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首页> 外文期刊>Environmental Science and Pollution Research >Adsorption of Cu(II) and Ni(II) ions from wastewater onto bentonite and bentonite/GO composite
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Adsorption of Cu(II) and Ni(II) ions from wastewater onto bentonite and bentonite/GO composite

机译:废水中Cu(II)和Ni(II)离子的吸附在膨润土和膨润土/去复合材料上

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摘要

Two superior adsorbents, namely bentonite and graphene oxide (GO), were hybridised to study the removal of copper and nickel ions from synthetic and industrial wastewater. The as-synthesised GO, bentonite/GO and bentonite were characterised by Fourier transform infrared spectroscopy, scanning electron microscopy, energy-dispersive X-ray spectroscopy and N(2)adsorption-desorption analysis. The factors influencing the adsorption behaviours including contact time, initial solution pH, ionic strength, initial concentration of metal ions, temperature and adsorbent dosage were systematically investigated by batch equilibrium method. The adsorption equilibrium for copper and nickel onto bentonite was attained in 90 min while equilibrium was reached in 60 min on bentonite/GO. The adsorption of copper and nickel was pH-dependent in the range from pH 2 to pH 7 and from pH 2 to pH 8. Pseudo-first-order kinetic model excellently described the adsorption of copper and nickel onto bentonite and bentonite/GO. The equilibrium adsorption data was well described by the Langmuir isotherm model and the maximum adsorption capacity was 248.9 mg/g, 558.4 mg/g, 215.8 mg/g and 402.5 mg/g for bentonite-copper, bentonite/GO-copper, bentonite-nickel and bentonite/GO-nickel adsorption systems, respectively. The bentonite/GO composite exhibited a higher adsorption capacity of both cations from synthetic wastewater than pure bentonite owning to the synergistic effect between bentonite and GO. In all adsorption studies, copper was more efficiently removed than nickel due to its higher tendency to form bond with adsorbent surfaces. The adsorption of copper and nickel on bentonite/GO was mainly due to cation exchange, intermolecular and electrostatic interactions and physisorption dominated the adsorption processes. The practical application of bentonite/GO on adsorption of copper was investigated using real wastewater and its removal efficiency was beyond 98%. The excellent adsorption performances of composites for the copper and nickel removal from wastewater demonstrated its significant potential for pollution mitigations.
机译:两个优异的吸附剂,即膨润土和石墨烯(GO)杂交,以研究从合成和工业废水中去除铜和镍离子。通过傅里叶变换红外光谱,扫描电子显微镜,能量分散X射线光谱和N(2)吸附 - 解吸分析,表征了膨润土/去和膨润土的特征。通过批量平衡法系统地研究影响包括接触时间,初始溶液pH,离子强度,金属离子初始浓度,温度和吸附剂量的初始浓度的因素。在90分钟内达到铜和镍在膨润土上的吸附平衡,同时在膨润土/去60分钟内达到平衡。将铜和镍的吸附在pH 2至pH 7的范围内,从pH 2至pH8至pH8。伪一阶动力学模型很好地描述了铜和镍的吸附到膨润土和膨润土/去上。 Langmuir等温线孔的平衡吸附数据很好地描述,最大吸附能力为248.9mg / g,558.4mg / g,215.4mg / g,215.8mg / g和402.5mg / g用于膨润土 - 铜,膨润土/铜,膨润土 - 镍和膨润土/去镍吸附系统。膨润土/去综合材料从合成废水中的吸附能力较高,而不是纯膨润土,拥有膨润土之间的协同效应。在所有吸附研究中,由于其与吸附表面形成键的趋势,铜比镍更有效地去除。铜矿和镍对膨润土/去的吸附主要是由于阳离子交换,分子间和静电相互作用和物理吸附地占吸附过程。使用真正的废水研究了膨润土/继续吸附铜的实际应用,其去除效率超过98%。铜和镍从废水中取出的复合材料的优异吸附性能证明了其污染缓解的显着潜力。

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