ppm (in the sample) and a correlation coefficient of 0.98. The performance of the device is further demonstrated through the comparative analysis of arsenic-spiked soil samples with standard laboratory method, and a good agreement with a correlation coefficient of 0.9917 and the average difference of 0.37 ppm, are experimentally achieved. With the android application on the device to run the experiment, the whole process from sample preparation to detection is completed within 3 hours without the necessity of skilled personnel. The approximate cost of setup is estimated around 1 USD, weight 55 g. Therefore, the presented method offers the simple, rapid, portable and cost-effective means for onsite sensing of arsenic in soil. Combined with the geometric information inside the smartphones, the system will allow the monitoring of the contamination status of soils in a nation-wide manner.
机译:用于分析土壤和水中重金属污染的常规方法通常需要配备实验室的仪器,复杂的程序,熟练的人员和大量的时间。随着计算和多任务处理性能的提高,基于智能手机的传感器有可能使基于实验室的分析过程过渡到适用于现场的简单方法。在当前的工作中,我们演示了用于污染土壤中砷As(III)的同时样品制备和基于智能手机的光学传感的新型微型设置。利用适体,金纳米颗粒和NaCl的比色检测方案已在PDMS芯片上进行了优化和测试,以获得高灵敏度,检测限为0.71 ppm(在样品中),相关系数为0.98。通过使用标准实验室方法对砷加标土壤样品进行比较分析,进一步证明了该设备的性能,并通过实验获得了相关系数为0.9917和平均差异为0.37 ppm的良好协议。使用设备上的android应用程序运行实验,从样品制备到检测的整个过程在3小时内完成,而无需熟练的人员。估计安装费用约为1美元,重量为55克。因此,提出的方法为土壤中砷的现场检测提供了简单,快速,便携式和经济高效的手段。结合智能手机内部的几何信息,该系统将允许在全国范围内监控土壤的污染状况。

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