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The distillation and volatility of ionic liquids.

机译:离子液体的蒸馏和挥发性。

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It is widely believed that a defining characteristic of ionic liquids (or low-temperature molten salts) is that they exert no measurable vapour pressure, and hence cannot be distilled. Here we demonstrate that this is unfounded, and that many ionic liquids can be distilled at low pressure without decomposition. Ionic liquids represent matter solely composed of ions, and so are perceived as non-volatile substances. During the last decade, interest in the field of ionic liquids has burgeoned, producing a wealth of intellectual and technological challenges and opportunities for the production of new chemical and extractive processes, fuel cells and batteries, and new composite materials. Much of this potential is underpinned by their presumed involatility. This characteristic, however, can severely restrict the attainability of high purity levels for ionic liquids (when they contain poorly volatile components) in recycling schemes, as well as excluding their use in gas-phase processes. We anticipate that our demonstration that some selected families of commonly used aprotic ionic liquids can be distilled at 200-300 degrees C and low pressure, with concomitant recovery of significant amounts of pure substance, will permit these currently excluded applications to be realized.
机译:人们普遍认为,离子液体(或低温熔融盐)的定义特征是它们不施加可测量的蒸气压,因此无法蒸馏。在这里,我们证明这是没有根据的,许多离子液体可以在低压下蒸馏而不会分解。离子液体代表仅由离子组成的物质,因此被视为非挥发性物质。在过去的十年中,对离子液体领域的兴趣激增,为生产新的化学和萃取工艺,燃料电池和电池以及新的复合材料带来了众多的知识和技术挑战和机遇。假定的不稳定性会大大增强这种潜力。但是,此特性会严重限制离子液体在循环方案中(如果它们包含易挥发的成分)达到高纯度水平,并且将其排除在气相工艺之外。我们预计,我们的示范表明某些选定的常用非质子离子液体家族可以在200-300摄氏度和低压下蒸馏,并伴随回收大量的纯物质,这将使这些目前被排除的应用得以实现。

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