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首页> 外文期刊>Applied Surface Science >Adsorption of Cu2+ ions using chitosan-modified magnetic Mn ferrite nanoparticles synthesized by microwave-assisted hydrothermal method
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Adsorption of Cu2+ ions using chitosan-modified magnetic Mn ferrite nanoparticles synthesized by microwave-assisted hydrothermal method

机译:微波辅助水热法合成壳聚糖修饰的磁性锰铁氧体纳米粒子吸附Cu2 +离子

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Chitosan-modified Mn ferrite nanoparticles were synthesized by a one-step microwave-assisted hydrothermal method. These Mn ferrite magnetic composite nanoparticles were employed to absorb Cu2+ ions in water. XRD verified the spinel structure of the MnFe2O4 nanoparticles. Chitosan modification does not result in any phase change of MnFe2O4. FTIR and zeta potentials curves for all samples suggest that chitosan can be successfully coated on the Mn ferrites. TEM characterization showed that the modified MnFe2O4 nanoparticles have a cubic shape with a mean diameter of similar to 100 nm. For adsorption behavior, the effects of experiment parameters such as solution pH value, contact time and initial Cu2+ ions concentration on the adsorption efficiency were systematically investigated. The results showed that increasing solution pH value and extending contact time are favorable for improving adsorption efficiency. Especially, adsorption efficiency can reach up to 100% and 96.7% after 500 min adsorption at pH 6.5 for the solutions with initial Cu2+ ions concentration of 50 mg/L and 100 mg/L. Adsorption data fits well with the Langmuir isotherm models with a maximum adsorption capacity (q(m)) and a Langmuir adsorption equilibrium constant (K) of 65.1 mg/g and 0.090 L/mg, respectively. The adsorption kinetic agrees well with pseudo second order model with the pseudo second rate constants (K-2) of 0.0468 and 0.00189 g/mg/min for solutions with initial Cu2+ ions of 50 and 100 mg/L, respectively. (C) 2014 Elsevier B.V. All rights reserved.
机译:通过一步微波辅助水热法合成了壳聚糖修饰的锰铁氧体纳米粒子。这些锰铁氧体磁性复合纳米颗粒用于吸收水中的Cu2 +离子。 XRD验证了MnFe2O4纳米粒子的尖晶石结构。壳聚糖修饰不会导致MnFe2O4的任何相变。所有样品的FTIR和zeta电位曲线表明,壳聚糖可以成功地涂覆在Mn铁氧体上。 TEM表征表明,改性后的MnFe2O4纳米颗粒具有立方形状,平均直径接近100 nm。对于吸附行为,系统地研究了溶液pH值,接触时间和初始Cu 2+离子浓度等​​实验参数对吸附效率的影响。结果表明,提高溶液的pH值和延长接触时间有利于提高吸附效率。特别是,初始Cu2 +离子浓度为50 mg / L和100 mg / L的溶液在pH 6.5吸附500分钟后,吸附效率可以达到100%和96.7%。吸附数据非常适合Langmuir等温模型,最大吸附容量(q(m))和Langmuir吸附平衡常数(K)分别为65.1 mg / g和0.090 L / mg。对于初始Cu 2+离子分别为50和100 mg / L的溶液,其吸附动力学与拟二级速率常数(K-2)分别为0.0468和0.00189 g / mg / min的拟动力学模型非常吻合。 (C)2014 Elsevier B.V.保留所有权利。

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