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首页> 外文期刊>Journal of the air & waste management association >Applying Hexagonal Nanostructured Zeolite Particles for Acetone Removal
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Applying Hexagonal Nanostructured Zeolite Particles for Acetone Removal

机译:六角形纳米沸石分子筛的应用

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摘要

This study examines the performance of a new adsorbent, hexagonal nanostructured zeolite particles (HNZP) for acetone adsorption and compares the results with that of commercial mobil synthetic zeolite-5 (ZSM-5) type zeolite. The HNZP is a pure siliceous adsorbent with different values of pore diameter and surface area being adjustable by the manufacturing condition. The results indicate that a slight increase in the average pore diameter (d) of HNZP from 2 to 2.5 nm leads to an increase in the acetone adsorption capacity, although its surface area is decreased, in which case (d = 2.5 nm) the adsorption capacity of fresh HNZP is better than that of ZSM-5 zeolite. Even for the fresh HNZP (d = 2 nm) of which the adsorption capacity is less than that of the ZSM-5 zeolite at relative humidity (RH) of 0%, its adsorption capacity is not deteriorated after repeated regeneration, but the adsorption capacity of regenerated ZSM-5 zeolite decays markedly. Thus, after only one regeneration, the adsorption capacity of HNZP (d = 2 nm) becomes better than that of the ZSM-5 zeolite. The decrease in the adsorption capacity of regenerated ZSM-5 zeolite might be because of its aluminum content that catalyzes the acetone into coke and, thus, blocks the adsorption sites. Furthermore, result on the moisture effect shows that because the pure siliceous HNZP was more hydrophobic than the ZSM-5 zeolite, the acetone adsorption efficiency of fresh HNZP (d = 2 nm) is better than that of ZSM-5 zeolite at RH = 50%.
机译:这项研究检查了一种新型的吸附剂,六角形纳米结构沸石颗粒(HNZP)对丙酮的吸附性能,并将其结果与市售的移动合成沸石5(ZSM-5)型沸石进行了比较。 HNZP是一种纯硅质吸附剂,其孔径和表面积的不同值可以根据制造条件进行调整。结果表明,HNZP的平均孔径(d)从2 nm略微增加到2.5 nm会导致丙酮的吸附容量增加,尽管其表面积会减小,在这种情况下(d = 2.5 nm)吸附新鲜的HNZP的容量优于ZSM-5沸石。即使在相对湿度(RH)为0%时,其吸附容量小于ZSM-5沸石的新鲜HNZP(d = 2 nm),其吸附容量在反复再生后不会降低,但吸附容量再生的ZSM-5沸石的腐烂显着。因此,仅一次再生后,HNZP(d = 2 nm)的吸附能力变得优于ZSM-5沸石。再生ZSM-5沸石的吸附能力下降可能是由于其铝含量将丙酮催化成焦炭,从而阻止了吸附位点。此外,水分效应的结果表明,由于纯硅质HNZP的疏水性高于ZSM-5沸石,因此在RH = 50时,新鲜HNZP(d = 2 nm)的丙酮吸附效率优于ZSM-5沸石。 %。

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