用于实时检测空气中甲醛的微流控传感器原型设计

Daniel Măriuța, L. Baldas, S. Colin, S. Calve, J. Korvink, J. Brandner
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引用次数: 4

摘要

甲醛是一种致癌的挥发性有机化合物,广泛用于各种家用产品的制造过程,有时在室内释放的浓度超出了世界卫生组织(World Health Organization)建议的限度。目前市售的甲醛传感器远不能同时实现超便携、高灵敏度(< 1 ppb)、实时和特别经济高效。本工作旨在研究基于微流控Hantzsch反应法和荧光检测的甲醛传感系统小型化到手掌装置的可行性。提出了一种基于疏水膜集成在聚合物平板芯片内的气液微反应器,并计划进一步测试其甲醛捕获率。通过将接触传感与时间分辨CMOS传感器相结合,荧光检测组件的尺寸可以降低到10mm × 20mm × 30mm,因此可以使用小体积和低浓度样品进行连续和快速响应测量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Prototyping a Microfluidic Sensor for Real-Time Detection of Airborne Formaldehyde
Formaldehyde is a carcinogenic volatile organic compound that is largely used in the fabrication process of a variety of household products, being sometimes released indoor in concentrations that are beyond the limits recommended by the World Health Organization. The current commercially available formaldehyde sensors are far from simultaneously being ultra-portable, highly sensitive (< 1 ppb), real-time, and especially cost-efficient. This work aims to study the feasibility to miniaturize the formaldehyde sensing system down to a palm hand device, based on the microfluidic Hantzsch reaction method and fluorescence detection. A Gas-Liquid Micro-Reactor based on integration of a hydrophobic membrane inside a polymer flat chip is proposed and its formaldehyde trapping yield is planned to be further tested. By combining contact sensing with time-resolved CMOS sensors, the dimensions of the fluorescence detection component could go down to 10 mm × 20 mm × 30 mm by using commercialavailable components and therefore, enabling continuous and fast-response measurements using small volumes and low concentration samples.
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