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中国精品科技期刊2020
张馨懿,张孝渊,孙淑媛,等. 基于金属有机框架材料的农产品中农兽药残留快速检测与去除研究进展[J]. 食品工业科技,2024,45(16):404−417. doi: 10.13386/j.issn1002-0306.2023090086.
引用本文: 张馨懿,张孝渊,孙淑媛,等. 基于金属有机框架材料的农产品中农兽药残留快速检测与去除研究进展[J]. 食品工业科技,2024,45(16):404−417. doi: 10.13386/j.issn1002-0306.2023090086.
ZHANG Xinyi, ZHANG Xiaoyuan, SUN Shuyuan, et al. Research Progress on Rapid Detection and Removal of Pesticide and Veterinary Drug Residues in Agricultural Products Based on Metal-organic Frameworks[J]. Science and Technology of Food Industry, 2024, 45(16): 404−417. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2023090086.
Citation: ZHANG Xinyi, ZHANG Xiaoyuan, SUN Shuyuan, et al. Research Progress on Rapid Detection and Removal of Pesticide and Veterinary Drug Residues in Agricultural Products Based on Metal-organic Frameworks[J]. Science and Technology of Food Industry, 2024, 45(16): 404−417. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2023090086.

基于金属有机框架材料的农产品中农兽药残留快速检测与去除研究进展

Research Progress on Rapid Detection and Removal of Pesticide and Veterinary Drug Residues in Agricultural Products Based on Metal-organic Frameworks

  • 摘要: 农产品中农兽药残留的检测与去除是食品安全防控的重要环节。目前检测农兽药残留的方法主要是仪器分析法,但存在检测时间长、操作要求高等不足,无法满足快速检测的需求。金属有机框架(Metal-Organic Frameworks,MOFs)是一种由金属离子或金属簇与有机配体构成的杂化材料,其具备吸附富集、催化降解、可发荧光及产生电化学信号等功能,因而具有良好的潜力应用于农兽药残留的快速检测与去除。本文阐述了MOFs材料的富集去除、催化降解、荧光传感和电化学传感四种功能,总结了基于MOFs的不同功能开发的农兽药残留快速检测与去除方法,综合分析了结合RGB分析技术与便携式监测设备后的优势与不足,讨论了MOFs应用于农兽药残留检测与去除的挑战。本文为MOFs快速检测技术的进一步发展提供参考。

     

    Abstract: Detecting and removing pesticide and veterinary drug residues in agricultural products are important for ensuring food safety. Current methods for detecting pesticide residues are mainly relied on sophisticated instruments, which require long detection time and skilled operators, limiting their accessibility. Metal-Organic Frameworks (MOFs) are a hybrid material composed of metal ions/clusters and organic ligands. MOFs possess multiple functions such as adsorption enrichment, catalytic degradation, and fluorescent and electrochemical signal generation. Therefore, MOFs have great potential in rapidly detecting and removing pesticide and veterinary drug residues. This review introduced functionalities of MOFs: enrichment and removal, catalytic degradation, fluorescence sensing, and electrochemical sensing, and then summarized their applications for rapid detecting and removing pesticide and veterinary drug residues. Additionally, we comprehensively analyzed the advantages and disadvantages about combining RGB analysis and portable monitoring devices with MOFs. Also, we have discussed the challenges of applying MOFs to detecting and removing pesticide and veterinary drug residue. Overall, this paper provides a reference for developing techniques to rapidly detect and remove containments in agricultural products.

     

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