Kempin Maresa Vivien, Drews Anja
Department II, Chemical Engineering in Life Science Engineering, HTW Berlin-University of Applied Sciences, Wilhelminenhofstraße 75A, 12459 Berlin, Germany.
Membranes (Basel). 2021 Nov 10;11(11):864. doi: 10.3390/membranes11110864.
Pickering emulsions (PEs) have received increasing interest for their application in catalytic multiphase reactions. Organic solvent nanofiltration of PEs was shown to be a promising procedure for efficient and effective catalyst recycling. In this work, a systematic parameter study to identify the main influencing parameters on PE filtration was conducted for a large variety of PE compositions for the first time. In addition to temperature, only the type of organic solvent significantly influenced the filtration performance, which could be mathematically modeled via a combination of the solution-diffusion and the resistance in the series model. Particle type and concentration, dispersed phase fraction and the presence of reaction (by-)products did not show any significant impact on the permeability. The stirrer speed only became important when emulsions stabilized by particles without the tendency to form 3D network structures were filtered in long-term filtration experiments. These results pave the way towards the application of PE membrane filtration for catalyst recovery in continuous liquid/liquid multiphase reactions and enable broad operation windows. As the mechanical separation of PEs was shown to be a very robust process, the emulsion composition can now be tuned to meet the needs of the reaction without any (significant) loss in filtration performance.
皮克林乳液(PEs)因其在催化多相反应中的应用而受到越来越多的关注。已证明对PEs进行有机溶剂纳滤是一种高效且有效的催化剂回收的有前景的方法。在这项工作中,首次针对多种PE组成进行了系统的参数研究,以确定影响PE过滤的主要参数。除温度外,只有有机溶剂的类型对过滤性能有显著影响,这可以通过溶液扩散和串联模型中的阻力相结合进行数学建模。颗粒类型和浓度、分散相分数以及反应(副)产物的存在对渗透率没有任何显著影响。只有在长期过滤实验中过滤由没有形成三维网络结构趋势的颗粒稳定的乳液时,搅拌速度才变得重要。这些结果为在连续液/液多相反应中应用PE膜过滤回收催化剂铺平了道路,并实现了较宽的操作窗口。由于已证明PEs的机械分离是一个非常稳健的过程,现在可以调整乳液组成以满足反应需求,而不会有任何(显著的)过滤性能损失。