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基于微流控混合器芯片的快速高精度比色法有机磷农药检测装置的研制

Development of Rapid and High-Precision Colorimetric Device for Organophosphorus Pesticide Detection Based on Microfluidic Mixer Chip.

作者信息

Xie Jiaqing, Pang Haoran, Sun Ruqian, Wang Tao, Meng Xiaoyu, Zhou Zhikang

机构信息

College of Mechanical and Electronic Engineering, Northwest A&F University, Yangling 712100, China.

Institute of Intelligent Manufacturing Technology, Shenzhen Polytechnic, Shenzhen 518055, China.

出版信息

Micromachines (Basel). 2021 Mar 9;12(3):290. doi: 10.3390/mi12030290.

Abstract

The excessive pesticide residues in cereals, fruit and vegetables is a big threat to human health, and it is necessary to develop a portable, low-cost and high-precision pesticide residue detection scheme to replace the large-scale laboratory testing equipment for rapid detection of pesticide residues. In this study, a colorimetric device for rapid detection of organophosphorus pesticide residues with high precision based on a microfluidic mixer chip was proposed. The microchannel structure with high mixing efficiency was determined by fluid dynamics simulation, while the corresponding microfluidic mixer chip was designed. The microfluidic mixer chip was prepared by a self-developed liquid crystal display (LCD) mask photo-curing machine. The influence of printing parameters on the accuracy of the prepared chip was investigated. The light source with the optimal wavelength of the device was determined by absorption spectrum measurement, and the relationship between the liquid reservoir depth and detection limit was studied by experiments. The correspondence between pesticide concentration and induced voltage was derived. The minimum detection concentration of the device could reach 0.045 mg·L and the average detection time was reduced to 60 s. The results provide a theoretical and experimental basis for portable and high-precision detection of pesticide residues.

摘要

谷物、水果和蔬菜中过量的农药残留对人类健康构成了巨大威胁,因此有必要开发一种便携式、低成本且高精度的农药残留检测方案,以取代用于快速检测农药残留的大型实验室检测设备。在本研究中,提出了一种基于微流控混合器芯片的用于高精度快速检测有机磷农药残留的比色装置。通过流体动力学模拟确定了具有高混合效率的微通道结构,并设计了相应的微流控混合器芯片。微流控混合器芯片由自行研制的液晶显示器(LCD)掩膜光固化机制备。研究了印刷参数对所制备芯片精度的影响。通过吸收光谱测量确定了该装置最佳波长的光源,并通过实验研究了储液器深度与检测限之间的关系。推导了农药浓度与感应电压之间的对应关系。该装置的最低检测浓度可达0.045 mg·L,平均检测时间缩短至60 s。研究结果为便携式高精度农药残留检测提供了理论和实验依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/250a/8000396/209e350e693e/micromachines-12-00290-g001.jpg

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