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Chlorine Adsorption of Activated Carbons, Carbon Molecular Sieves and Carbon Nanotubes

机译:活性炭,碳分子筛和碳纳米管对氯的吸附

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Activated carbon, carbon molecular sieves and carbon nanotubes as ordered porous carbon materials, which have huge surface areas and special developed holes are investigated and compared by their chlorine adsorption properties in this paper The adsorption properties of chlorine are investigated by pressure composition temperature instrument and characterized by X-ray diffractometer, Fourier transform infrared spectroscopy and scanning electron microscopy. The data is obtained at a temperature range of 273 K-323 K and pressure is in the range of 0-0.35 MPa. Among the three porous carbon materials, carbon nanotubes is most efficient in adsorption of chlorine and the adsorption capacity can reach 37.51 % at temperature 30 °C and under the pressure 0.332 MPa. The experimental data shows that the chlorine adsorption capacity influenced by temperature and pressure. Pore volume and aperture type are main factors attribute to the capacity difference. Activated carbon, carbon molecular sieves and carbon nanotubes are found to be potential candidates for adsorbing chlorine.
机译:本文研究了活性炭,碳分子筛和碳纳米管作为有序的多孔碳材料,它们具有较大的表面积和特殊形成的孔,并通过其对氯的吸附性能进行了比较。通过X射线衍射仪,傅立叶变换红外光谱仪和扫描电子显微镜观察。该数据是在273 K-323 K的温度范围和压力在0-0.35 MPa的范围内获得的。在这三种多孔碳材料中,碳纳米管对氯的吸附效率最高,在30°C的温度和0.332 MPa的压力下,其吸附容量可达到37.51%。实验数据表明,氯的​​吸附能力受温度和压力的影响。孔径和孔径类型是造成容量差异的主要因素。发现活性炭,碳分子筛和碳纳米管是吸附氯的潜在候选物。

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