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Determination of 129I/127I isotope ratios in liquid solutions and environmental soil samples by ICP-MS with hexapole collision cell

机译:六极杆碰撞池ICP-MS测定液体溶液和环境土壤样​​品中的129I / 127I同位素比

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摘要

The determination of I-129 in environmental samples at ultratrace levels is very difficult by ICP-MS due to a high noise caused by Xe impurities in argon plasma gas (interference of Xe-129(+)), possible (IH2+)-I-127 interference and an insufficient abundance ratio sensitivity of the ICP mass spectrometer for I-129/I-127 isotope ratio measurement. A sensitive, powerful and fast analytical technique for iodine isotope ratio measurements in aqueous solutions and contaminated soil samples directly without sample preparation using ICP-MS with a hexapole collision cell (ICP-CC-QMS) was developed. Oxygen is used as reaction and carrier gas for iodine thermal desorption via the gas phase from solid environmental material in the sample introduction device coupled on-line to ICP-CC-QMS. A mixture of oxygen and helium as reaction gases in the hexapole collision cell was applied for reducing disturbing background intensity of Xe-129(+). After optimization of measurement procedures the detection limit for I-129(+) in aqueous solution was 8x10(-13) g ml(-1), which is better by about two orders of magnitude in comparison to the detection limit for I-129(+) in sector field ICP-MS. The detection limit for direct I-129(+) determination in contaminated environmental (soil) samples via gas-phase desorption without any additional sample preparation was 3x10(-11) g g(-1) (30 ppt). Furthermore, the results of the determination of I-129/I-127 isotope ratios at the 10(-5)-10(-6) level in synthetic laboratory standards and environmental soil samples from contaminated areas are given.
机译:ICP-MS很难测定超痕量环境样品中的I-129,这是由于氩等离子体气体中Xe杂质引起的高噪声(Xe-129(+)的干扰),可能是(IH2 +)-I- ICP质谱仪在I-129 / I-127同位素比测量中出现127干扰和丰度比灵敏度不足。开发了一种灵敏,功能强大且快速的分析技术,无需使用ICP-MS和六极碰撞池(ICP-CC-QMS),即可直接测定水溶液和受污染的土壤样品中的碘同位素比。氧气用作反应物和载气,通过气相从在线连接到ICP-CC-QMS的样品引入装置中的固态环境材料中进行气相热解吸碘。在六极碰撞池中使用氧气和氦气作为反应气体的混合物,以降低Xe-129(+)的干扰本底强度。优化测量程序后,水溶液中I-129(+)的检出限为8x10(-13)g ml(-1),比I-129的检出限高约两个数量级(+)在部门字段ICP-MS中。在不进行任何其他样品前处理的情况下,通过气相解吸直接测定受污染的环境(土壤)样品中I-129(+)的检测限为3x10(-11)g g(-1)(30 ppt)。此外,给出了在合成实验室标准液和来自受污染地区的环境土壤样​​品中以10(-5)-10(-6)水平测定I-129 / I-127同位素比的结果。

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