State Key Laboratory of Pollution Control and Resources Reuse, College of Environmental Science and Engineering, Tongji University, Shanghai 200092, China.
State Key Laboratory of Pollution Control and Resources Reuse, College of Environmental Science and Engineering, Tongji University, Shanghai 200092, China.
J Environ Sci (China). 2015 Jan 1;27:207-16. doi: 10.1016/j.jes.2014.05.036. Epub 2014 Nov 13.
Although surface complexation models have been widely used to describe the adsorption of heavy metals, few studies have verified the feasibility of modeling the adsorption kinetics, edge, and isotherm data with one pH-independent parameter. A close inspection of the derivation process of Langmuir isotherm revealed that the equilibrium constant derived from the Langmuir kinetic model, KS-kinetic, is theoretically equivalent to the adsorption constant in Langmuir isotherm, KS-Langmuir. The modified Langmuir kinetic model (MLK model) and modified Langmuir isotherm model (MLI model) incorporating pH factor were developed. The MLK model was employed to simulate the adsorption kinetics of Cu(II), Co(II), Cd(II), Zn(II) and Ni(II) on MnO2 at pH3.2 or 3.3 to get the values of KS-kinetic. The adsorption edges of heavy metals could be modeled with the modified metal partitioning model (MMP model), and the values of KS-Langmuir were obtained. The values of KS-kinetic and KS-Langmuir are very close to each other, validating that the constants obtained by these two methods are basically the same. The MMP model with KS-kinetic constants could predict the adsorption edges of heavy metals on MnO2 very well at different adsorbent/adsorbate concentrations. Moreover, the adsorption isotherms of heavy metals on MnO2 at various pH levels could be predicted reasonably well by the MLI model with the KS-kinetic constants.
尽管表面络合模型已被广泛用于描述重金属的吸附,但很少有研究验证用一个与 pH 无关的参数来模拟吸附动力学、边缘和等温线数据的可行性。仔细检查 Langmuir 等温线的推导过程,发现从 Langmuir 动力学模型推导出的平衡常数 KS-kinetic,在理论上等同于 Langmuir 等温线中的吸附常数 KS-Langmuir。提出了包含 pH 因子的修正 Langmuir 动力学模型 (MLK 模型) 和修正 Langmuir 等温线模型 (MLI 模型)。在 pH 值为 3.2 或 3.3 时,MLK 模型被用于模拟 Cu(II)、Co(II)、Cd(II)、Zn(II)和 Ni(II)在 MnO2 上的吸附动力学,以获得 KS-kinetic 值。重金属的吸附边缘可以用修正的金属分配模型 (MMP 模型) 来模拟,得到 KS-Langmuir 值。KS-kinetic 和 KS-Langmuir 的值非常接近,验证了这两种方法得到的常数基本相同。用 KS-kinetic 常数的 MMP 模型可以很好地预测不同吸附剂/吸附质浓度下重金属在 MnO2 上的吸附边缘。此外,用 KS-kinetic 常数的 MLI 模型可以很好地预测重金属在不同 pH 值下在 MnO2 上的吸附等温线。