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Facile synthesis of the DD3R zeolite: performance in the adsorptive separation of buta-1,3-diene and but-2-ene isomers

机译:DD3R沸石的简便合成:丁烯-1,3-二烯和丁-2-烯异构体的吸附分离性能

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摘要

Small pore size and hydrophobic nature of DD3R make this material a unique zeolite with high potential in industrial separation applications. However, the reproducible rapid synthesis of this zeolite is still a problem. In this work, a thorough assessment of different synthetic methods revealed that synthesis reproducibility relies on two main pillars: the use of properly cleaned autoclave liners and the synthesis composition. High quality DD3R crystals are obtained when KOH is used as a cleaning agent, eliminating memory effects, and when KF is used in the synthesis as a mineralizing agent. The effect of fluoride addition is investigated by use of several characterization techniques (13C, 19F and 29Si MAS-NMR and (2D) 29Si–1H correlation spectra), while monitoring the temporal crystallization of DDR. 29Si–1H NMR reveals that template molecules accommodated within the cages are sticking to these 8-ring windows through their amine group. High quality DD3R crystals are applied in the adsorptive separation of buta-1,3-diene and but-2-ene isomers, one of the most energy intensive separations in chemical industry. Mixture separation experiments revealed that the 8-ring apertures of the DD3R cages are only accessible to trans-but-2-ene and buta-1,3-diene, while excluding but-1-ene and cis-but-2-ene molecules, resulting in shape-selective separation in the presence of C4 mixtures.
机译:DD3R的小孔径和疏水特性使其成为独特的沸石,在工业分离应用中具有很高的潜力。然而,这种沸石的可再现的快速合成仍然是一个问题。在这项工作中,对不同的合成方法进行了彻底的评估,发现合成的可重复性取决于两个主要方面:使用适当清洁的高压釜衬里和合成成分。当将KOH用作清洁剂,消除记忆效应以及在合成中使用KF作为矿化剂时,可获得高质量的DD3R晶体。通过使用多种表征技术(13C,19F和29Si MAS-NMR和(2D)29Si-1H相关谱)研究了氟化物添加的影响,同时监测了DDR的时间结晶。 29Si-1H NMR表明,笼子中容纳的模板分子通过其胺基粘附在这些8环窗口上。高质量的DD3R晶体用于1a,3-二烯和2-2-丁烯异构体的吸附分离,这是化学工业中最耗能的分离之一。混合物分离实验表明,DD3R笼的8环孔仅反丁-2-烯和1,3-二丁烯可及,但丁1烯和顺丁2烯分子除外,在存在C4混合物的情况下导致形状选择分离。

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