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Portable detection of trace metals in airborne particulates and sediments via μPADs and smartphone

机译:通过μPAD和智能手机便携式检测空气中颗粒物和沉积物中的痕量金属

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摘要

Particulate matter (PM), a key indicator of air pollution by natural and anthropogenic activities, contributes to a wide spectrum of diseases that lead to a shortening of life expectancy. It has been recognized that trace metals in airborne PM are highly toxic and can be correlated with lesion in respiratory, gastrointestinal, immunological, and hematological systems. Traditional methods for trace metal assay require sophisticated instrumentations and highly trained operators in centralized laboratories. In this work, by integrating the technologies of microfluidic paper-based analytical devices, additive manufacturing, smartphone, and colorimetric sensing, we developed the first smartphone based paper microfluidic platform for portable, disposable, and quantitative measurements of cobalt (Co), copper (Cu), and iron (Fe) in ambient air and street sediments. On a single A4-sized paper, 48 devices were fabricated in under 30 s with a total cost of ∼$1.9. On each device, 12 reaction units were patterned and used for colorimetric tests. Particulate samples from urban ambient air and street sediments were collected, processed, and analyzed. Signals of the on-chip complexation product were recorded using a smartphone camera and processed by a self-developed app on an iOS system. For precisely controlling the object distance, chip position, and luminance, a hand-held 3D cellphone housing was designed and printed. The detection limits of Co, Cu, and Fe were determined to be 8.2, 45.8, and 186.0 ng, while the linear dynamic ranges were calculated to be 8.2–81.6, 45.8–4.58 × 102, and 1.86 × 102–1.86 × 103 ng, representing a practically relevant device performance with a significant reduction in the detection cost and time consumption. Trace metals in ambient air and sediments of two cities in China have been quantified portably, thus demonstrating the utility of our system in improving strategies for air pollution control in low-resource settings.
机译:颗粒物(PM)是自然和人为活动造成空气污染的关键指标,它导致多种疾病,导致预期寿命缩短。已经认识到,机载PM中的微量金属具有剧毒,并且可能与呼吸系统,胃肠道,免疫系统和血液系统中的病变有关。痕量金属测定的传统方法需要中央实验室中的精密仪器和训练有素的操作员。在这项工作中,通过整合基于微流体纸的分析设​​备,增材制造,智能手机和比色传感技术,我们开发了第一个基于智能手机的纸微流体平台,用于便携式,一次性和定量测量钴(Co),铜( Cu和铁(Fe)在环境空气和街道沉积物中。在单张A4尺寸的纸张上,在30秒内可制造48个设备,总成本约为1.9美元。在每个设备上,对12个反应单元进行构图,并用于比色测试。收集,处理和分析了城市环境空气和街道沉积物中的颗粒样品。使用智能手机摄像头记录片上复合产品的信号,并通过iOS系统上的自行开发的应用程序对其进行处理。为了精确控制物体距离,芯片位置和亮度,设计并打印了一个手持式3D手机外壳。 Co,Cu和Fe的检出限分别为8.2、45.8和186.0 ng,而线性动态范围经计算为8.2–81.6、45.8–4.58×10 2 和1.86×10 2 –1.86×10 3 ng,代表了与设备相关的实用性能,大大降低了检测成本和时间消耗。对中国两个城市的环境空气和沉积物中的痕量金属进行了可移植的定量分析,从而证明了我们的系统在改善低资源环境中的空气污染控制策略中的实用性。

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