Adsorptive desulfurization over hierarchical beta zeolite by alkaline treatment

Fuping Tian, Xiaojian Yang, Yanchun Shi, Cuiying Jia, Yongying Chen
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引用次数: 31

Abstract

Hierarchical beta zeolites with SiO2/Al2O3 molar ratios of 16 to 25 were obtained by alkaline treatment in NaOH solution. The effects of treatment temperature on crystallinity, textural properties and chemical composites were studied by XRD, N2 sorption, FT-IR and XRF techniques. The desulfurization performance of parent and alkaline-treated beta zeolites was investigated by static absorption in four model fuels, containing four sulfur compounds of different molecular sizes like thiophene (TP), 3-methylthiophene (3-MT), benzothiophene (BT) and dibenzothiophene (DBT), respectively. The crystallinity was observed to be successfully maintained when the treatment temperature was below 50 °C. Mesoporosity of beta zeolite was evidently developed with alkaline treatment. The formation of mesopore remarkably improved the desulfurization performance for TP, 3-MT, BT and DBT, especially for DBT with larger molecular diameter. Though the addition of toluene in the model fuels resulted in a significant drop of the desulfurization performance of mesoporous beta zeolite, the introduction of cerium ions to some extent mitigated the effect of toluene, which means that both the adsorbents porous structure and the adsorption mode are responsible for the desulfurization performance. The adsorbent of cerium ion-exchanged mesoporous beta showed about 80% recovery of desulfurization after the first regeneration.

碱法处理分级沸石吸附脱硫
在NaOH溶液中进行碱性处理,得到了SiO2/Al2O3摩尔比为16 ~ 25的分级沸石。采用XRD、N2吸附、FT-IR和XRF技术研究了处理温度对结晶度、织构性能和化学复合材料的影响。采用静态吸附的方法,研究了母沸石和碱处理沸石在四种模型燃料中的脱硫性能。四种模型燃料分别含有噻吩(TP)、3-甲基噻吩(3-MT)、苯并噻吩(BT)和二苯并噻吩(DBT)四种不同分子大小的含硫化合物。当处理温度低于50℃时,结晶度得以保持。碱法处理显著提高了沸石的介孔性。介孔的形成显著提高了TP、3-MT、BT和DBT的脱硫性能,特别是对于分子直径较大的DBT。虽然模型燃料中加入甲苯导致介孔分子筛的脱硫性能明显下降,但铈离子的引入在一定程度上减轻了甲苯的影响,说明吸附剂的多孔结构和吸附方式对脱硫性能都有影响。铈离子交换介孔β吸附剂在第一次再生后脱硫回收率约为80%。
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来源期刊
Journal of Natural Gas Chemistry
Journal of Natural Gas Chemistry 化学-工程:化工
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