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March 26, 2026Separations0 citationsOpen Access

Experimental Analysis of PEGs Separation at Mono–Channel Ceramic Membranes in DEMO Plasma Exhaust Processing

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LFLuca FarinaGCGessica CorteseDPDaniela Pietrogiacomi

Key Points

  • The study aims to evaluate the efficiency of ceramic membranes for separating plasma enhancement gases in fusion fuel purification.
  • Evaluated a commercial microporous mono-channel alpha-alumina membrane.
  • Conducted tests with equimolar streams of H2-Ar, H2-N2, D2-Ar, and He-Ar mixtures.
  • Measured the separation factor (SF) of binary gas mixtures.
  • Theoretical calculations proposed for untested gas mixture separations.
  • Separation factors were experimentally assessed for various binary mixtures.
  • New theoretical separation factors were proposed for gas mixtures not previously evaluated.

Abstract

Plasma Enhancement Gases (PEGs) are a set of gaseous elements studied for converting plasma thermal energy and mitigating the heat load on the plasma-facing components of a tokamak fusion power plant. In particular, PEG separation is part of the Plasma Exhaust Processing System of EU-DEMO. This work addresses issues related to the purification of Deuterium-Tritium fusion fuel, introducing ceramic membranes having a low specific area to process and purify unburned streams throughout the fuel cycle. A commercial microporous mono-channel α-Alumina membrane was considered for the evaluation of its efficacy in separating binary mixtures of H2 with a PEG (Ar and N2), D2, or He. Several tests were carried out, feeding equimolar streams of H2-Ar, H2-N2, D2-Ar, and He-Ar, and the separation factor (SF) of the aforementioned binary mixtures was experimentally assessed. Finally, based on the results from the experimental campaign, the separation factors of several gas mixtures that had not been experimentally investigated were theoretically calculated and proposed.

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Cite This Study

Farina et al. (2026) studied this question.

synapsesocial.com/papers/69c4cec3fdc3bde44891ab82https://doi.org/10.3390/separations13040102
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