Department of Chemistry, University of Girona, C/M.AurèliaCampany 69, 17003, Girona, Spain.
Department of Geosciences, Institute of Environmental Assessment and Water Research (IDAEA-CSIC), C. Jordi Girona, 18-26, 08034, Barcelona, Spain.
Chemosphere. 2022 Sep;303(Pt 1):135006. doi: 10.1016/j.chemosphere.2022.135006. Epub 2022 May 20.
In recent years, the conceptual advancement on green analytical chemistry (GAC) has moved in parallel with efforts to incorporate new screening or quantitative low-cost analytical tools to solve analytical problems. In this sense, the role of solid state techniques that allow the non-invasive analysis (or with a minimum sample treatment) of solid samples cannot be neglected. This review describes the basic principles, instrumentation and advances in the application of X-ray fluorescence instrumentation to the environmental sciences research topics, published between 2006 and 2020. Obviously, and because of the enormous number of works that can be found in the literature, it is not possible to exhaustively cover all published articles and the diversity of topics related to the environment in which a solid state technique like XRF has been applied successfully. It is a question of making a compilation of the instrumentation in use, the significant advances in XRF spectrometry and sample treatment strategies to highlight the potential of its implementation for environmental assessment.
近年来,绿色分析化学(GAC)的概念进展与引入新的筛选或定量低成本分析工具以解决分析问题的努力齐头并进。从这个意义上说,允许对固体样品进行非侵入性分析(或进行最小限度的样品处理)的固态技术的作用不容忽视。本综述描述了 X 射线荧光仪器在环境科学研究主题中的基本原理、仪器和应用进展,这些研究主题的出版物时间介于 2006 年至 2020 年之间。显然,由于文献中可以找到大量的作品,因此不可能详尽地涵盖所有已发表的文章以及与成功应用固态技术(如 XRF)相关的环境多样性主题。这是对所用仪器的汇编、XRF 光谱法和样品处理策略的重要进展进行说明,以突出其在环境评估中的实施潜力。