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首页> 外文期刊>The Journal of Chemical Thermodynamics >Development of the Knudsen effusion methodology for vapour pressure measurements of low volatile liquids and solids based on a quartz crystal microbalance
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Development of the Knudsen effusion methodology for vapour pressure measurements of low volatile liquids and solids based on a quartz crystal microbalance

机译:基于石英晶体微稳定的低挥发性液体和固体蒸气压测量的knudsen积分方法的开发

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摘要

The principle of operation, concepts and recent developments of the Knudsen effusion methodology for the vapour pressure measurement of ionic liquids and other low volatile liquids and solids are presented. A new version of a Knudsen effusion apparatus, coupled with a quartz crystal microbalance, which is used for a reliable measurement of the mass flow from a Knudsen effusion cell, is described in detail. In the new system, designed and optimized for the vapour pressure measurement of ionic liquids, it is possible to measure the vapour pressure of small samples using very short effusion time over a wide temperature range. This apparatus allows the vapour pressure measurements using step-temperature and continuous-temperature modes that have the advantage of reducing the measurement time interval and minimize the effect of a sample degradation. A significant number of improvements on the performance and capability for the vapour pressure measurements of ionic liquids has been implemented:in situtemperature control of the vacuum chamber for a better stability of background signal; a new design of a stainless steel effusion cell to decrease the reactivity and sample decomposition; dual temperature control ensuring a positive temperature gradient between bottom and top of the cell in order to avoid the ionic liquids condensation on the effusion cell lid and significantly improved stability of the time frequency derivative at high temperatures; Installation and test of a mass flow tube, on the top of the outlet of the cell lid oven block in order to increase the mass sensitivity coefficient of QCM. The tests and benchmarking concerning the measurement of vapour pressures of ionic liquids performed with [C2mim][NTf2] indicate that the described Knudsen effusion apparatus and methodology is able to produce reproducible and reliable experimental vapour pressure data with an accuracy and quality similar than the achieved in the measurements with low volatile solids. The eff
机译:介绍了对离子液体和其他低挥发性液体和固体蒸汽压力测量的Chaudsen积分方法的操作原理,概念和近期发展。详细描述了与石英晶体微稳定的knudsen积分装置的新版本,其用于可靠地测量来自Chaudsen积分电池的质量流量。在新系统中,为离子液体的蒸气压测量设计和优化,可以在宽温度范围内使用非常短的积分时间来测量小样品的蒸气压。该装置允许使用具有降低测量时间间隔的优点和最小化样品劣化的效果的蒸气压测量。已经实施了对离子液体蒸气压测量的性能和能力的大量改进:在真空室的SitueuteMperature控制中,用于更好的背景信号稳定性;一种不锈钢积液单元的新设计,以降低反应性和样品分解;双温度控制确保电池的底部和顶部之间的正温度梯度,以避免离子液体在活力细胞盖上的冷凝,并在高温下显着提高时频衍生物的稳定性;质量流管的安装和测试,在电池盖炉块的出口的顶部,以提高QCM的质量敏感性系数。关于测量用[C2mim] [NTF2]进行的离子液体蒸汽压力测量的测试和基准表明所描述的knudsen积分装置和方法能够产生比实现的准确性和质量的可重复和可靠的实验蒸气压数据在低挥发性固体的测量中。 eff.

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