Graphite Felt-Sandwiched Ni/SiC Catalysts for the Induction Versus Joule-Heated Sabatier Reaction: Assessing the Catalyst Temperature at the Nanoscale

The paper describes a series of graphite felt-sandwiched k Ni/SiC composites at variable metal loading ( k = 10, 15, and 20 wt %) and their application as catalysts for the CO 2 methanation process (Sabatier reaction) under two distinct and conceptually different heating setups: Joule heating versus induction heating (IH). A comparative analysis carried out on all catalysts from this series operated under the two heating configurations has unveiled the superior performance of radiofrequency (RF)-heated (IH) catalysts in the process. Most importantly, it has offered a practical tool to map the... Mehr ...

Verfasser: Lai Truong-Phuoc (1429723)
Cuong Duong-Viet (1321917)
Giulia Tuci (1321914)
Andrea Rossin (1321935)
Jean-Mario Nhut (1429717)
Walid Baaziz (1715929)
Ovidiu Ersen (1392136)
Mehdi Arab (11873051)
Alex Jourdan (5629757)
Giuliano Giambastiani (1321920)
Cuong Pham-Huu (1321932)
Dokumenttyp: Text
Erscheinungsdatum: 2021
Schlagwörter: Biochemistry / Microbiology / Evolutionary Biology / Immunology / Inorganic Chemistry / Space Science / Environmental Sciences not elsewhere classified / Astronomical and Space Sciences not elsewhere classified / Biological Sciences not elsewhere classified / subsequent fast modulation / induction versus joule / excited metal nano / comparative analysis carried / 20 wt %) / whole reactor volume / catalyst bed using / rf )- heated / peripheral walls ) / heated sabatier reaction / heated catalytic process / two heating configurations / ih technology applied / 2 </ sub / sabatier reaction / reactor walls / heating technology / two distinct / k </ / ih ) / postcatalyst heating / virtual absence / thermal inertia / superior performance / sup >< / sic composites / sensing thermometer / process safety / process rates / practical tool / paper describes / neither pre / methanation process / graphite felt / gap existing / evident advantages / energy wastes / directly engaged / catalyst temperature / ></ sup
Sprache: unknown
Permalink: https://search.fid-benelux.de/Record/base-26870750
Datenquelle: BASE; Originalkatalog
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Link(s) : https://doi.org/10.1021/acssuschemeng.1c07217.s001

The paper describes a series of graphite felt-sandwiched k Ni/SiC composites at variable metal loading ( k = 10, 15, and 20 wt %) and their application as catalysts for the CO 2 methanation process (Sabatier reaction) under two distinct and conceptually different heating setups: Joule heating versus induction heating (IH). A comparative analysis carried out on all catalysts from this series operated under the two heating configurations has unveiled the superior performance of radiofrequency (RF)-heated (IH) catalysts in the process. Most importantly, it has offered a practical tool to map the gap existing between the macroscopic temperature value measured at the catalyst bed using a remote-sensing thermometer (pyrometer) and that (real) of the excited metal nano-objects (Ni NPs) directly engaged in the RF-heated catalytic process. Besides the evident advantages of IH technology applied to the methanation process in terms of process rates (λ) already under nominally low reaction temperatures, the virtual absence of any thermal inertia and the subsequent fast modulation of the temperature at the catalytic bed demonstrate unique features of this heating technology in terms of process safety (cold-reactor walls) and reduction of energy wastes (neither pre- and postcatalyst heating of reagents and products nor that of the whole reactor volume and its peripheral walls).