Evaluation of X-ray fluorescence for analysing critical elements in three electronic waste matrices: A comprehensive comparison of analytical techniques

IF 7.1 2区 环境科学与生态学 Q1 ENGINEERING, ENVIRONMENTAL Waste management Pub Date : 2024-10-19 DOI:10.1016/j.wasman.2024.10.015
Shaun T. Lancaster , Eskil Sahlin , Marcus Oelze , Markus Ostermann , Jochen Vogl , Valérie Laperche , Solène Touze , Jean-Philippe Ghestem , Claire Dalencourt , Régine Gendre , Jessica Stammeier , Ole Klein , Daniel Pröfrock , Gala Košarac , Aida Jotanovic , Luigi Bergamaschi , Marco Di Luzio , Giancarlo D’Agostino , Radojko Jaćimović , Melissa Eberhard , Johanna Irrgeher
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Abstract

As the drive towards recycling electronic waste increases, demand for rapid and reliable analytical methodology to analyse the metal content of the waste is increasing, e.g. to assess the value of the waste and to decide the correct recycling routes. Here, we comprehensively assess the suitability of different x-ray fluorescence spectroscopy (XRF)-based techniques as rapid analytical tools for the determination of critical raw materials, such as Al, Ti, Mn, Fe, Co, Ni, Cu, Zn, Nb, Pd and Au, in three electronic waste matrices: printed circuit boards (PCB), light emitting diodes (LED), and lithium (Li)-ion batteries. As validated reference methods and materials to establish metrological traceability are lacking, several laboratories measured test samples of each matrix using XRF as well as other independent complementary techniques (instrumental neutron activation analysis (INAA), inductively coupled plasma mass spectrometry (ICP-MS) and ICP optical emission spectrometry (OES)) as an inter-laboratory comparison (ILC). Results highlighted key aspects of sample preparation, limits of detection, and spectral interferences that affect the reliability of XRF, while additionally highlighting that XRF can provide more reliable data for certain elements compared to digestion-based approaches followed by ICP-MS analysis (e.g. group 4 and 5 metals). A clear distinction was observed in data processing methodologies for wavelength dispersive XRF, highlighting that considering the metals present as elements (rather than oxides) induces overestimations of the mass fractions when compared to other techniques. Eventually, the effect of sample particle size was studied and indicated that smaller particle size (<200 µm) is essential for reliable determinations.
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对 X 射线荧光分析三种电子废物基质中关键元素的评估:分析技术的综合比较。
随着电子废弃物回收利用的推动,对快速可靠的分析方法的需求也在增加,以分析废弃物中的金属含量,例如评估废弃物的价值和决定正确的回收路线。在此,我们全面评估了基于 X 射线荧光光谱 (XRF) 的不同技术作为快速分析工具的适用性,以测定三种电子废物基质(印刷电路板 (PCB)、发光二极管 (LED) 和锂(Li)离子电池)中的关键原材料,如铝、钛、锰、铁、钴、镍、铜、锌、铌、钯和金。由于缺乏经过验证的参考方法和材料来建立计量可追溯性,一些实验室使用 XRF 以及其他独立的补充技术(仪器中子活化分析 (INAA)、电感耦合等离子体质谱法 (ICP-MS) 和 ICP 光发射光谱法 (OES))测量了每种基质的测试样本,作为实验室间比较 (ILC)。结果凸显了影响 XRF 可靠性的样品制备、检测限和光谱干扰等关键方面,同时还强调,与基于消解的方法和随后的 ICP-MS 分析(如第 4 和第 5 组金属)相比,XRF 可以为某些元素提供更可靠的数据。波长色散 XRF 的数据处理方法有明显区别,突出表明与其他技术相比,将存在的金属视为元素(而不是氧化物)会导致高估质量分数。最后,对样品粒度的影响进行了研究,结果表明,粒度较小 (
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来源期刊
Waste management
Waste management 环境科学-工程:环境
CiteScore
15.60
自引率
6.20%
发文量
492
审稿时长
39 days
期刊介绍: Waste Management is devoted to the presentation and discussion of information on solid wastes,it covers the entire lifecycle of solid. wastes. Scope: Addresses solid wastes in both industrialized and economically developing countries Covers various types of solid wastes, including: Municipal (e.g., residential, institutional, commercial, light industrial) Agricultural Special (e.g., C and D, healthcare, household hazardous wastes, sewage sludge)
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