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食品中纳米废物的定义、检测和追踪:挑战与展望。

Definition, detection, and tracking of nanowaste in foods: Challenges and perspectives.

机构信息

Department of Agriculture Biotechnology, Ataturk University, Erzurum, Turkiye.

Department of Industrial Engineering, King Abdulaziz University, Jeddah, Saudi Arabia.

出版信息

Compr Rev Food Sci Food Saf. 2024 Jul;23(4):e13393. doi: 10.1111/1541-4337.13393.

DOI:10.1111/1541-4337.13393
PMID:39031842
Abstract

Commercial applications of nanotechnology in the food industry are rapidly increasing. Accordingly, there is a simultaneous increase in the amount and diversity of nanowaste, which arise as byproducts in the production, use, disposal, or recycling processes of nanomaterials utilized in the food industry. The potential risks of this nanowaste to human health and the environment are alarming. It is of crucial significance to establish analytical methods and monitoring systems for nanowaste to ensure food safety. This review provides comprehensive information on nanowaste in foods as well as comparative material on existing and new analytical methods for the detection of nanowaste. The article is specifically focused on nanowaste in food systems. Moreover, the current techniques, challenges as well as potential use of new and progressive methods are underlined, further highlighting advances in technology, collaborative efforts, as well as future perspectives for effective nanowaste detection and tracking. Such detection and tracking of nanowaste are required in order to effectively manage this type ofwasted in foods. Although there are devices that utilize spectroscopy, spectrometry, microscopy/imaging, chromatography, separation/fractionation, light scattering, diffraction, optical, adsorption, diffusion, and centrifugation methods for this purpose, there are challenges to be overcome in relation to nanowaste as well as food matrix and method characteristics. New technologies such as radio-frequency identification, Internet of things, blockchain, data analytics, and machine learning are promising. However, the cooperation of international organizations, food sector, research, and political organizations is needed for effectively managing nanowaste. Future research efforts should be focused on addressing knowledge gaps and potential strategies for optimizing nanowaste detection and tracking processes.

摘要

商业应用纳米技术在食品工业中迅速增加。相应地,纳米废物的数量和种类也同时增加,这些废物是食品工业中使用的纳米材料在生产、使用、处置或回收过程中的副产品。这种纳米废物对人类健康和环境的潜在风险令人震惊。建立纳米废物的分析方法和监测系统对于确保食品安全至关重要。本综述提供了关于食品中纳米废物的全面信息,并对现有的和新的纳米废物检测分析方法进行了比较。本文特别关注食品系统中的纳米废物。此外,强调了当前技术、挑战以及新的和先进方法的潜在用途,进一步突出了技术进步、合作以及有效纳米废物检测和跟踪的未来展望。为了有效地管理食品中的这种废物,需要对纳米废物进行检测和跟踪。虽然有一些设备利用光谱学、光谱法、显微镜/成像、色谱法、分离/分级、光散射、衍射、光学、吸附、扩散和离心方法来进行检测,但在纳米废物以及食品基质和方法特性方面仍存在挑战。射频识别、物联网、区块链、数据分析和机器学习等新技术具有广阔的应用前景。然而,需要国际组织、食品行业、研究和政治组织的合作,才能有效地管理纳米废物。未来的研究工作应集中于解决知识差距,并制定优化纳米废物检测和跟踪过程的潜在策略。

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