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Isothermal adsorption kinetics on heterogeneous surfaces

机译:异质表面上的等温吸附动力学

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Adsorption kinetics on energetically heterogeneous surfaces under isothermal conditions is analyzed using the uniform energy distribution model. Considering the quasi-equilibrium of surface diffusion between the adsorption sites with different energy, the kinetic equations dΘ/dt = (k_ap - A_dK_(diff) )(1 - Θ) for first-order adsorption and dΘ/dt = k_ap(1 - Θ)~2 - A_dK_(diff)Θ(1 - Θ) for dissociative adsorption are obtained, where K_(diff) is a coefficient describing the surface diffusion equilibrium, which depends on the coverage and the energy distribution. Under isochoric conditions with p decreasing due to adsorption, surface diffusion accelerates the rate towards equilibrium significantly, as observed in static calorimetric adsorption experiments. An approximate solution in Lagergren form is derived for this condition.
机译:使用均一的能量分布模型分析了等温条件下能量非均质表面上的吸附动力学。考虑到具有不同能量的吸附位点之间的表面扩散的准平衡,一阶吸附的动力学方程dΘ/ dt =(k_ap-A_dK_(diff))(1-Θ),dΘ/ dt = k_ap(1- Θ)〜2--A_dK_(diff)Θ(1-Θ)用于解离吸附,其中K_(diff)是描述表面扩散平衡的系数,取决于覆盖率和能量分布。如静态量热吸附实验所观察到的那样,在等速条件下,由于吸附而使p降低,表面扩散会显着加速其达到平衡的速度。对于该条件,得出Lagergren形式的近似解。

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