National-Local Joint Engineering Laboratory of Intelligent Food Technology and Equipment, Zhejiang Key Laboratory for Agro-Food Processing, Integrated Research Base of Southern Fruit and Vegetable Preservation Technology, Zhejiang International Scientific and Technological Cooperation Base of Health Food Manufacturing and Quality Control, Fuli Institute of Food Science, College of Biosystems Engineering and Food Science, Zhejiang University, Hangzhou 310058, China.
Zhejiang Lohand Environmental Technology Co., Ltd., Hangzhou 310018, China.
Molecules. 2023 Apr 20;28(8):3601. doi: 10.3390/molecules28083601.
Lead pollution has increasingly become the focus of environmental pollution, which is a great harm to the ecological environment and human health. Strict control of the emission of lead pollutants and accurate monitoring of lead are very important. The lead ion detection technologies are introduced here, including spectrophotometry, electrochemical method, atomic absorption spectrometry, and other detection methods, and the methods' applicability, the advantages, and disadvantages are discussed. The detection limits of voltammetry and atomic absorption spectrometry are as low as 0.1 μg/L, and those of atomic absorption spectrometry are as low as 2 μg/L. The detection limit of photometry is higher (0.01 mg/L), but this method can be achieved in most laboratories. The application of different extraction pretreatment technologies in lead ion detection is introduced. The new technologies develop at home and abroad, such as precious metal nanogold technology, paper microfluidic technology, fluorescence molecular probe technology, spectroscopy, and other emerging technologies in recent years, are reviewed, and the principle and application of various technologies are expounded.
铅污染日益成为环境污染的焦点,对生态环境和人体健康危害极大。严格控制铅污染物的排放和准确监测铅非常重要。本文介绍了铅离子检测技术,包括分光光度法、电化学法、原子吸收光谱法等检测方法,并讨论了这些方法的适用性、优缺点。伏安法和原子吸收光谱法的检测限低至 0.1μg/L,原子吸收光谱法的检测限低至 2μg/L。光度法的检测限较高(0.01mg/L),但这种方法在大多数实验室中都可以实现。介绍了不同萃取预处理技术在铅离子检测中的应用。综述了近年来国内外发展的新技术,如贵金属纳米金技术、纸微流控技术、荧光分子探针技术、光谱学等新兴技术,阐述了各种技术的原理和应用。