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首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Effect of hydrogenative regeneration on the activity of beta and Pt-Beta zeolites during the transalkylation of toluene with 1,2,4-trimethylbenzene
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Effect of hydrogenative regeneration on the activity of beta and Pt-Beta zeolites during the transalkylation of toluene with 1,2,4-trimethylbenzene

机译:氢化再生对1,2,4-三甲基苯的甲苯烷基化β和Pt-β沸石活性的影响

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摘要

Catalyst deactivation remains a main challenge in the transalkylation process. To develop a cost-effective catalyst, improving the regeneration characteristics of Beta and Pt-Beta catalysts was investigated. Both Beta and Pt-Beta catalysts were studied in transalkylation in the presence of hydrogen. The regeneration process was carried out using hydrogen for four cycles of operation (30 h on stream per cycle). A Pt-Beta catalyst with enhanced regeneration and activity characteristic relative to the parent materials is presented, and found to be stable, with the activity fully restored by regeneration with hydrogen at 500 degrees C. The activity of the parent Beta dropped gradually after each cycle suggesting that the hydrogen alone at 500 degrees C was insufficient in removing the coke formed during the reaction. The drop in activity was attributed to the disappearance of Bronsted acid sites over the spent Beta catalyst due to the growth of coke molecules trapped in the zeolite micropores leading to the formation of highly polyaromatic molecules blocking those active sites. This limitation can be effectively overcome by platinum addition which enhanced the removal of coke during the regeneration via hydrocracking.
机译:催化剂失活仍然是铁烷基化过程中的主要挑战。为了开发成本效益的催化剂,研究了研究β和PT-β催化剂的再生特征。在氢气存在下,在烷基化中研究了β和Pt-β催化剂。使用氢气进行再生过程进行四个循环的操作(每周循环流30小时)。提出了具有增强的再生和活性特性相对于母体材料的PT-β催化剂,发现是稳定的,通过在500℃下通过再生进行完全恢复的活性。在每个循环后母体β的活性逐渐下降表明,在500℃下单独的氢不充分地除去在反应过程中形成的焦炭。由于在沸石微孔中捕获的焦炭分子的生长导致形成高度多芳族分子的焦炭分子的生长,因此活性下降归因于花β催化剂上的刚性β催化剂的消失。通过铂添加可以有效地克服这种限制,其通过加氢裂化增强了再生过程中的焦炭去除。

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