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The Synthesis of YNU-5 Zeolite and Its Application to the Catalysis in the Dimethyl Ether-to-Olefin Reaction

机译:YNU-5沸石的合成及其在二甲醚与烯烃反应中的催化作用

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摘要

During prior investigations of the synthesis of the novel zeolite YNU-5 ( ), it was found that a very slight amount of an impurity phase contaminated the desired zeolitic phase. This impurity was very often ZSM-5 ( ). The phase composition was determined to be sensitive to the water in the synthesis mixture, and it was possible to obtain a pure phase and also to intentionally generate a specific impurity phase. In the present work, trials based on the dimethyl ether-to-olefin (DTO) reaction using a fixed-bed downflow reactor were performed to assess the effect of the purity of YNU-5 on its catalytic performance. Dealuminated pure YNU-5 exhibited rapid deactivation due to coking at time on stream (TOS) values exceeding 5 min. Surprisingly, this deactivation was greatly suppressed when the material contained a trace amount of ZSM-5 consisting of nano-sized particles. The formation of ZSM-5 nanoparticles evidently improved the performance of the catalytic system during the DTO reaction. The product distributions obtained from this reaction using highly dealuminated and very pure YNU-5 resembled those generated by 12-ring rather than 8-ring zeolite catalysts. The high selectivity for desirable C3 and C4 olefins during the DTO reaction over YNU-5 is beneficial.
机译:在对新型沸石YNU-5()的合成进行的先前研究中,发现非常少量的杂质相污染了所需的沸石相。这种杂质通常是ZSM-5()。确定相组成对合成混合物中的水敏感,并且有可能获得纯相并且也有意产生特定的杂质相。在当前的工作中,进行了基于二甲苯醚-烯烃(DTO)反应的固定床下流反应器试验,以评估YNU-5纯度对其催化性能的影响。由于在运行时间(TOS)值超过5分钟的焦化,脱铝的纯YNU-5表现出快速失活。令人惊讶地,当材料包含痕量的由纳米级颗粒组成的ZSM-5时,这种失活被大大抑制。 ZSM-5纳米颗粒的形成明显改善了DTO反应过程中催化体系的性能。使用高度脱铝且非常纯的YNU-5从该反应中获得的产物分布类似于由12环而不是8环沸石催化剂产生的分布。在YTO-5上的DTO反应过程中,对所需的C3和C4烯烃的高选择性是有益的。

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