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Chromatographic Separation of Cd from Plants via Anion-Exchange Resin for an Isotope Determination by Multiple Collector ICP-MS

机译:用多收集器ICP-MS通过阴离子交换树脂色谱分离植物中的镉

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In this study, key factors affecting the chromatographic separation of Cd from plants, such as the resin column, digestion and purification procedures, were experimentally investigated. A technique for separating Cd from plant samples based on single ion-exchange chromatography has been developed, which is suitable for the high-precision analysis of Cd isotopes by multiple-collector inductively coupled plasma mass spectrometry (MC-ICP-MS). The robustness of the technique was assessed by replicate analyses of Cd standard solutions and plant samples. The Cd yields of the whole separation process were higher than 95%, and the 114/110Cd values of three Cd second standard solutions (Münster Cd, Spex Cd, Spex-1 Cd solutions) relative to the NIST SRM 3108 were measured accurately, which enabled the comparisons of Cd isotope results obtained in other laboratories. Hence, stable Cd isotope analyses represent a powerful tool for fingerprinting specific Cd sources and/or examining biogeochemical reactions in ecological and environmental systems.
机译:在这项研究中,通过实验研究了影响植物中镉分离的关键因素,例如树脂柱,消化和纯化程序。已开发出一种基于单离子交换色谱从植物样品中分离镉的技术,该技术适用于通过多收集器电感耦合等离子体质谱法(MC-ICP-MS)进行镉同位素的高精度分析。通过对镉标准溶液和植物样品进行重复分析,评估了该技术的鲁棒性。整个分离过程中的Cd产率均高于95%,并且相对于NIST SRM 3108准确测量了三种Cd第二标准溶液(MünsterCd,Spex Cd,Spex-1 Cd溶液)的114 / 110Cd值,可以比较其他实验室中的Cd同位素结果。因此,稳定的Cd同位素分析代表了一种用于对特定Cd来源进行指纹识别和/或检查生态和环境系统中生物地球化学反应的强大工具。

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