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首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Preparation of mesoporous Beta zeolite by fluoride treatment in liquid phase. Textural, acid and catalytic properties
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Preparation of mesoporous Beta zeolite by fluoride treatment in liquid phase. Textural, acid and catalytic properties

机译:液相中氟化物处理制备介孔β沸石。 纹理,酸和催化性能

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摘要

Beta zeolite (nominal Si/Al = 19) has been treated with HF/NH4F solutions under different HF concentration, temperature and reaction time. It has been found that the crystallinity of the resulting materials is > 80% for HF concentration up to 0.5 M, but it drops below this value for the most severe condition (HF = 1 M and 40 degrees C). The treatment dissolves selectively aluminum, in such a way that the Si/Al increases to 34 for the most attacked material. As a consequence of these treatments, the mesopore volume increases by up to 80% respect to the parent Beta for samples retaining high crystallinity, corresponding to newly created mesopores in the range of 5-20 nm. Detailed STEM-HAADF studies reveal that the chemical attack of the Beta crystals by the acidic fluoride solution progresses slowly along the crystals, leaving behind highly corroded and porous "sponge-like" crystals where the structure of the zeolite is nevertheless retained. Pyridine adsorption/desorption experiments show that a fraction of the extraframework Al present in the starting Beta is reinserted in framework sites, a process that would be mediated by aluminum-fluoride soluble species. As a consequence of this process, the Bronsted/Lewis ratio of the strong acid sites increases from 1 in the starting Beta to close to 3. The concentration of total and strong Bronsted acid sites associated to framework Al increases with the treatment. However, the activity of the samples in the isomerization/disproportionation of m-xylene is lower than that of the parent Beta zeolite, a result that could be due to the higher B/L ratio.
机译:β沸石(标称Si / Al = 19)已在不同的HF浓度,温度和反应时间下用HF / NH 4 F溶液处理。已经发现所得材料的结晶度> 80%,对于HF浓度高达0.5μm,但它低于该值的最严重的条件(HF = 1m和40℃)。该处理选择性地溶解铝,使得Si / Al增加到最良好的攻击材料的34。由于这些处理的结果,中孔体积增加了高达80%的对母β进行保留高结晶度的样品,对应于5-20nm范围内的新产生的中孔。详细的茎海德研究表明,β晶体通过酸性氟化物溶液的化学侵蚀沿晶体缓慢进行,留下高度腐蚀性的和多孔的“海绵状”晶体,其中沸石的结构仍然保持。吡啶吸附/解吸实验表明,在起始β中存在的预曲线Al的一部分在骨架部位中重新插入,该方法将由氟化铝可溶性物质介导的方法。由于该过程的结果,强酸位点的抗正囊/路易斯比率从起始β的1增加到接近3.与框架Al相关的总和强桥酸位点的浓度随治疗而增加。然而,在M-二甲苯的异构化/歧化中的样品的活性低于母β沸石的活性,结果是由于较高的B / L比率。

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