Shi Changzhi, Guo Wei, Jin Lanlan, Hu Shenghong
State Key Laboratory of Biogeology and Environmental Geology, China University of Geosciences Wuhan 430074 P. R. China
RSC Adv. 2020 Nov 26;10(70):42993-42997. doi: 10.1039/d0ra07224a. eCollection 2020 Nov 23.
Analysis of toxic elements in food samples (, rice and wheat) is very important for human health. A direct nebulization of solid particles for inductively coupled plasma (ICP) ionization and subsequent analysis of toxic elements (, As, Cd, Hg, and Pb) by mass spectrometry (MS) was developed. Dried and well-ground food particles (mean size of 0.9-1.0 μm) were stably dispersed in 0.5% polyethylene-imine (PEI) and the particle slurries were analyzed by ICP-MS using aqueous standard calibration. The transportation and ionization behaviors of particles with different particle sizes in ICP-MS were compared with those of aqueous standards containing equivalent concentrations of the analyte. The results indicated that the upper limits of particle sizes for the efficient transportation and complete ionization were 7.5-8.0 μm and 3.3-3.5 μm, respectively. Satisfactory recovery (94-107%), and precision (0.4-6.5%, RSD, = 3) were verified by analyzing a series of rice and wheat standard reference materials (SRMs). The limits of quantitation (LOQs, 1.1 ng g (Hg) to 3.5 ng g (As)) are compared with the traditional microwave-assisted acid digestion ICP-MS method, however, the analysis throughput of the proposed method is improved by more than 10 times.
分析食品样品(大米和小麦)中的有毒元素对人体健康非常重要。开发了一种将固体颗粒直接雾化用于电感耦合等离子体(ICP)电离,随后通过质谱(MS)分析有毒元素(如砷、镉、汞和铅)的方法。将干燥且研磨良好的食品颗粒(平均粒径为0.9 - 1.0μm)稳定分散在0.5%的聚乙烯亚胺(PEI)中,并使用水溶液标准校准通过ICP-MS分析颗粒浆液。将ICP-MS中不同粒径颗粒的传输和电离行为与含有等量分析物的水溶液标准的行为进行了比较。结果表明,有效传输和完全电离的粒径上限分别为7.5 - 8.0μm和3.3 - 3.5μm。通过分析一系列大米和小麦标准参考物质(SRMs)验证了令人满意的回收率(94 - 107%)和精密度(0.4 - 6.5%,RSD,n = 3)。将定量限(LOQs,汞为1.1 ng/g至砷为3.5 ng/g)与传统的微波辅助酸消解ICP-MS方法进行了比较,然而,所提出方法的分析通量提高了10倍以上。