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Nd-BTC metal-organic framework (MOF); synthesis, characterization and investigation on its adsorption behavior toward cesium and strontium ions

机译:ND-BTC金属 - 有机框架(MOF); 铯和锶离子吸附行为的合成,表征及研究

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In the present study, the synthesis and characterization of metal organic framework (MOF) was done with neodymium as a basic metal and benzene tricarboxylic acid (BTC) as a ligand with solvothermal method. In order to characterize the morphology and structure of the obtained adsorbent, XRD, FTIR, SEM, TG/DSC, and nitrogen adsorption/desorption methods were used. Then atomic absorption and ICP analysis is applied to determine the feasibility of metal-organic framework for sorption of cesium and strontium. Adsorption performance of Cs and Sr adsorbent was evaluated under the factors affecting adsorption experiments (initial solution pH, contact time, initial concentration of metal ion and temperature). The maximum adsorption capacity for cesium and strontium by adsorbent was obtained at pH 8. The kinetic data was analyzed by the pseudo-first-order, pseudo-second order, intra-particle diffusion, Elovich modified Freundlich kinetic models and the experimental data has a good correlation with the pseudo-second-order model. The equilibrium data were fitted to three isotherm models: Freundlich, Langmuir and Temkin. The Langmuir model was better described adsorption process and Maximum adsorption capacity was obtained 86 and 58 mg/g for Cs and Sr ions respectively. Thermodynamics parameters such as free energy change (Delta G degrees < 0), enthalpy (Delta H degrees > 0) and entropy (Delta S degrees > 0) were also calculated which represent spontaneous and endothermic nature of adsorption along with increasing irregularities at the solid-solution interface.
机译:在本研究中,金属有机骨架(MOF)的合成和表征用钕作为碱性金属和苯三羧酸(BTC)作为具有溶剂的配体进行的。为了表征所获得的吸附剂的形态和结构,使用XRD,FTIR,SEM,TG / DSC和氮吸附/解吸方法。然后应用原子吸收和ICP分析来确定金属有机骨架的可行性用于吸附铯和锶。在影响吸附实验的因素下评估Cs和Sr吸附剂的吸附性能(初始溶液pH,接触时间,金属离子和温度的初始浓度)。在pH8中获得通过吸附剂的铯和锶的最大吸附能力。通过伪一阶,伪二次阶,颗粒内扩散,Elovich改性的Freundlich动力学模型和实验数据具有一个动力学数据与伪二阶模型良好的相关性。均衡数据适用于三个等温线:Freundlich,Langmuir和Temkin。 Langmuir模型更好地描述了吸附过程,并分别获得了86和58mg / g的最大吸附能力,分别获得Cs和Sr离子。还计算了热力学参数,例如自由能变化(Delta G度<0),焓(Delta H度> 0)和熵(Delta Stegle> 0),其代表吸附的自发性和吸热性以及在固体上增加不规则性 - 建立界面。

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