2000
DOI: 10.1016/s0926-3373(99)00110-1
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AMnO3 (A=La, Nd, Sm) and Sm1−xSrxMnO3 perovskites as combustion catalysts: structural, redox and catalytic properties

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Cited by 180 publications
(97 citation statements)
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“…The high hydrogen consumption with x Ca (Fe) can be explained by the higher amount of Fe 4+ ions generated to compensate the charge imbalance. 18 Since surface carbonates are related with a presence of segregated phases and the reduction of these carbonates also consumes hydrogen, the large increase in the hydrogen consumption of the x Ca (Fe) = 0.4 is a measure of the presence of highly dispersed segregated phases relative to that observed in the x Ca (Fe) = 0.2 perovskite.…”
Section: Resultsmentioning
confidence: 99%
“…The high hydrogen consumption with x Ca (Fe) can be explained by the higher amount of Fe 4+ ions generated to compensate the charge imbalance. 18 Since surface carbonates are related with a presence of segregated phases and the reduction of these carbonates also consumes hydrogen, the large increase in the hydrogen consumption of the x Ca (Fe) = 0.4 is a measure of the presence of highly dispersed segregated phases relative to that observed in the x Ca (Fe) = 0.2 perovskite.…”
Section: Resultsmentioning
confidence: 99%
“…The (La,Me)MnO 3 , (Me=Ba,Sr,Ca), solid solutions have been extensively studied (10)(11)(12), while less work has been devoted to other light RE manganite systems, such as (Nd,Ca), (13), (Sm,Sr), (14), (Eu,Sr) (15) and (Gd,Sr), (16) manganites. The scope of the present work is to study the formation of solid solution Dy 1-x Ca x MnO 3 , their crystalline features and their electrical conductivity behaviour.…”
Section: Introductionmentioning
confidence: 99%
“…Compared with the MIP-6, SG has a lower activity, T 10% as 448°C and T 50% as 525°C, about 40°C higher than that According to literature, the activity of La-Mn-O perovskite catalysts in oxidation reaction was found to depend on the following factors: the specific surface area, redox-capacity of the catalysts and the composition of the catalyst surface [9,23]. These catalysts have lower SSA in range of 4.4-6.5 m 2 /g.…”
Section: Catalytic Activitymentioning
confidence: 87%
“…A large number of researchers have paid attention to perovskite catalysts, noble metal and hexaaluminates. Perovskite, the general formula ABO 3 , is well known for its cheapness, activity and the thermal stability in methane combustion [7], where A is usually a rare earth element La, Sr, Ba, Nd, Sm and B is usually a transition metal Co, Mn, Cr, Fe and Ni [8][9][10][11]. La-Mn-O based perovskite has been found to be one of the most active perovskite oxide catalysts towards methane combustion [10,12,13].…”
Section: Introductionmentioning
confidence: 99%