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Application research of hydrophobic silica in the recovery of oil vapor

机译:疏水二氧化硅在汽蒸气回收中的应用研究

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The adsorption characteristics and porous structure of self-made hydrophobic silica (HS) used in the recovery of oil vapor were investigated using the methods of N2 (g) adsorption measurement and SEM photograph, together with the pillared activated carbon (PAC). HS is a typical mesoporous material and has smaller surface area and bigger average pore diameter compared with the PAC. PAC has the well-developed interstitial structure, while HS's surface holes are shallow. The structural difference between the two adsorbents determined the different adsorption/desorption performance in recovery of oil vapor. PAC has the bigger adsorption amount and faster adsorption rate of oil vapor, while the oil vapor adsorbed in HS is much easier to be desorbed. The mixture of PAC and HS represented both the properties of fast adsorption rate and perfect desorption performance which can improve the life and efficiency of the recovery system at the same time. The adsorption amount of adsorbent increased with the increase of inlet concentration and decreased with the increase of inlet velocity of oil vapor.
机译:使用N 2(G)吸附测量和SEM照片的方法研究了用于回收油蒸气的自制成疏水二氧化硅(HS)的吸附特性和多孔结构,以及柱状活性炭(PAC)。 HS是典型的介孔材料,与PAC相比,具有较小的表面积和更大的平均孔径。 PAC有开发良好的间质结构,而HS的表面孔很浅。两种吸附剂之间的结构差异确定了在储存油蒸气中的不同吸附/解吸性能。 PAC具有更大的吸附量和更快的油蒸汽吸附速率,而吸附在HS中的油蒸气更容易解吸。 PAC和HS的混合物代表了快速吸附速率的性质和完美的解吸性能,可以同时改善回收系统的寿命和效率。吸附剂的吸附量随着入口浓度的增加而增加,随着油蒸气的入口速度的增加而降低。

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