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An environment-friendly composite as an adsorbent for removal Cu (II) ions

机译:一种环保型复合材料作为去除Cu(II)离子的吸附剂

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The low-cost composite film was prepared by incorporating chitosan, berry soap fruit extract (rarasaponin), and bentonite as the raw materials. The produced chitosan/rarasaponin/bentonite (CRB) composite exhibits outstanding adsorption capability toward copper metal ions (Cu(II)). A series of static adsorption experiments were carried out to determine the isotherm and kinetic properties of CRB composite in the adsorption process. The adsorption equilibrium shows a good fit with the Langmuir isotherm model; the CRB composite has maximum uptake of Cu (II) of 412.70mg/g; the kinetic adsorption data exhibit a good fit with the pseudo-second-order model. The thermodynamic parameters, Delta H degrees, Delta G degrees, and Delta S degrees, obtained from the isotherm data indicate that the uptake of copper ions by CRB composite is more favored at low temperatures. This study shows that physicochemical modified adsorbent, namely CRB composite, can remove Cu (II) better than pristine adsorbent of AAB and chitosan. The CRB composite also shows potential reusability.
机译:通过掺入壳聚糖,浆果皂水果提取物(Rarasaponin)和膨润土作为原料来制备低成本复合膜。所生产的壳聚糖/拉西杨/膨润土(CRB)复合材料对铜金属离子具有出色的吸附能力(Cu(II))。进行了一系列静态吸附实验,以确定吸附过程中CRB复合材料的等温和动力学性能。吸附均衡显示出良好的良好拟合Langmuir等温线模型; CRB复合材料具有412.70mg / g的最大摄取;动力学吸附数据与伪二阶模型表现出良好的拟合。从等温数据获得的热力学参数,ΔH度,ΔGg度和δS度表明CRB复合材料的铜离子的摄取在低温下更赞成。该研究表明,物理化学改性吸附剂,即CrB复合材料,可以比AAB和壳聚糖的原始吸附剂更好地除去Cu(II)。 CRB复合材料还显示出潜在的可重用性。

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