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首页> 外文期刊>Analytical chemistry >Measurement of Stable and Radioactive Cesium in Natural Waters by the Diffusive Gradients in Thin Films Technique with New Selective Binding Phases
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Measurement of Stable and Radioactive Cesium in Natural Waters by the Diffusive Gradients in Thin Films Technique with New Selective Binding Phases

机译:新的选择性结合相薄膜技术中的扩散梯度法测量天然水中的稳定和放射性铯

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摘要

A cesium-specific diffusive gradients in thin films (DGT) technique was developed using copper ferrocyanide (CFCN) as the binding agent. Two types of DGT binding phases were evaluated, one by immobilizing CFCN on Chelex 100 resin gels (Chelex-CFCN) and the other on poly(acrylic acid) gels (PAA-CFCN). Both DGT devices were successfully applied to the measurement of low levels of stable ~(133)Cs and radioactive ~(137)Cs in synthetic solutions and in natural river waters. In all cases, the DGT labile concentrations measured with the PAA-CFCN DGT agreed very well with total dissolved Cs concentrations, whereas those measured by the Chelex-CFCN DGT were much lower than total Cs concentrations. The difference was attributed to the different binding kinetics of Cs~(+) on the two gels suggesting that this might be a promising means of measuring biologically relevant Cs concentrations in natural waters.
机译:使用亚铁氰化铜(CFCN)作为粘合剂,开发了一种铯特定的薄膜扩散梯度(DGT)技术。评估了两种DGT结合相,一种是将CFCN固定在Chelex 100树脂凝胶上(Chelex-CFCN),另一种是固定在聚丙烯酸(PAA-CFCN)上。两种DGT设备均已成功应用于合成溶液和天然河水中低水平的稳定〜(133)Cs和放射性〜(137)Cs的测量。在所有情况下,使用PAA-CFCN DGT测量的DGT不稳定浓度与总溶解Cs浓度非常吻合,而用Chelex-CFCN DGT测量的DGT不稳定浓度远低于总Cs浓度。差异归因于两种凝胶上Cs〜(+)的不同结合动力学,表明这可能是测量天然水中生物学相关的Cs浓度的有前途的手段。

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