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A review of experimental methods for solid solubility determination in cryogenic systems

机译:低温系统中固溶度测定的实验方法综述

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摘要

Over the past years, there have been a number of serious explosions in air industry, which have resulted in workers injuries and fatalities. At the same time, there has been an increase in the use of air separation products for industrial activities. The quality of air entering an air separation plant is of crucial importance for its safe and reliable operation and the interest in the solubility data of solids in cryogenic liquid solvents is closely connected to the problem of impurities accumulation in the process plant and storage tanks. Such accumulations, especially in liquid oxygen, may cause fouling and blockage in heat exchangers and pipelines and they may eventually cause serious explosions. For this reason the air contaminants composition in liquid oxygen must be determined with great precision. This paper aims at reviewing experimental methods for determining the solubility of solid compounds that may be present in the cryogenic liquefaction processing of air distillation. A review of the literature data on solubility of solids in liquid oxygen and nitrogen is included as well. Emphasis is given to the difficulties in setting-up measuring apparatuses working at extreme conditions, i.e. low compositions and low temperatures.
机译:在过去的几年中,航空业发生了许多严重爆炸,导致工人受伤和死亡。同时,用于工业活动的空气分离产品的使用有所增加。进入空气分离设备的空气质量对其安全可靠的运行至关重要,而对固体在低温液体溶剂中的溶解度数据的关注与处理设备和储罐中杂质的积累密切相关。这种积累,特别是在液态氧中的积累,可能在热交换器和管道中造成结垢和阻塞,并最终可能导致严重的爆炸。因此,必须非常精确地确定液氧中的空气污染物成分。本文旨在综述确定空气蒸馏低温液化过程中可能存在的固体化合物溶解度的实验方法。还包括对固体在液态氧和氮中溶解度的文献数据的综述。重点在于设置在极端条件下(即低成分和低温)工作的测量设备的困难。

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