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Recycling nanoparticles stabilized in water-in-CO2 microemulsions for catalytic hydrogenations

机译:回收在 CO2 微乳液中稳定的纳米颗粒,用于催化加氢

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摘要

Catalytic hydrogenations of olefins took place effectively in supercritical CO2 with Pd-0 nanoparticles dispersed in the fluid phase using a water-in-CO2 microemulsion consisting of water, sodium bis(2-ethylhexyl) sulfosuccinate (ACT) as a surfactant, and 1-octanol as a cosolvent. The hydrogenated products dissolved in supercritical CO2 can be separated from the octanol solution containing ACT microemulsions with Pd-0 nanoparticles by phase separation (upper phase, supercritical CO2 with hydrogenated products; lower phase, 1-octanol containing AOT microemulsions with Pd-0 nanoparticles) accompanied by reduction Of CO2 pressure. After collecting the hydrogenated products by flowing the upper CO2 phase to a collection vessel, the Pd-0 nanoparticles remaining in the lower phase can be redispersed into supercritical CO2 by pressurizing the system to a pressure where a homogeneous phase is attained. The redispersed nanoparticles can be reused as catalysts for the next runs of the hydrogenations. Triphenylethylene was hydrogenated to 1, 1,2triphenylethane at conversions of 100 (1st-3rd runs), >99 (4th run), and >96 (5th run) using the recycled Pd-0 nanoparticles. The feasibility of using other organic solvents as cosolvents is also studied in the present paper.
机译:烯烃的催化加氢在超临界CO2中有效进行,Pd-0纳米颗粒分散在流相中,使用由水、双(2-乙基己基)磺基琥珀酸钠(ACT)作为表面活性剂和1-辛醇作为助溶剂组成的微乳液。溶解在超临界CO2中的氢化产物可以通过相分离(上相,超临界CO2与氢化产物;下相,含AOT的1-辛醇微乳液与Pd-0纳米颗粒)相分离,并伴有CO2的还原压力。通过将上层 CO2 相流向收集容器来收集氢化产物后,通过将系统加压到达到均相相的压力,可以将剩余在下层相中的 Pd-0 纳米颗粒重新分散到超临界 CO2 中。重新分散的纳米颗粒可以重新用作下一次氢化运行的催化剂。使用回收的 Pd-0 纳米颗粒将三苯乙烯氢化为 1,1,2 三苯乙烷,转化率为 100%(第 1-3 次运行)、>99%(第 4 次运行)和 >96%(第 5 次运行)。本文还研究了使用其他有机溶剂作为助溶剂的可行性。

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