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Discovery of a reactive azeotrope

机译:反应性共沸物的发现

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Mixtures are azeotropic if they can be distilled (or condensed) without a change of composition. The existence of azeotropes in multicomponent mixtures in the absence of chemical reactions is well understood phenomenologically and theoretically. Azeotropes place a fundamental limit on the compositions attainable in mixtures by fractional distillation, but they can in some cases be 'broken' by carrying out chemical reaction and separation simultaneously rather than sequentially. Here we report the discovery of a boiling state of constant composition and temperature in a mixture of acetic acid, isopropanol, isopropyl acetate and water that is simultaneously in both reaction and phase equilibrium. These states, which we call reactive azeotropes, were predicted recently. Without reaction, the mixture exhibits three two-component azeotropes, one three-component azeotrope but no four-component azeotrope; the last appears only under equilibrium reaction conditions. These findings may constrain technologies in which reaction and separation are conducted simultaneously, for example by limiting the conditions under which an azeotrope can be broken by chemical reactions to yield a high-purity product. In other cases the presence of a reactive azeotrope may be advantageous.
机译:如果混合物可以蒸馏(或冷凝)而不改变组成,则它们是共沸的。在现象学和理论上都很好理解在没有化学反应的情况下多组分混合物中共沸物的存在。共沸物对通过分馏得到的混合物中的组合物有根本的限制,但是在某些情况下,它们可以通过同时进行化学反应和分离而不是顺序进行而被“破坏”。在这里,我们报告了在乙酸,异丙醇,乙酸异丙酯和水的混合物中同时处于反应和相平衡状态的恒定组成和温度的沸腾状态的发现。这些状态,我们称为反应性共沸物,是最近预测的。在没有反应的情况下,该混合物表现出三种两组分共沸物,一种为三组分共沸物,而没有四组分共沸物。最后一个仅在平衡反应条件下出现。这些发现可能会限制同时进行反应和分离的技术,例如,限制通过化学反应可破坏恒沸物以产生高纯度产物的条件。在其他情况下,反应性共沸物的存在可能是有利的。

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