Tang P L, Lee C K, Low K S, Zainal Z
Chemistry Department, Faculty of Science and Environmental Studies, Universiti Putra Malaysia, 43400 UPM, Serdang, Selangor, Malaysia.
Environ Technol. 2003 Oct;24(10):1243-51. doi: 10.1080/09593330309385666.
The sorption characteristics of Cr(VI) and Cu(II) by ethylenediamine modified rice hull from single and binary metal ion solutions were evaluated under various experimental conditions. Optimal Cr(VI) and Cu(II) removal from single metal ion solutions occurred at pH 2.0 and 5.5, respectively. Simultaneous removal of Cr(VI) and Cu(II) occurred at pH greater than 3.0. The sorption kinetics of Cr(VI) and Cu(II) from single and binary metal ion solutions were studied with reference to metal concentration, agitation rate and particle size. Sorption of Cr(VI) was more rapid than Cu(II). The kinetics of metal ion sorption fitted a pseudo-second order expression. The variation in the initial uptake rates was very small at an agitation rate beyond 150 rpm and sorption was generally independent of particle size. Equilibrium sorption data could be fitted into the Langmuir isotherm equation. Maximum sorption capacities of ethylenediamine modified rice hull for Cr(VI) at pH 2 and Cu(II) at pH 4 in single metal solutions were 0.45 and 0.06 mmol g(-1), respectively. This corresponds to an enhancement factor of 2.6 and 3 fold for Cr(VI) and Cu(II), respectively, compared to natural rice hull. A synergistic effect was observed for sorption of these ions in binary metal solutions.
在各种实验条件下,评估了乙二胺改性稻壳对单一和二元金属离子溶液中Cr(VI)和Cu(II)的吸附特性。从单一金属离子溶液中去除Cr(VI)和Cu(II)的最佳pH值分别为2.0和5.5。在pH大于3.0时,可同时去除Cr(VI)和Cu(II)。参照金属浓度、搅拌速率和粒径,研究了单一和二元金属离子溶液中Cr(VI)和Cu(II)的吸附动力学。Cr(VI)的吸附比Cu(II)更快。金属离子吸附动力学符合准二级表达式。搅拌速率超过150 rpm时,初始吸附速率变化很小,吸附通常与粒径无关。平衡吸附数据可以拟合到Langmuir等温方程中。在单一金属溶液中,乙二胺改性稻壳在pH 2时对Cr(VI)和pH 4时对Cu(II)的最大吸附容量分别为0.45和0.06 mmol g(-1)。与天然稻壳相比,这分别对应于Cr(VI)和Cu(II)的增强因子2.6倍和3倍。在二元金属溶液中,观察到这些离子吸附的协同效应。