CFD Development of a silica membrane reactor during HI decomposition reaction coupling with CO2 methanation at sulfur-iodine cycle
Academic Article
Publication Date:
2022
abstract:
In this work, a novel structure of a hydrogen-membrane reactor coupling HI decomposition
and CO2 methanation was proposed, and it was based on the adoption of silica membranes
instead of metallic, according to their ever more consistent utilization as nanomaterial for hydrogen
separation/purification. A 2D model was built up and the effects of feed flow rate, sweep gas flow
rate and reaction pressure were examined by CFD simulation. This work well proves the feasibility
and advantage of the membrane reactor that integrates HI decomposition and CO2 methanation
reactions. Indeed, two membrane reactor systems were compared: on one hand, a simple membrane
reactor without proceeding towards any CO2 methanation reaction; on the other hand, a membrane
reactor coupling the HI decomposition with the CO2 methanation reaction. The simulations demonstrated
that the hydrogen recovery in the first membrane reactor was higher than the methanation
membrane reactor. This was due to the consumption of hydrogen during the CO2 methanation reaction,
occurring in the permeate side of the second membrane reactor system, which lowered the
amount of hydrogen recovered in the outlet streams. After model validation, this theoretical study
allows one to evaluate the effect of different operating parameters on the performance of both the
membrane reactors, such as the pressure variation between 1 and 5 bar, the feed flow rate between
10 and 50 mm3/s and the sweep gas flow rate between 166.6 and 833.3 mm3/s. The theoretical predictions
demonstrated that the best results in terms of HI conversion were 74.5% for the methanation
membrane reactor and 67% for the simple membrane reactor.
Iris type:
01.01 Articolo in rivista
Keywords:
silica membrane reactor;; hydrogen generation; CFD modeling;; CO2 methanation;; HI decomposition process;
List of contributors:
Iulianelli, Adolfo
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