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首页> 外文期刊>Chemical Engineering & Technology: Industrial Chemistry -Plant Equipment -Process Engineering -Biotechnology >A Scalable Preparation Method for SI LP and SCILL Ionic Liquid Thin-Film Materials
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A Scalable Preparation Method for SI LP and SCILL Ionic Liquid Thin-Film Materials

机译:SI LP和SCILL离子液体薄膜材料的可扩展制备方法

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Supported ionic liquid phase (SILP) catalysts consist of a homogeneous catalyst that is dissolved in an ionic liquid and dispersed on a porous support material. This immobilization technique yields solid catalysts that can be applied in continuous gas phase processes. Recently, several successful applications have been presented that could possibly lead to a commercialization of this promising class of novel materials. The state-of-the-art preparation method uses an incipient wetness-type impregnation of the support material by a solution of catalyst, ionic liquid, and a helper solvent, followed by subsequent removal of the helper solvent in vacuo. Typically, this removal is carried out in a rotary evaporator, thus being limited in batch size. Similarly, the so-called supported catalysts with ionic liquid layer (SCILL) consist of an ionic liquid layer on top of a traditional heterogeneous catalyst, which can be prepared in a similar way. In this work, a novel preparation method for SILP catalysts is presented that is scalable for larger batches, as required for industrial use. Different types of support materials such as powders, spheres, agglomerates, and extrudates were successfully impregnated by the novel fluidized-bed impregnation method and the distribution of the ionic liquid and catalyst was analyzed by scanning electron microscopy with energy-dispersive X-ray spectroscopy measurements.
机译:负载型离子液体(SILP)催化剂由均相催化剂组成,该催化剂溶解在离子液体中并分散在多孔载体材料上。这种固定化技术产生可用于连续气相工艺的固体催化剂。近来,已经提出了几种成功的应用,它们可能导致这种有前途的新型材料的商业化。现有技术的制备方法使用通过催化剂,离子液体和辅助溶剂的溶液对载体材料进行初期润湿型浸渍,然后在真空中随后除去辅助溶剂。通常,这种去除是在旋转蒸发器中进行的,因此批次大小受到限制。类似地,所谓的具有离子液体层的负载型催化剂(SCILL)由位于传统多相催化剂之上的离子液体层组成,该催化剂可以以类似方式制备。在这项工作中,提出了一种用于SILP催化剂的新颖制备方法,该方法可扩展用于工业用途所需的较大批量。通过新型流化床浸渍方法成功地浸渍了各种类型的载体材料,例如粉末,球体,附聚物和挤出物,并通过扫描电子显微镜和能量色散X射线光谱法分析了离子液体和催化剂的分布。

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