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首页> 外文期刊>Catalysis science & technology >Ethane aromatization and evolution of carbon deposits over nanosized and microsized Zn/ZSM-5 catalysts
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Ethane aromatization and evolution of carbon deposits over nanosized and microsized Zn/ZSM-5 catalysts

机译:乙烷芳构化和演化的碳沉积在纳米尺度和小型化锌/ ZSM-5催化剂

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摘要

Rapid deactivation by coke deposition is the main obstacle of ethane aromatization over Zn/ZSM-5. In this work, using the prepared nanosized Zn/HZSM-5, an almost threefold product yield and significantly improved stability were achieved in comparison with those of the microsized catalyst. XRD and XPS analyses indicated that a higher percentage of reactive [ZnOZn](2+) species was maintained during ethane aromatization over nano-Zn/HZSM-5 than micro-Zn/HZSM-5. In addition, the evolution of carbon deposits over nanosized and microsized Zn/ZSM-5 was investigated during prolonged ethane aromatization reaction using Raman spectroscopy and thermogravimetry measurements. Compared to the microsized catalyst, the nanosized zeolite facilitated the faster escape of light aromatics and the precursors of carbon deposits from the zeolite pores, thus suppressing the accumulation of coke deposits and improving the catalyst stability. Based on the nanosized Zn/HZSM-5, a protocol of isothermal reaction followed by regeneration was developed by periodically removing carbonaceous deposits, and an similar to 25-35% product yield was achieved after 10 reaction-regeneration cycles.
机译:由焦炭沉积是主要的快速失活障碍的乙烷芳构化锌/ ZSM-5。在这个工作中,使用纳米尺度的准备锌/ HZSM-5、产品产量和一个近两倍显著提高稳定实现比较与小型化催化剂。XRD和XPS分析表明更高比例的活性[ZnOZn](2 +)物种保持在乙烷芳构化结束nano-Zn /比micro-Zn HZSM-5 / HZSM-5。碳沉积在纳米尺度的演变和小型化锌/ ZSM-5调查期间长时间使用乙烷芳构化反应拉曼光谱和热重量分析法测量。催化剂,纳米沸石促进了更快的芳烃和逃避的光线从沸石前驱的碳存款毛孔,从而抑制焦炭的积累存款和提高催化剂的稳定性。基于纳米锌/ HZSM-5协议等温反应再生是紧随其后由定期去除碳质存款,一个类似于25 - 35%的产品产量10 reaction-regeneration后实现了吗周期。

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