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Investigation into Alternative Sample Preparation Techniques for the Determination of Heavy Metals in Stationary Source Emission Samples Collected on Quartz Filters

机译:测定石英滤池上固定源排放样品中重金属的其他样品制备技术的研究

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摘要

Monitoring stationary source emissions for heavy metals generally requires the use of quartz filters to collect samples because of the high temperature and high moisture sampling environment. The documentary standard method sample preparation technique in Europe, EN 14385, uses digestion in hydrofluoric acid and nitric acid (HF/HNO3) followed by complexing with boric acid (H3BO3) prior to analysis. However, the use of this method presents a number of problems, including significant instrumental drift during analysis caused by the matrix components, often leading to instrument breakdown and downtime for repairs, as well as posing significant health and safety risks. The aim of this work was to develop an alternative sample preparation technique for emissions samples on quartz filters. The alternative techniques considered were: (i) acid digestion in a fluoroboric acid (HBF4) and HNO3 mixture and (ii) acid extraction in an aqua regia (AR) mixture (HCl and HNO3). Assessment of the effectiveness of these options included determination of interferences and signal drift, as well as validating the different methods by measurement of matrix certified reference materials (CRMs), and comparing the results obtained from real test samples and sample blanks to determine limits of detection. The results showed that the HBF4/HNO3 mixture provides the most viable alternative to the documentary standard preparation technique.
机译:由于高温和高湿气采样环境,监视重金属的固定源排放通常需要使用石英过滤器来收集样品。欧洲有文件记录的标准方法样品制备技术EN 14385,使用氢氟酸和硝酸(HF / HNO3)进行消解,然后在分析之前与硼酸(H3BO3)络合。然而,这种方法的使用带来了许多问题,包括在分析过程中由于基质成分引起的重大仪器漂移,通常会导致仪器故障和维修停机时间,并带来重大的健康和安全风险。这项工作的目的是为石英过滤器上的排放样品开发一种替代的样品制备技术。考虑的替代技术是:(i)在氟硼酸(HBF4)和HNO3混合物中进行酸消化,以及(ii)在王水(AR)混合物(HCl和HNO3)中进行酸提取。对这些选项的有效性的评估包括确定干扰和信号漂移,以及通过测量基质认证的参考物质(CRM)来验证不同的方法,并比较从真实测试样品和样品空白中获得的结果以确定检测限。结果表明,HBF4 / HNO3混合物是文献标准制备技术的最可行替代方案。

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