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Metal Speciation By Dgt/det In Colloidal Complex Systems

机译:Dgt / det在胶体复杂系统中的金属形态

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Gel-layer-based sensors are increasingly employed for dynamic trace metal speciation analysis in aquatic media. In DGT (diffusive gradients in a thin film), two different types of polyacrylamide hydrogels, designated as 'open pore' and 'restricted', are commonly used forthe diffusive gel layer. While both gels are known to be fully permeable to metal ions and small complexes, colloidal particles with radii from tens to hundreds of nanometers have generally been assumed to be excluded from the gel. Here we show, however, that for dispersions with Pb(II) as the probe metal and monodisperse latex particles as metal-binding agents, relatively large particles do enter the gel to a significant extent. By complementing DGT flux analysis with diffusive equilibration in a thin film accumulation data for the colloidal complex systems, it is demonstrated that with radii up to 130 nm permeation for particles is substantial. The consequences for interpretation of dynamic speciation data furnished by gel-based sensors are discussed.
机译:基于凝胶层的传感器越来越多地用于水介质中动态痕量金属形态分析。在DGT(薄膜中的扩散梯度)中,扩散凝胶层通常使用两种不同类型的聚丙烯酰胺水凝胶,分别称为“开孔”和“受限”。虽然已知两种凝胶对金属离子和小的络合物都是完全可渗透的,但是通常假定半径为数十至数百纳米的胶体颗粒被排除在凝胶之外。但是,在这里我们表明,对于以Pb(II)作为探针金属和单分散乳胶颗粒作为金属结合剂的分散体,较大的颗粒确实会进入凝胶。通过对胶体复合物系统的薄膜累积数据中的扩散平衡进行DGT通量分析的补充,可以证明在半径高达130 nm的情况下,粒子的渗透率非常高。讨论了解释由基于凝胶的传感器提供的动态形态数据的结果。

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