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首页> 外文期刊>Journal of Chemical and Engineering Data: the ACS Journal for Data >Exploiting Phase Behavior for Coupling Homogeneous Reactions with Heterogeneous Separations in Sustainable Production of Pharmaceuticals
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Exploiting Phase Behavior for Coupling Homogeneous Reactions with Heterogeneous Separations in Sustainable Production of Pharmaceuticals

机译:在药物可持续生产中利用均相反应与异构分离耦合的相行为

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John Prausnitz was never content to measure new data solely because the data were new. He always had an application in mind-a separation or even a process that required the data for implementation. We present here an advance in using designed changes in phase equilibria to enable the facile recovery and recycle of homogeneous catalysts. We show a new application of organic-aqueous tunable solvents (OATS) to run homogeneous reactions (fast rates and high selectivities) followed by facile and efficient heterogeneous separations and the recycle of the homogeneous catalysts. This is done by using CO2 to manipulate the phase behavior of monophasic organic-water mixtures to form heterogeneous organic-rich and aqueous-rich phases. The example shown is the hydroformylation of hydrophobic p-methylstyrene catalyzed by rhodium catalyst to which is attached a hydrophilic phosphorus ligand. The OATS method increases the conversion rate of styrene to the aldehyde products by an order of magnitude compared to heterogeneously reported reactions. Also, the selectivity toward the branched aldehyde (the desired product) increases by 30 96. The hydrophobic product partitions into the organic-rich phase with more than 99 % removal efficiency, and the hydrophilic catalyst is retained in the aqueous-rich phase with 99.9 % efficiency. In addition, we recycle the catalyst for five consecutive reactions without significant loss of catalytic activity.
机译:John Prausnitz从来不满足于仅仅因为数据是新的而测量新数据。他总是在脑海中有一个应用程序-一个分离甚至一个需要数据才能实现的过程。我们在这里介绍了利用设计的相平衡变化来实现均相催化剂的简便回收和再循环方面的进展。我们展示了有机-水性可调溶剂(OATS)在进行均相反应(快速速率和高选择性),随后进行简便有效的非均相分离以及均相催化剂的再循环方面的新应用。这是通过使用CO2来控制单相有机-水混合物的相行为以形成均相的富含有机相和富含水的相而完成的。所示的例子是由铑催化剂催化的疏水性对甲基苯乙烯的加氢甲酰化反应,铑催化剂上附着有亲水性磷配体。与非均相报道的反应相比,OATS方法将苯乙烯向醛产物的转化率提高了一个数量级。另外,对支链醛(所需产物)的选择性提高了3096。疏水产物分配到富有机相中的去除率超过99%,亲水性催化剂以99.9保留在富水相中效率百分比。另外,我们将催化剂循环使用五个连续的反应,而催化活性没有明显损失。

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