Statistical physics modeling of equilibrium adsorption of cadmium ions onto activated carbon, chitosan and chitosan/activated carbon composite

Hakimeh Sharififard
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引用次数: 2

Abstract

The adsorption ability of activated carbon, chitosan, and chitosan/activated carbon composite for cadmium separation from aqueous solution was analyzed via statistical physical modeling. The equilibrium data were analyzed by Langmuir, Hill, double layer model, and the multi-layer model with saturation isotherm models. Results showed that the multi-layer model with saturation could well describe the data. The number of the adsorbate ions per site, the receiver site density, the number of formed layers, and the energies of adsorption relative to the different layers were estimated by numerical simulation. Results showed that the chitosan/activated carbon has higher receiver site density and the total amount of adsorbed ions than that other two adsorbents. Results showed that the cadmium adsorption onto activated carbon/chitosan composite is a monolayer and exothermic process. With increasing temperature, the amount of cadmium adsorption decreases due to the fact that the number of receiver adsorption sites decreases. Also, the statistical physics modeling indicated the geometry of cadmium ions adsorbed onto the adsorbent surface is parallel.
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镉离子在活性炭、壳聚糖和壳聚糖/活性炭复合材料上平衡吸附的统计物理模型
通过统计物理模型分析了活性炭、壳聚糖和壳聚糖/活性炭复合材料对镉水溶液的吸附能力。平衡数据采用Langmuir、Hill、双层模型和多层模型及饱和等温线模型进行分析。结果表明,含饱和度的多层模型能较好地描述数据。通过数值模拟计算了吸附离子的数量、接收离子的密度、形成的层数以及相对于不同层的吸附能。结果表明,壳聚糖/活性炭具有较高的受体位点密度和吸附离子总量。结果表明,活性炭/壳聚糖复合材料对镉的吸附是一种单层放热吸附过程。随着温度的升高,镉的吸附量减少,这是由于受体吸附位点的数量减少。统计物理模型表明,吸附在吸附剂表面的镉离子的几何形状是平行的。
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