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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Competitive adsorption of Cu2+, Cd2+ and Ni2+ from an aqueous solution on graphene oxide membranes
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Competitive adsorption of Cu2+, Cd2+ and Ni2+ from an aqueous solution on graphene oxide membranes

机译:氧化石墨烯膜上水溶液中Cu2 +,Cd2 +和Ni2 +的竞争性吸附

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A novel graphene oxide membrane (GOM) was prepared using the vacuum filtration-induced directional flow method. The properties of GOM were characterized by scanning electron microscope, X-ray diffraction instrument, transmission electron microscope, and Fourier transform infrared spectroscopy apparatus. The adsorptive properties of Cu2+, Cd2+ and Ni2+ onto GOM were systematically investigated in single, binary and ternary solutions by batch experiments. In a single system, the maximum adsorption capacities of Cu2+, Cd2+ and Ni2+ obtained by the Langmuir model were 1.21, 0.81 and 1.08 mmol/g, respectively. The isotherms results for Cu2+ indicated that GOM exhibited good selectivity in the adsorption of Cu2+ over Cd2+ and Ni2+. The adsorption capacity followed the order of Cu2+ > Ni2+ > Cd2+ in binary systems. For ternary system, the order of the adsorption capacity was Cu2+ > Cd2+ > Ni2+. Previously adsorbed metal ions on GOM could be displaced by subsequently adsorbed metal ions from the solution. The difference in hard and soft acids and bases of Cu2+, Cd2+ and Ni2+ solutions was identified as the main reason for GOM to be able to selectively adsorb favorable metal ions during competitive adsorption in binary systems. This interaction mechanism between the favorable component and other metal ions could be the primary cause of direct displacement. (C) 2016 Elsevier B.V. All rights reserved.
机译:利用真空过滤诱导的定向流动法制备了一种新型的氧化石墨烯膜(GOM)。通过扫描电子显微镜,X射线衍射仪,透射电子显微镜和傅里叶变换红外光谱仪表征了GOM的性能。通过批处理实验,系统研究了Cu2 +,Cd2 +和Ni2 +对GOM的吸附性能。在单一系统中,通过Langmuir模型获得的Cu2 +,Cd2 +和Ni2 +的最大吸附容量分别为1.21、0.81和1.08 mmol / g。 Cu2 +的等温线结果表明,GOM在Cd2 +和Ni2 +上的Cu2 +吸附方面表现出良好的选择性。在二元体系中,吸附能力遵循Cu2 +> Ni2 +> Cd2 +的顺序。对于三元体系,吸附容量的顺序为Cu2 +> Cd2 +> Ni2 +。溶液中随后吸附的金属离子可能会取代GOM上先前吸附的金属离子。 Cu2 +,Cd2 +和Ni2 +溶液中硬酸和软酸和碱的差异被认为是GOM能够在二元体系竞争性吸附过程中选择性吸附有利金属离子的主要原因。有利成分与其他金属离子之间的这种相互作用机制可能是直接置换的主要原因。 (C)2016 Elsevier B.V.保留所有权利。

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