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静电半径
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     depletion" of the H\++ near the interface, which was owing to high mobility and high\|speed exchange of the H\++ with interlayer ions. Because effective electrostatic radii and interface solution coefficients of the Zn are closer to those of the ion Na than the ion Pb, the adsorption capacity of the ion Zn onto montmorillonite is larger than the ion Pb. However, both of them tend to increase with the rise of temperature.
     蒙脱石对Zn吸附量大于Pb ,并随温度升高而增加 ,这是由于Zn离子有效静电半径和界面水化系数与Na离子相近 ,更易进入层间交换Na离子
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  相似匹配句对
     Electrostatic Precipitator
     静电除雾器
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     ELECTROSTATIC GYRO-KLYSTRON
     静电回旋速调管
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     Ionic Radius
     离子半径
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     Analytical Formula of Static Field Distribution for Same Radius ThreeCylineler Electron Lens
     等半径静电三筒电子透镜场分布的解析式
短句来源
     ANALYTICAL FORMULA OF STATIC FIELD DISTRIBUTION FOR SAME RADIUS TWO-CYLINDER ELECTRON LENS
     等半径静电双园筒电子透镜场分布的解析式
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Kinetic experimental results show that the interactions of montmorillonite with the ion Pb or Zn in a dilute near\|neutral solution includes surface complexation and interlayer ionic exchange as well as hydrolysis and precipitation of metal ions, the latter of which was observed at 50℃. The interlayer ionic exchange process, which involves two steps: interlayer diffusion and high\|speed exchange onto near\|surface, may be described by a composite equation. The analyses of velocity and mass balance in the solutions...

Kinetic experimental results show that the interactions of montmorillonite with the ion Pb or Zn in a dilute near\|neutral solution includes surface complexation and interlayer ionic exchange as well as hydrolysis and precipitation of metal ions, the latter of which was observed at 50℃. The interlayer ionic exchange process, which involves two steps: interlayer diffusion and high\|speed exchange onto near\|surface, may be described by a composite equation. The analyses of velocity and mass balance in the solutions show that the hydrolyses and precipitation of metal ions resulted from \!depletion" of the H\++ near the interface, which was owing to high mobility and high\|speed exchange of the H\++ with interlayer ions. Because effective electrostatic radii and interface solution coefficients of the Zn are closer to those of the ion Na than the ion Pb, the adsorption capacity of the ion Zn onto montmorillonite is larger than the ion Pb. However, both of them tend to increase with the rise of temperature.

反应动力学研究表明 ,在近中性稀溶液中铅锌离子与蒙脱石之间界面反应包括表面配合、层间阳离子交换和金属离子水解沉淀。其中金属离子水解沉淀反应仅在 5 0℃溶液中才明显观察到。而层间阳离子释放包含两个过程 ,即表面快速交换反应和层间扩散作用 ,可用一复合动力学方程描述。反应速率和质量平衡分析表明 ,较高的淌度和快速表面交换作用造成的溶液中氢离子浓度局域性“亏损”是造成金属离子水解沉淀的主要原因。蒙脱石对Zn吸附量大于Pb ,并随温度升高而增加 ,这是由于Zn离子有效静电半径和界面水化系数与Na离子相近 ,更易进入层间交换Na离子

 
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