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Study on the adsorption characteristics of aqueous caffeine solutions on macroporous resins with hydrogen-bonding interactions

机译:咖啡因水溶液在具有氢键作用的大孔树脂上的吸附特性研究

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The adsorption characteristics of caffeine on six macroporous resins have been investigated. The results show that the resin with hydroxyl groups (XDA-200) offer better adsorption/ desorption capacity than other resins, and its adsorption kinetics fit a pseudo- second-order model. The adsorption process is a type of fast adsorption, and multiple adsorption mechanisms controlled the rate of adsorption. The isothermal equilibrium curve of caffeine adsorbed onto XDA-200 show a good fit to the Freundlich model, and thermodynamics tests show that the process is exothermic and spontaneous. The absolute value of enthalpy is 14.347 kJ/mol, which is in the range of the adsorption enthalpy related to hydrogen-bonding interactions. XPS and FTIR analyses also verify the existence of hydrogen-bonding interactions.
机译:研究了咖啡因在六种大孔树脂上的吸附特性。结果表明,具有羟基的树脂(XDA-200)提供了比其他树脂更好的吸附/解吸能力,并且其吸附动力学符合拟二级模型。吸附过程是快速吸附的一种,多种吸附机制控制着吸附速率。咖啡因吸附在XDA-200上的等温平衡曲线与Freundlich模型非常吻合,热力学测试表明该过程是放热的,并且是自发的。焓的绝对值为14.347kJ / mol,处于与氢键相互作用有关的吸附焓的范围内。 XPS和FTIR分析也验证了氢键相互作用的存在。

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