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Highly efficient and greener synthesis of TS-1 in a flow system by recycling the mother liquid

机译:通过回收母液,通过回收母液高效和更环保的TS-1合成TS-1

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摘要

In this work, a highly efficient synthetic route for TS-1 zeolites has been developed in a flow system, a greener preparation method is further proposed by recycling the mother liquid. The prepared TS-1 by recycling the mother liquid contained no extraframework Ti species with uniform size and high crystallization as well as excellent catalytic performance for cyclohexanone ammoximation in the flow system containing a tubular reactor and an autoclave. As the fast heating rate of flow chemical process, the crystallization time was shortened to 20 min at 175 degrees C. Due to the short crystallization, hardly TPAOH participated in the Hofmann elimination reaction except for the structure-directing usage. The full recycle of remained TPAOH in the mother liquid was reused after being concentrated via vacuum distillation, and this novel recycling technology could have 98.5% TPAOH utilization as well as 98.3% TS-1 yield. These results indicate that the flow chemical process plays a key role in the new greener approach for the TS-1 synthesis.
机译:在这项工作中,在流动系统中开发了一种高效的TS-1沸石的合成途径,通过再循环母液进一步提出更绿色的制备方法。通过再循环母液的制备的TS-1含有具有均匀尺寸和高结晶的预制态Ti物种,以及在含有管状反应器和高压釜的流动系统中的环己酮氨化的优异催化性能。作为流动化学过程的快速加热速率,结晶时间在175摄氏度下缩短至20分钟。由于结晶短,几乎没有参与Hofmann消除反应,除了结构引导的使用。通过真空蒸馏浓缩后重复使用母液中剩余的TPAOH的完全回收,并且这种新的再循环技术可以具有98.5%的TPAOH利用率,以及98.3%TS-1产率。这些结果表明,流化学过程在新的TS-1合成的新绿种方法中起着关键作用。

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