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首页> 外文期刊>Clays and clay minerals >ADSORPTION OF Cu(II) ON RHAMNOLIPID-LAYERED DOUBLE HYDROXIDE NANOCOMPOSITE
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ADSORPTION OF Cu(II) ON RHAMNOLIPID-LAYERED DOUBLE HYDROXIDE NANOCOMPOSITE

机译:鼠李糖脂层状双氢氧化物纳米复合材料对铜(II)的吸附

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A rhamnolipid-layered double hydroxide (RL-LDH) nanocomposite, derived from the rhamnolipid (RL) biosurfactant, was synthesized through a delamination/reassembling process. The adsorption characteristics of Cu(II) on RL-LDH were investigated in detail and the results indicated the potential of using RL-LDH as an environmentally friendly adsorbent to remove Cu(II). The fabricated RL-LDH nanocomposite was characterized using powder X-ray diffraction, Fourier-transform infrared spectroscopy, scanning electron microscopy, transmission electron microscopy, elemental chemical composition, and specific surface area analyses. Batch adsorption experiments were conducted to study the influence of various factors, such as contact time, initial Cu(II) concentration, temperature, initial solution pH, and electrolyte concentration on Cu(II) adsorption by the RL-LDH nanocomposite. The RL-LDH nanocomposite had a low surface area of 11.71 m(2) g(-1), which suggests that surface adsorption would not be important in Cu(II) adsorption. The Cu(II) adsorption data fitted the Freundlich model well at pH 5.5, whereas the adsorption kinetics were accurately described by a pseudo-second-order kinetics model. Chemical binding, that is, the formation of a RL-Cu(II) complex in the LDH interlayer, was assumed to be the rate-limiting step in the adsorption process. Thermodynamic parameters that included Gibbs free energy, enthalpy, and entropy changes were also calculated. The adsorption was found to be a spontaneous and exothermic chemisorption process. Furthermore, the adsorption properties of RL-LDH for Cu(II) were compared to Cu(II) adsorption using other adsorbents.
机译:鼠李糖脂(RL)生物表面活性剂衍生的鼠李糖脂层状双氢氧化物(RL-LDH)纳米复合材料是通过分层/重组过程合成的。详细研究了Cu(II)在RL-LDH上的吸附特性,结果表明使用RL-LDH作为环境友好型吸附剂可以去除Cu(II)。使用粉末X射线衍射,傅立叶变换红外光谱,扫描电子显微镜,透射电子显微镜,元素化学组成和比表面积分析对所制备的RL-LDH纳米复合材料进行表征。进行了批量吸附实验,以研究接触时间,初始Cu(II)浓度,温度,初始溶液pH值和电解质浓度等因素对RL-LDH纳米复合材料吸附Cu(II)的影响。 RL-LDH纳米复合材料的低表面积为11.71 m(2)g(-1),这表明表面吸附在Cu(II)吸附中并不重要。 Cu(II)的吸附数据在pH 5.5时很好地适应了Freundlich模型,而吸附动力学则由伪二级动力学模型精确描述。化学吸附,即在LDH中间层中形成RL-Cu(II)络合物,被认为是吸附过程中的限速步骤。还计算了包括吉布斯自由能,焓和熵变的热力学参数。发现吸附是自发的和放热的化学吸附过程。此外,将RL-LDH对Cu(II)的吸附性能与使用其他吸附剂的Cu(II)吸附进行了比较。

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