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Novel hierarchically porous allophane/diatomite nanocomposite for benzene adsorption

机译:用于苯吸附的新型分级多孔脲基铝/硅藻土纳米复合材料

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Allophane/diatomite (Allo/Dt) nanocomposite with a hierarchically porous structure was prepared via an in situ hydrothermal method. This hierarchically porous structure consists of i) micropores remaining from the initial stacked coating allophane particles; ii) mesopores formed by the transformation of the macropores of diatom frustules due to the filling of allophane particles in the inner walls, and iii) preserved macropores of diatom frustules. The coating amount of allophane particles in Allo/Dt nanocomposite was 59.1%, leading to a specific surface area of 155.9 m(2)/g, which was substantially higher than that of diatomite (17.9 m(2)/g). The benzene adsorption performance and related adsorption mechanisms of Allo/Dt nanocomposite were investigated. The larger benzene dynamic adsorption capacity of 121.6 mg/g, compared to that of the synthetic allophane (105.9 mg/g), resulted from the adequate adsorption space provided by the hierarchically porous structure. Moreover, Allo/Dt nanocomposite displayed a higher efficiency for benzene adsorption in mesopores of the coating allophane particles because of their improved dispersity. These results demonstrated that the fabrication process of Allo/Dt nanocomposite can overcome not only the aggregation of allophane but also diatomite's shortcoming of low specific surface area, making the nanocomposite to be a promising adsorbent for the treatment of volatile organic compounds.
机译:通过原位水热法制备了具有分级多孔结构的脲醛烷/硅藻土(Allo / Dt)纳米复合材料。这种分层的多孔结构由以下组成:i)最初堆叠的涂层脲醛烷颗粒剩余的微孔; ii)硅藻壳的大孔由于内壁中的Allophane颗粒的填充而转变而形成的介孔,和iii)硅藻壳的大孔被保留。 Allo / Dt纳米复合材料中脲丙烷颗粒的涂层量为59.1%,比表面积为155.9 m(2)/ g,大大高于硅藻土的比表面积(17.9 m(2)/ g)。研究了Allo / Dt纳米复合材料的苯吸附性能及相关的吸附机理。苯的动态吸附容量为121.6 mg / g,而合成脲醛烷则为105.9 mg / g,这是由于分层多孔结构提供了足够的吸附空间。此外,Allo / Dt纳米复合材料由于改善了分散性,因此在涂层的Allophane颗粒的中孔中表现出更高的苯吸附效率。这些结果表明,Allo / Dt纳米复合材料的制备工艺不仅可以克服别铝硅石的聚集,而且还可以克服硅藻土比表面积低的缺点,使纳米复合材料成为用于挥发性有机化合物处理的有前景的吸附剂。

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