2018
DOI: 10.1016/j.cej.2017.11.028
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Reverse water gas shift reaction over CuFe/Al2O3 catalyst in solid oxide electrolysis cell

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Cited by 39 publications
(13 citation statements)
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“…Ru [27], Cu [28][29][30], Fe [31,32], and Ni [33,34] have been utilized. Various supports such as CeO 2 [28,35,36] , SiO 2 [37,38] , Al 2 O 3 [39,40] , ZrO 2 [29] , TiO 2 [25,41] , zeolite [13] have been used. In addition, methanation of CO 2 , also known as Sabatier reaction is a promising strategy for the production of methane.…”
Section: Co 2 + Hmentioning
confidence: 99%
“…Ru [27], Cu [28][29][30], Fe [31,32], and Ni [33,34] have been utilized. Various supports such as CeO 2 [28,35,36] , SiO 2 [37,38] , Al 2 O 3 [39,40] , ZrO 2 [29] , TiO 2 [25,41] , zeolite [13] have been used. In addition, methanation of CO 2 , also known as Sabatier reaction is a promising strategy for the production of methane.…”
Section: Co 2 + Hmentioning
confidence: 99%
“…However, depending on the gas composition, the conversion of CO 2 into CO takes place mainly due to the reverse water–gas shift reaction (RWGS) between the produced H 2 and CO 2 , and is not electrocatalytically, but catalytically activated. 340,341…”
Section: Solid Oxid Electrolysis Cell Componentsmentioning
confidence: 99%
“…WGS is an important chemical reaction to produce and purify H 2 , and WGS can adjust the H 2 /CO ratio for Fischer-Tropsch synthesis [14]. RWGS uses CO 2 as a raw material to produce CO, and further produce other chemical raw materials through Fischer-Tropsch synthesis [15]. Partial oxidation of VOCs and reforming of VOCs are the important ways to produce chemical raw materials.…”
Section: Componentsmentioning
confidence: 99%