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Adsorption systems for cryogenic plants

机译:低温植物的吸附系统

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This paper studies the possibility of increasing the efficiency of adsorption systems of cryogenic pilot plant for separation of tritium and deuterium. Equipment is composed of an catalyzed isotopic exchange module how the tritium is extracted from tritiated heavy water. An important process in this way is ripping extract moisture from wet hydrogen isotope exchange column. In the present configuration, the cooling is done by passing hydrogen gas through the adsorber where we find within the molecular sieve 13x. Tests were made for both heating phase (adsorption) and for the regeneration (desorption). The conclusions presented in this study show the possibility of using nitrogen cold for the stage of adsorber regeneration. Cold nitrogen derived from liquid nitrogen station, which has a daily rate of loss of cold gas, thus making the recovery of energy dissipated into the environment and an important environmental factor. Monitoring of process parameters was done by two methods, infrared thermography and thermocouple type k with the computer data acquisition system via USB 3.0 interfaces.
机译:本文研究了提高低温中试装置分离separation和氘的吸附系统效率的可能性。设备由催化同位素交换模块组成,如何从tri化重水中提取the。这种方法的重要过程是从湿氢同位素交换塔中提取水分。在本配置中,冷却是通过使氢气通过分子筛13x内的吸附器完成的。对加热阶段(吸附)和再生(解吸)均进行了测试。这项研究提出的结论表明在吸附器再生阶段可以使用氮气冷的可能性。来自液氮站的冷氮,具有每天损失冷气的速度,因此使能量的回收耗散到环境中是重要的环境因素。过程参数的监视通过红外热成像和k型热电偶两种方法通过计算机数据采集系统通过USB 3.0接口完成。

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