Development of experimental setup for study of adsorption characteristics of porous materials down to 4.2 K

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Abstract

The knowledge of adsorption characteristics of activated carbon (porous material) in the temperature range from 5 to 20 K is essential when used in cryosorption pumps for nuclear fusion applications. However, such experimental data are very scarce in the literature, especially below 77 K. So, an experimental system is designed and fabricated to measure the adsorption characteristics of porous materials under variable cryogenic temperatures (from 5 K to 100 K). This is based on the commercially available micropore-analyser coupled to a closed helium cycle two-stage Gifford McMahon (GM) Cryocooler, which allows the sample to be cooled to 4.2 K. The sample port is coupled to the Cryocooler through a heat switch, which isolates this port from the cold head of the Cryocooler. By this, the sample temperature can now be varied without affecting the Cryocooler. The setup enables adsorption studies in the pressure range from atmospheric down to 10 -4 Pa. The paper describes the details of the experimental setup and presents the results of adsorption studies at 77 K for activated carbon with nitrogen as adsorbate. The system integration is now completed to enable adsorption studies at 4.2 K. © 2012 American Institute of Physics.

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Behera, U., Kasthurirengan, S., Krishnamoorthy, V., Senthil Kumar, A., Kuzhiveli, B. T., & Gangradey, R. (2012). Development of experimental setup for study of adsorption characteristics of porous materials down to 4.2 K. In AIP Conference Proceedings (Vol. 1434, pp. 1285–1292). https://doi.org/10.1063/1.4707052

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