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Construction of adsorptive nanorods from polyoxometalates and ionic liquid and their adsorption properties for silver ion from AMD

机译:多金属氧酸盐和离子液体的吸附性纳米棒的构建及其对AMD离子中银离子的吸附性能

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摘要

A new structure of hybrid nanorods adsorbent ([n-BBIM](9)PW9O34) was synthesized by a simple molecular assembly of polyoxometalates with ionic liquids (ILs). The nanocomposite was characterized by Fourier transform infrared (FT-IR), ultraviolet-visible (UV-Vis), scanning electron microscope, energy dispersive X-ray and X-ray diffractometer. Adsorption of silver from acid mine drainage (AMD) was studied using batch experiments. The impact of several parameters, like ion concentration, pH, adsorbent dosage, and temperature was elucidated and optimization was carried out by single-factor experiment and response surface methodology. Analysis of variance of the quadratic model suggested that experimental data were excellently fitted to the quadratic model. Optimum conditions for removal of Ag+ from AMD were determined to be an initial concentration 143 mg/L, adsorbent dosage 2.69 g/L, temperature 35 degrees C to achieve the maximum adsorption of Ag+ 99.03%, which was very close to the predicted value (100%). The adsorption was confirmed as oxidation-reduction mechanism following a complexation process, and has been verified according to results from FT-IR and UV-vis spectra. The selective experiment suggested that the nanorods adsorbent could adsorb silver ions in AMD well. Based on the adsorption/desorption study result, the adsorbent can be efficiently recovered.
机译:通过多金属氧酸盐与离子液体(ILs)的简单分子组装,合成了杂化纳米棒吸附剂([n-BBIM](9)PW9O34)的新结构。纳米复合材料的特征在于傅立叶变换红外(FT-IR),紫外可见光(UV-Vis),扫描电子显微镜,能量色散X射线和X射线衍射仪。使用分批实验研究了酸性矿山排水(AMD)中银的吸附。阐明了离子浓度,pH,吸附剂用量和温度等几个参数的影响,并通过单因素实验和响应面方法进行了优化。二次模型的方差分析表明,实验数据非常适合二次模型。确定从AMD去除Ag​​ +的最佳条件为初始浓度143 mg / L,吸附剂量2.69 g / L,温度35摄氏度,以实现对Ag +的最大吸附99.03%,这非常接近于预测值( 100%)。证实该吸附是络合过程后的氧化还原机理,并已根据FT-IR和UV-vis光谱的结果进行了验证。选择性实验表明,纳米棒吸附剂可以很好地吸附AMD中的银离子。根据吸附/解吸研究结果,可以有效地回收吸附剂。

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