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Effect of Textural Properties on the Adsorption and Desorption of Toluene on the Metal-Organic Frameworks HKUST-1 and MIL-101

机译:纹理特性对金属有机骨架HKUST-1和MIL-101上甲苯吸附和解吸的影响

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The adsorption and desorption of toluene on metal-organic frameworks HKUST-1 and MIL-101 were studied. The adsorption isotherms and kinetic curves of toluene on HKUST-1 and MIL-101 were separately measured by gravimetric method. Temperature-programmed desorption experiments were carried out for estimating the interaction of toluene with the surfaces of HKUST-1 and MIL-101. Our experimental results showed that the isotherms of toluene on the adsorbents were well fitted by the Langmuir-Freundlich equation. The maximum amount of toluene adsorbed on MIL-101 was 15.1 mmol/g, which was much higher than that adsorbed on HKUST-1 (6.6 mmol/g). The high adsorption capacity of MIL-101 can be attributed to its higher surface area. However, the isotherm of toluene at P/P0 < 0.09 on HKUST-1 was much higher than that on MIL-101 owing to the smaller pore size of HKUST-1. It is suggested that HKUST-1 had better adsorption performance than MIL-101 at low concentration of volatile organic compounds. The desorption activation energies, Ed, of toluene on HKUST-1 and MIL-101 were 43.8 and 30.2 kJ/mol, respectively, meaning that the interaction of toluene with HKUST-1 was stronger than that with MIL-101. In addition, the diffusion coefficient of toluene within HKUST-1 was smaller than that within MIL-101. Results of thermal desorption experiments showed that the desorption efficiency of toluene from HKUST-1 and MIL-101 can separately reach above 93% and nearly 100% at 393 K, respectively.
机译:研究了甲苯在金属有机骨架HKUST-1和MIL-101上的吸附和解吸。用重量法分别测定了甲苯在HKUST-1和MIL-101上的吸附等温线和动力学曲线。进行了程序升温脱附实验,以评估甲苯与HKUST-1和MIL-101表面的相互作用。我们的实验结果表明,Langmuir-Freundlich方程很好地拟合了甲苯在吸附剂上的等温线。 MIL-101上吸附的最大甲苯量为15.1 mmol / g,远高于HKUST-1上的吸附量(6.6 mmol / g)。 MIL-101的高吸附能力可以归因于其较高的表面积。然而,由于HKUST-1的孔径较小,在HKUST-1上甲苯的等温线P / P0 <0.09远高于MIL-101。建议在低浓度的挥发性有机化合物下,HKUST-1的吸附性能优于MIL-101。甲苯在HKUST-1和MIL-101上的解吸活化能Ed分别为43.8和30.2 kJ / mol,这意味着甲苯与HKUST-1的相互作用强于MIL-101。此外,甲苯在HKUST-1中的扩散系数小于MIL-101中的扩散系数。热脱附实验的结果表明,在393 K下,HKUST-1和MIL-101对甲苯的脱附效率分别可以达到93%以上和近100%。

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