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Butene catalytic cracking to ethylene and propylene on mesoporous ZSM-5 by desilication

机译:丁烯在中孔ZSM-5上通过脱硅催化裂解为乙烯和丙烯

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摘要

Mesopore ZSM-5 was prepared by alkali treatment of parent ZSM-5 zeolite and applied for butene catalytic cracking. The zeolite was treated in the NaOH solutions with different concentrations at 85℃. XRD showed that the intrinsic MFI structure of ZSM-5 zeolite was preserved and corresponding crys-tallinity remained unchangeableness when ZSM-5 was treated with low concentration NaOH solutions. However, excessive NaOH led to the destruction of zeolite structure. The BET surface area increased obviously after desilication, and the N_2 adsorption/desorption curves indicated a number of mesopores generation. The experiment of butene catalytic cracking was carried out in a fixed-bed to investigate the influence of mesopores. The results showed that catalytic performances can be greatly improved through introducing the mesopores into parent ZSM-5 by alkali treatment. Highest yield of ethylene plus propylene were obtained when the treated concentration of NaOH solution is 0.1-0.2 M.
机译:中孔ZSM-5是通过对母体ZSM-5沸石进行碱处理而制备的,并用于丁烯催化裂化。在85℃的不同浓度的NaOH溶液中处理了该沸石。 X射线衍射表明,当用低浓度NaOH溶液处理ZSM-5时,ZSM-5沸石的固有MFI结构得以保留,并且相应的结晶度保持不变。但是,过量的NaOH导致沸石结构的破坏。脱硅后BET表面积明显增加,并且N_2吸附/解吸曲线表明产生了许多中孔。在固定床上进行丁烯催化裂化实验,以研究中孔的影响。结果表明,通过碱处理将介孔引入母体ZSM-5可以大大提高催化性能。当NaOH溶液的处理浓度为0.1-0.2 M时,可获得最高的乙烯加丙烯收率。

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