Ko Danny C K, Cheung Chun Wai, Choy Keith K H, Porter John F, McKay Gordon
Department of Chemical Engineering, Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong SAR, China.
Chemosphere. 2004 Jan;54(3):273-81. doi: 10.1016/j.chemosphere.2003.08.004.
The ability of bone char to adsorb three metal ions, namely, copper(II), zinc(II) and cadmium(II) ions from wastewater has been studied. Three single-component equilibrium systems and three binary equilibrium systems have been measured experimentally. The three single-component equilibrium data were analyzed using the Langmuir and the Sips equilibrium isotherm equations. The Sips isotherm gave a better fit of the experimental data than the Langmuir isotherm based on the sum of squares errors (SSE) analysis. The Cu-Zn, Cu-Cd and Cd-Zn binary equilibrium experimental data were examined by incorporating the Langmuir and the Sips isotherm equations into the ideal adsorbed solution theory (IAST). The solution methods and the predicted results for the three binary systems at different metal ion compositions have been evaluated. In addition, the application of the IAST to the model prediction for the fixed bed system is presented.
研究了骨炭从废水中吸附三种金属离子,即铜(II)、锌(II)和镉(II)离子的能力。实验测量了三个单组分平衡系统和三个二元平衡系统。使用朗缪尔和西普斯平衡等温线方程对三个单组分平衡数据进行了分析。基于平方和误差(SSE)分析,西普斯等温线比朗缪尔等温线更能拟合实验数据。通过将朗缪尔和西普斯等温线方程纳入理想吸附溶液理论(IAST),对铜-锌、铜-镉和镉-锌二元平衡实验数据进行了研究。评估了三种二元体系在不同金属离子组成下的求解方法和预测结果。此外,还介绍了IAST在固定床系统模型预测中的应用。