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Silver Nanoparticles Synthesised within the Silica Matrix in Hyperstoichiometrical of Mercury from Aqueous Solutions

机译:银纳米粒子在硅基中合成的在水溶液中的Shuertoichiometrical中

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Mercury adsorption of silver containing silica-based nanocomposites was evaluated. Maximum adsorption capacity of 0.4 mmol g~(-1) was achieved at silver loading of 0.5 mmol g~(-1). Nevertheless, if to calculate in respect to silver content the mercury adsorption capacity was generally elevated along with decreasing silver nanoparticle diameter. It has been demonstrated that silver particle diameters and loading should collectively be taken into consideration in designing the optimal mercury removal process. Further recommendations have been proposed with the aim of increasing the mercury removal efficiency using silver nanoparticles deposited on the surface of silica with lover silver loading, while achieving similar or even higher efficiencies due to observed hyperstoichiometry effect.
机译:评价含有二氧化硅基纳米复合材料的汞吸附。在0.5mmol g〜(-1)的银负载下实现了0.4mmol g〜(-1)的最大吸附容量。然而,如果在银含量上计算汞吸附容量通常随着含银纳米颗粒直径的降低而升高。已经证明,在设计最佳的汞去除过程时,应共同考虑银粒径和装载。已经提出了进一步的建议,目的是利用沉积在二氧化硅表面的银纳米粒子的汞去除效率,同时由于观察到的性化学计量效应而达到相似或甚至更高的效率。

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