Faculty of Environmental Science and Engineering, Kunming University of Science and Technology, Kunming 650500, PR China.
Research Center for Analysis and Measurement, Kunming University of Science and Technology, Kunming 650093, PR China.
J Hazard Mater. 2013 Jun 15;254-255:301-309. doi: 10.1016/j.jhazmat.2013.04.008. Epub 2013 Apr 12.
The Box-Behnken Design of the response surface methodology was employed to optimize four most important adsorption parameters (initial arsenic concentration, pH, adsorption temperature and time) and to investigate the interactive effects of these variables on arsenic(V) adsorption capacity of mesoporous alumina (MA). According to analysis of variance (ANOVA) and response surface analyses, the experiment data were excellent fitted to the quadratic model, and the interactive influence of initial concentration and pH on As(V) adsorption capacity was highly significant. The predicted maximum adsorption capacity was about 39.06 mg/g, and the corresponding optimal parameters of adsorption process were listed as below: time 720 min, temperature 52.8 °C, initial pH 3.9 and initial concentration 130 mg/L. Based on the results of arsenate species definition, FT-IR and pH change, As(V) adsorption mechanisms were proposed as follows: (1) at pH 2.0, H₃AsO₄ and H₂AsO₄(-) were adsorbed via hydrogen bond and electrostatic interaction, respectively; (2) at pH 6.6, arsenic species (H₂AsO₄(-) and HAsO₄(2-)) were removed via adsorption and ion exchange, (3) at pH 10.0, HAsO₄(2-) was adsorbed by MA via ion exchange together with adsorption, while AsO₄(3-) was removed by ion exchange.
响应面法的 Box-Behnken 设计被用于优化四个最重要的吸附参数(初始砷浓度、pH 值、吸附温度和时间),并研究这些变量对介孔氧化铝(MA)对砷(V)吸附能力的交互作用。根据方差分析(ANOVA)和响应面分析,实验数据很好地拟合了二次模型,且初始浓度和 pH 值对 As(V)吸附容量的交互影响非常显著。预测的最大吸附容量约为 39.06 mg/g,相应的吸附过程最佳参数列于以下:时间 720 min,温度 52.8°C,初始 pH 3.9 和初始浓度 130 mg/L。基于砷酸盐物种定义、FT-IR 和 pH 值变化的结果,提出了 As(V)吸附机制如下:(1)在 pH 2.0 时,H₃AsO₄和 H₂AsO₄(-)分别通过氢键和静电相互作用吸附;(2)在 pH 6.6 时,砷物种(H₂AsO₄(-)和 HAsO₄(2-))通过吸附和离子交换去除;(3)在 pH 10.0 时,HAsO₄(2-)通过离子交换和吸附与 MA 一起吸附,而 AsO₄(3-)通过离子交换去除。