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用于重金属离子检测的微流控装置:综述

Microfluidic Devices for Heavy Metal Ions Detection: A Review.

作者信息

Filippidou Myrto-Kyriaki, Chatzandroulis Stavros

机构信息

Institute of Nanoscience and Nanotechnology, NCSR "Demokritos", 15341 Aghia Paraskevi, Greece.

出版信息

Micromachines (Basel). 2023 Jul 28;14(8):1520. doi: 10.3390/mi14081520.

Abstract

The contamination of air, water and soil by heavy metal ions is one of the most serious problems plaguing the environment. These metal ions are characterized by a low biodegradability and high chemical stability and can affect humans and animals, causing severe diseases. In addition to the typical analysis methods, i.e., liquid chromatography (LC) or spectrometric methods (i.e., atomic absorption spectroscopy, AAS), there is a need for the development of inexpensive, easy-to-use, sensitive and portable devices for the detection of heavy metal ions at the point of interest. To this direction, microfluidic and lab-on-chip (LOC) devices fabricated with novel materials and scalable microfabrication methods have been proposed as a promising approach to realize such systems. This review focuses on the recent advances of such devices used for the detection of the most important toxic metal ions, namely, lead (Pb), mercury (Hg), arsenic (As), cadmium (Cd) and chromium (Cr) ions. Particular emphasis is given to the materials, the fabrication methods and the detection methods proposed for the realization of such devices in order to provide a complete overview of the existing technology advances as well as the limitations and the challenges that should be addressed in order to improve the commercial uptake of microfluidic and LOC devices in environmental monitoring applications.

摘要

重金属离子对空气、水和土壤的污染是困扰环境的最严重问题之一。这些金属离子具有生物降解性低和化学稳定性高的特点,会影响人类和动物,引发严重疾病。除了典型的分析方法,即液相色谱(LC)或光谱法(如原子吸收光谱法,AAS)外,还需要开发廉价、易用、灵敏且便携的设备,用于在感兴趣的地点检测重金属离子。朝着这个方向,采用新型材料和可扩展微加工方法制造的微流控和芯片实验室(LOC)设备已被提出,作为实现此类系统的一种有前景的方法。本综述重点关注用于检测最重要的有毒金属离子,即铅(Pb)、汞(Hg)、砷(As)、镉(Cd)和铬(Cr)离子的此类设备的最新进展。特别强调了为实现此类设备而提出的材料、制造方法和检测方法,以便全面概述现有技术进展以及为提高微流控和LOC设备在环境监测应用中的商业接受度而应解决的局限性和挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dab2/10456312/09840da93ad7/micromachines-14-01520-g006a.jpg

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