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Detection and Spatial Mapping of Mercury Contamination in Water Samples Using a Smart-Phone

机译:使用智能手机检测水样中的汞污染并进行空间映射

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摘要

Detection of environmental contamination such as trace-level toxic heavy metal ions mostly relies on bulky and costly analytical instruments. However, a considerable global need exists for portable, rapid, specific, sensitive, and cost-effective detection techniques that can be used in resource-limited and field settings. Here we introduce a smart-phone-based hand-held platform that allows the quantification of mercury(II) ions in water samples with parts per billion (ppb) level of sensitivity. For this task, we created an integrated opto-mechanical attachment to the built-in camera module of a smart-phone to digitally quantify mercury concentration using a plasmonic gold nanoparticle (Au NP) and aptamer based colorimetric transmission assay that is implemented in disposable test tubes. With this smart-phone attachment that weighs <40 g, we quantified mercury(II) ion concentration in water samples by using a two-color ratiometric method employing light-emitting diodes (LEDs) at 523 and 625 nm, where a custom-developed smart application was utilized to process each acquired transmission image on the same phone to achieve a limit of detection of ∼3.5 ppb. Using this smart-phone-based detection platform, we generated a mercury contamination map by measuring water samples at over 50 locations in California (USA), taken from city tap water sources, rivers, lakes, and beaches. With its cost-effective design, field-portability, and wireless data connectivity, this sensitive and specific heavy metal detection platform running on cellphones could be rather useful for distributed sensing, tracking, and sharing of water contamination information as a function of both space and time.
机译:对环境污染(例如痕量有毒重金属离子)的检测主要依赖于笨重且昂贵的分析仪器。但是,全球存在对可用于资源受限和现场设置的便携式,快速,特定,灵敏且具有成本效益的检测技术的巨大需求。在这里,我们介绍了一个基于智能手机的手持式平台,该平台允许以十亿分之几(ppb)的灵敏度对水样中的汞(II)离子进行定量。为了完成此任务,我们在智能手机的内置摄像头模块上创建了集成的光电机械附件,以使用等离子金纳米颗粒(Au NP)和基于适体的比色透射测定法对汞浓度进行数字化量化,该测定法在一次性测试中实现管。通过这种重量小于40 g的智能手机附件,我们通过使用双色比例法(在523和625 nm处采用发光二极管(LED))对水样中的汞(II)离子浓度进行了定量,其中使用智能应用程序在同一部电话上处理每个获取的传输图像,以达到约3.5 ppb的检测极限。使用这个基于智能手机的检测平台,我们通过测量加利福尼亚(美国)超过50个地点的水样生成了汞污染图,这些样点取自城市的自来水源,河流,湖泊和海滩。凭借其经济高效的设计,现场便携性和无线数据连接性,这种运行在手机上的灵敏,特殊的重金属检测平台对于分布式感测,跟踪和共享水污染信息(对于空间和空间的函数)非常有用。时间。

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