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Superior catalyst recycling in surfactant based multiphase systems - Quo vadis catalyst complex?

机译:基于表面活性剂的多相系统中优异的催化剂回收-Qu Vadis催化剂配合物?

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Microemulsion systems are smart solvent systems which can be applied in homogeneous catalysis. We investigate these multiphase systems to exploit their characteristics for catalytic gas/liquid reactions and processes in aqueous media. One critical aspect from an economic perspective is the quantitative recycling of the catalyst complex dissolved in the multiphase system. Therefore, it is important to know the distribution of the catalyst complex in each of the single phases. In this contribution we analyse the different parameters/factors that may have an influence on the distribution of catalyst complexes in microemulsion systems, e.g. temperature, type of ligand, structure of surfactant, and chain length of surfactant. Afterwards, the derived information is used for the design of a real, industry-oriented application: hydroformylation of long chained alkenes. Hereby, special attention is given to the separation step of a process, which is performed after a homogeneously catalyzed reaction step in a microemulsion system. Process and economic constraints are briefly outlined and compared with operation data, aiming for the reuse of the catalyst in the reaction step and reduced leaching into product streams, even in the case of operational disturbances and shifts in the catalyst distribution. (C) 2015 Elsevier B.V. All rights reserved.
机译:微乳液系统是智能溶剂系统,可用于均相催化。我们研究这些多相系统,以利用其在水性介质中催化气/液反应和过程的特性。从经济角度来看,一个关键方面是定量溶解在多相系统中的催化剂配合物的循环利用。因此,重要的是要知道催化剂配合物在每个单相中的分布。在这一贡献中,我们分析了可能对微乳液体系中催化剂配合物的分布有影响的不同参数/因素。温度,配体类型,表面活性剂的结构和表面活性剂的链长。之后,派生的信息将用于设计一个实际的,面向行业的应用程序:长链烯烃的加氢甲酰化。因此,应特别注意该方法的分离步骤,该分离步骤是在微乳液体系中均相催化的反应步骤之后进行的。简要概述了过程和经济方面的限制条件,并将其与操作数据进行了比较,目的是即使在操作受到干扰和催化剂分布发生变化的情况下,也可以在反应步骤中重新使用催化剂,并减少渗入产物流中。 (C)2015 Elsevier B.V.保留所有权利。

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