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首页> 外文期刊>Analytical chemistry >Accumulation of Mg to Diffusive Gradients in Thin Films (DGT) Devices: Kinetic and Thermodynamic Effects of the Ionic Strength
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Accumulation of Mg to Diffusive Gradients in Thin Films (DGT) Devices: Kinetic and Thermodynamic Effects of the Ionic Strength

机译:镁在薄膜(DGT)装置中的扩散梯度累积:离子强度的动力学和热力学效应

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摘要

Availability of magnesium is a matter of concern due to its role in many environmental and biological processes. Diffusive Gradients in Thin Films (DGT) devices can measure Mg availability in situ. This Work shows that Mg accumulation in water largely increases when ionic strength (I) decreases. This phenomenon can be explained from.(i) the increase of both the association equilibrium (K) and rate (k(a,R)) constants for the reaction between Mg cations and resin sites, and (ii) the growing contribution of the partitioning of Mg cations at the resin-gel interface, as I decreases. Two theoretical models that take into account electrical interactions among Mg cations, background electrolyte, and resin sites can successfully be used to determine k(a,R) and K at each I. Both models yield similar k(a,R) Values, which fulfill an expression for the kinetic salt effect. For freshwater (with a typical salinity of 10 mM and circumneutral pH), the binding of Mg is so fast and strong that the simplest perfect-sink DGT expression can be helpful to predict (overestimation lower than 5%) the accumulation in solutions with Mg concentrations up to 1 mM whenever the deployment time is below 9 h. Perfect sink conditions can still be applied for longer times, in systems with either a lower I or a lower Mg concentration.
机译:由于镁在许多环境和生物过程中的作用,镁的可用性令人担忧。薄膜中的扩散梯度(DGT)设备可以原位测量Mg的可用性。这项工作表明,当离子强度(I)降低时,水中的Mg积累会大大增加。可以从以下方面解释这种现象:(i)Mg阳离子与树脂位点之间反应的缔合平衡(K)和速率(k(a,R))常数的增加,以及(ii)当I减小时,Mg阳离子在树脂-凝胶界面处分配。可以将两个考虑了Mg阳离子,背景电解质和树脂位点之间电相互作用的理论模型成功用于确定每个I处的k(a,R)和K。这两个模型产生的k(a,R)值相近,表现出运动盐效应的表达。对于淡水(典型的盐度为10 mM,pH为中性),Mg的结合是如此迅速而牢固,以至于最简单的完美沉陷DGT表达可以帮助预测(高估低于5%)Mg溶液中的积累只要部署时间低于9小时,浓度最高可达1 mM。在较低的I或较低的Mg浓度的系统中,完美的沉池条件仍然可以应用更长的时间。

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