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Systematic Investigation on the Adsorption Performance and Mechanism of MnO2/TA Nanoflowers for Cu(II)Removal from Aqueous Solution

机译:对MNO2/TA纳米流的吸附性能和机制的系统研究(II)从水溶液中去除(II)

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In this work,a nanoflower-type manganese dioxide composite with tannic acid(MnO2/TA)was prepared using a facile hydrothermal method.The maximum adsorption capacity of nanoflower MnO2/TA for Cu(II)removal from aqueous solution was 194.3 mg·g~(-1),and this illustrated the excellent adsorptive activity of nanoflower MnO2/TA.Adsorption kinetics and isotherm investigations showed that pseudo second order kinetics and the Langmuir isotherm model fit the experimental data well.The surface complex formation model(SCFM)was used to study the adsorptive process and mechanism of Cu(II)adsorption on the surface of MnO2/TA.Further investigation indicated that the adsorption energies for various forms of Cu(II)were negative which indicated that Cu(II)adsorption on MnO2/TA was a spontaneous process.Electrostatic interactions and chemical complexation were involved in Cu(II)removal by MnO2/TA from aqueous solution.The decline of adsorption capacity was about 10% for MnO2/TA after being reused five times,and this showed that the adsorbent might be reused in Cu(II)removal.The MnO2/TA nanocomposite has been proven to be a low-cost and efficient adsorbent that could be a potential material for use in environmental treatment.Understanding the adsorption mechanism might provide a technical basis for the processual design of heavy metal adsorbents.
机译:在这项工作中,使用平均热液方法制备了单宁酸(MNO2/TA)的纳米惠型二氧化碳复合材料。从水溶液中除去Cu(II)的纳米丙二醇MNO2/TA的最大吸附能力为194.3 mg·G·G·G·G·G·G·G·G·g·g·g。 〜(-1),这说明了纳米植物MNO2/TA.AD.ADS吸附动力学和等渗研究的出色吸附活性,表明伪二阶动力学和Langmuir等温线模型均适合实验数据。用于研究MNO2/TA.FURTHER研究表面上Cu(II)吸附的吸附过程和机制,表明各种形式的Cu(II)的吸附能为阴性,表明CU(II)对MNO2/2/)的吸附TA是一个自发的过程。电压相互作用和化学络合涉及通过MNO2/TA从水溶液中去除Cu(II)。五次重复使用后MNO2/TA的吸附能力下降约为10% s,这表明吸附剂可以在Cu(ii)去除中重复使用。MNO2/TA纳米复合材料已被证明是一种低成本和高效的吸附剂,可能是在环境处理中使用的潜在材料。理解吸附机制可能为重金属吸附剂的过程设计提供技术基础。

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