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Dual-piston pressure swing adsorption system: Instrumentation and characterisation with pure gas experiments

机译:双活塞压力摆幅系统:纯气体实验仪表和表征

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Dual Piston-Pressure Swing Adsorption systems offer the potential for rapid testing of novel adsorbent materials under a wide range of operating conditions. This characterisation of the properties of adsorbents is crucial for the development of efficient adsorption based separation processes. Here the instrumentation and characterisation of a semi-automated DP-PSA system as well as a mathematical model for the analysis of the experiments are presented. In this system each piston is independently controlled by a real-time computer which allows the autonomous running of a series of experiment with different cycle times, compression ratios and flow conditions. The real-time computer also handles the data acquisition from the pressure transducers (absolute and differential) and thermocouples which are placed inside the column. The entire system is enclosed in an oven to control the surrounding temperature and to enable experiments at different temperatures (20-200 degrees C). The small amount of solid material (5-10 g) together with the possibility of fast cycle times (down to 1 Hz) allow the rapid testing of the material under a large number of different conditions. The DP-PSA is demonstrated with two series of experiments: first, empty column experiments showed that the system has a low leak rate and negligible flow resistance between the pistons and column; second, experiments with the column packed with zeolite 13X pellets to validate the mathematical model and to demonstrate the experimental procedure for pure components. (C) 2019 Elsevier Ltd. All rights reserved.
机译:双活塞 - 压力摆幅吸附系统提供了在各种操作条件下快速测试新型吸附材料的潜力。这种吸附剂性质的表征对于显影有效吸附的分离过程至关重要。这里提出了半自动DP-PSA系统的仪表和表征,以及用于分析实验的数学模型。在该系统中,每个活塞由实时计算机独立控制,该实时计算机允许具有不同循环时间,压缩比和流动条件的一系列实验的自主运行。实时计算机还处理从压力传感器(绝对和差分)和热电偶的数据采集,该热电偶放置在柱内。整个系统封闭在烤箱中以控制周围温度,并在不同温度(20-200摄氏度)下实现实验。少量的固体材料(5-10g)与快速循环时间(下降至1 Hz)的可能性允许在大量不同条件下快速测试材料。 DP-PSA用两种一系列实验证明:首先,空柱实​​验表明,该系统在活塞和柱之间具有低泄漏率和可忽略的流动性。其次,用柱填充沸石13x颗粒的柱进行实验,以验证数学模型,并展示纯组分的实验程序。 (c)2019年elestvier有限公司保留所有权利。

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