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首页> 外文期刊>Water resources and industry >Kinetics, isotherms and thermodynamic modeling of liquid phase adsorption of Rhodamine B dye onto Raphia hookerie fruit epicarp
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Kinetics, isotherms and thermodynamic modeling of liquid phase adsorption of Rhodamine B dye onto Raphia hookerie fruit epicarp

机译:罗丹明B染料液相吸附在小phi果实果皮上的动力学,等温线和热力学模型

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Highly efficient low cost adsorbent was prepared from Raphia hookerie fruit epicarp. Characteristics of the prepared low cost adsorbent (RH) was established using scanning electron microscope (SEM), Fourier Transform Infra Red (FTIR) and Brunauer-Emmett-Teller (BET) surface area. RH was applied for Rhodamine B (RhB) uptake from aqueous solution. Equilibrium adsorption data were fitted using four isotherms and kinetic data tested with five kinetic models. The BET surface area obtained was 0.00351m^2/g; SEM reveals large pores that could enhance the uptake of large molecules. Freundlich isotherm best described the uptake of RhB onto RH, the maximum monolayer adsorption capacity (q"m"a"x) was 666.67mg/g. Pseudo second order model best described the kinetics of adsorption process. Energy of adsorption (E) obtained from D-R isotherm suggests physical adsorption. Desorption efficiency follows the order H"2O>HCl>CH"3COOH. Cost analysis shows that RH is about 1143 times more economical when compared with commercial activated carbon.
机译:高效廉价的吸附剂是从小phi果实的果皮中制备的。使用扫描电子显微镜(SEM),傅立叶变换红外(FTIR)和Brunauer-Emmett-Teller(BET)表面积确定了制备的低成本吸附剂(RH)的特性。 RH用于从水溶液中吸收若丹明B(RhB)。使用四个等温线拟合平衡吸附数据,并使用五个动力学模型测试动力学数据。得到的BET表面积为0.00351m ^ 2 / g; SEM显示大孔可以增强大分子的吸收。 Freundlich等温线最能描述RhB对RH的吸收,最大单层吸附容量(q“ m” a“ x)为666.67mg / g。伪二级模型最能描述吸附过程的动力学,获得的吸附能(E)等温线的DR表明吸附是物理吸附的,解吸效率遵循H” 2O> HCl> CH” 3COOH的顺序。成本分析表明,与商业活性炭相比,RH的经济性高约1143倍。

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