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首页> 外文期刊>International Journal of Environmental Science and Technology >Molecular-sieve porous graphene as a steady phase of gas chromatography column for dissociation and measurement of nitrous oxide, carbon dioxide and gaseous hydrocarbons
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Molecular-sieve porous graphene as a steady phase of gas chromatography column for dissociation and measurement of nitrous oxide, carbon dioxide and gaseous hydrocarbons

机译:分子筛多孔石墨烯作为气相色谱柱的稳定相,用于解离和测量氧化二氮,二氧化碳和气态烃

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摘要

A novel gas chromatography stationary phase is introduced for efficient separation of air, nitrous oxide, methane, carbon dioxide, ethane, propane, butane and pentane. Porous graphene was synthesized through a cost-effective approach. The structure and porous texture of the prepared graphene were evaluated by field-emission scanning electron microscopy and nitrogen adsorption/desorption isotherms. The results confirmed the high porosity and surface area of the synthesized porous graphene. Also, the nitrogen adsorption/desorption isotherms showed highly microporous structures with the average pore size being <2nm, which has high contribution in gas molecules separation. The prepared structure exhibited an excellent chromatography performance and separation efficiency compared with multi-wall, single-wall carbon nanotube and activated carbon. In addition, common problems in GC packed column by nanomaterials, such as avoiding the use of long column, flow rate reduction, agglomeration, packing compression and high back-pressure, were completely addressed; therefore, in order to overcome these problems and fabricate chromatography column 1.8, stainless steel tubes were used in three lengths of 10, 20, 30cm. After testing, the 30cm column was used for determination and separation of the entered gases in continued work. In this experiment, two types of samples were used. The first sample contains air, methane, carbon dioxide and nitrous oxide gases at 40 degrees C, and the second sample was compared of methane, ethane, propane, butane and pentane containing hydrocarbons with temperature action of 40-200 degrees C. The analytical results demonstrated the superior separation efficiency of porous graphene steady phase for some gas dissociation at 40 degrees C and good preservative for hydrocarbons C1-C5 (while using ramp up rate of 6 degrees C/min) in temperature range of 40-200 degrees C. The packed prepared column also showed high resolution, wide linear range and acceptable repeatability in separation of studying gas mixture. The obtained detection limits obtained were lower than 4.2ppm.
机译:引入了一种新的气相色谱固定相,用于有效分离空气,氧化二氮,甲烷,二氧化碳,乙烷,丙烷,丁烷和戊烷。通过经济有效的方法合成多孔石墨烯。通过现场排放扫描电子显微镜和氮吸附/解吸等温度评估制备石墨烯的结构和多孔纹理。结果证实了合成多孔石墨烯的高孔隙率和表面积。而且,氮吸附/解吸等温度显示出高度微孔结构,平均孔径为<2nm,其在气体分子中具有高贡献。与多壁,单壁碳纳米管和活性炭相比,制备的结构表现出优异的色谱性能和分离效率。此外,纳米材料的GC包装柱中的常见问题,例如避免使用长柱,流量降低,聚集,包装压缩和高背压,均完全解决;因此,为了克服这些问题和制造色谱柱1.8,使用不锈钢管3长10%,20,30cm。在测试之后,30cm柱用于确定和分离在继续工作中的进入的气体。在该实验中,使用两种类型的样品。第一个样品在40摄氏度下含有空气,甲烷,二氧化碳和氧化二氮氧化物气体,将甲烷,乙烷,丙烷,丁烷和戊烷与温度作用的碳氢化物与40-200℃的碳氢化物进行比较。分析结果在40摄氏度C1-C5的40℃下,在40摄氏度下,对一些气体解离的多孔石墨烯稳定相的卓越分离效率(同时使用6摄氏度的升温率为6摄氏度)的温度范围为40-200℃。填充的柱也显示出高分辨率,宽线性范围和学习气体混合物分离的可接受的可重复性。所获得的检测限量低于4.2ppm。

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