Evaluation of adsorption efficiency of activated carbon/chitosan composite for removal of Cr (VI) and Cd (II) from single and bi-solute dilute solution

Hakimeh Sharififard, Mahboubeh Nabavinia, M. Soleimani
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引用次数: 23

Abstract

The aim of this study was to evaluate the adsorption capacity of the novel coated activated carbon by chitosan for removal of Cr (VI) and Cd (II) ions from single and bi-solute dilute aqueous solutions. In addition, the adsorption abilities of activated carbon (AC), chitosan (CH) and chitosan / activated carbon composite (CHAC) have been compared. Adsorption studies were performed in a batch system, and the effects of various operating parameters such as solution pH, particle size and the dose of adsorbent were considered for removal of Cr (VI) and Cd (II) by Taguchi method. Equilibrium experimental data were well fitted to Langmuir isotherm for single and bi-solute solutions. The adsorption capacities of AC and CH adsorbents have improved by synthesis CHAC composite. As it was expected, competitive adsorption of metal ions on the CHAC surface led to reducing the adsorption capacity from 90.9 mg g-1 to 41.94 mg g-1 for Cr (VI) and 52.63 mg g-1 to 30.21 mg g-1 for Cd (II) ions, respectively. The adsorption capacities for the metal solution–adsorbent systems are in the order Cr (VI) > Cd (II). The kinetic studies indicated that the adsorption process was best described by the pseudo-second-order kinetics for single and bi-solute solutions.
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活性炭/壳聚糖复合材料对单溶质和双溶质稀溶液中Cr (VI)和Cd (II)的吸附效果评价
研究了壳聚糖包覆活性炭对单溶质和双溶质水溶液中Cr (VI)和Cd (II)离子的吸附性能。此外,还比较了活性炭(AC)、壳聚糖(CH)和壳聚糖/活性炭复合材料(CHAC)的吸附性能。在间歇系统中进行了吸附研究,考察了不同操作参数(如溶液pH、粒径和吸附剂剂量)对田口法去除Cr (VI)和Cd (II)的影响。单溶质和双溶质溶液的平衡实验数据符合Langmuir等温线。通过合成CHAC复合材料,提高了活性炭和甲烷吸附剂的吸附性能。正如预期的那样,金属离子在CHAC表面的竞争性吸附导致对Cr (VI)和Cd (II)离子的吸附量分别从90.9 mg g-1和52.63 mg g-1降低到30.21 mg g-1。金属溶液-吸附剂体系的吸附能力为Cr (VI) > Cd (II)。动力学研究表明,对单溶质和双溶质溶液的吸附过程最适合用准二级动力学描述。
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