分析化学:环境复杂样品矩阵定量分析的任务、决议和未来立场

Analytica Pub Date : 2022-08-26 DOI:10.3390/analytica3030022
E. Rosato, G. M. Merone, M. Locatelli, C. D’Ovidio, M. Bonelli, U. de Grazia, F. Santavenere, S. Rossi, Imran Ali, H. I. Ulusoy, A. Kabir, F. Savini
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引用次数: 0

摘要

当前,从分析方法的选择性和灵敏度的角度来看,分析化学所面临的挑战越来越大,越来越复杂。在定量分析中尤其如此,各种方法必须包括新材料、策略和程序的开发和验证,以满足对快速、敏感、选择性和绿色方法日益增长的需求。在这种情况下,鉴于国际指南随着时间的推移而不断更新,并设定了越来越严格的“限制”,因此需要在预处理程序和仪器配置方面不断创新,以获得可靠、准确和可重复的信息。此外,环境领域无疑是最大的挑战,因为分析物通常以痕量和超痕量水平存在。因此,这些含有超低浓度分析物的样品需要非常劳动密集型的样品制备程序,并且涉及可能不被认为是“绿色”的有机溶剂的高消耗。在文献中,近年来,越来越多的高性能样品制备技术得到了强有力的发展,通常是“无溶剂”,以及连接的仪器配置的发展,允许达到以前难以想象的灵敏度水平。本综述旨在提供环境领域中样品前处理和仪器配置的最新发展,并根据即将到来的挑战和尚未实现的新目标评估分析化学的作用和未来发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analytical Chemistry: Tasks, Resolutions and Future Standpoints of the Quantitative Analyses of Environmental Complex Sample Matrices
Currently, the challenges that analytical chemistry has to face are ever greater and more complex both from the point of view of the selectivity of analytical methods and their sensitivity. This is especially true in quantitative analysis, where various methods must include the development and validation of new materials, strategies, and procedures to meet the growing need for rapid, sensitive, selective, and green methods. In this context, given the International Guidelines, which over time, are updated and which set up increasingly stringent “limits”, constant innovation is required both in the pre-treatment procedures and in the instrumental configurations to obtain reliable, accurate, and reproducible information. In addition, the environmental field certainly represents the greatest challenge, as analytes are often present at trace and ultra-trace levels. These samples containing analytes at ultra-low concentration levels, therefore, require very labor-intensive sample preparation procedures and involve the high consumption of organic solvents that may not be considered “green”. In the literature, in recent years, there has been a strong development of increasingly high-performing sample preparation techniques, often “solvent-free”, as well as the development of hyphenated instrumental configurations that allow for reaching previously unimaginable levels of sensitivity. This review aims to provide an update of the most recent developments currently in use in sample pre-treatment and instrument configurations in the environmental field, also evaluating the role and future developments of analytical chemistry in light of upcoming challenges and new goals yet to be achieved.
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