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Soot oxidation in low-O2 and O2-free environments by lanthanum-based perovskites: structural changes and the effect of Ag doping

机译:Soot oxidation in low-O2 and O2-free environments by lanthanum-based perovskites: structural changes and the effect of Ag doping

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摘要

The use of La-based, Cu (LCO), Mn (LMO) and Fe (LFO) perovskites doped with Ag was studied for potential application as cGPF soot oxidation catalysts. Special emphasis was placed on the effect of the soot, reaction gas composition, changes in rich/lean conditions and the resulting physicochemical changes in the catalyst and their reversibility. The use of a catalyst reduced the soot oxidation temperature significantly in a low-O2 environment and with Ag doping the soot oxidation temperature was decreased by 170 °C in loose contact and 230 °C in tight contact compared to uncatalyzed oxidation. For the soot oxidation in an O2-free environment, the highest oxygen storage capacity was found for LCO and LCAO (1 mol O per molcat). The release of such a high amount of O and reduction of Cu~(2+) to Cu0 was accompanied by the loss of perovskite structure (LCO → Cu/La2O3), which could be reversed following exposure to a high temperature low-O2 environment.
机译:洛杉矶女,铜(LCO)、锰(LMO)和铁(LFO)钙钛矿掺杂Ag)进行了研究潜在应用cGPF烟尘氧化催化剂。烟尘的影响,反应气体组分,丰富的变化/精益条件和结果物理化学变化及其催化剂可逆性。烟尘氧化温度显著的low-O2环境和Ag)掺杂的烟尘氧化温度下降了170°C接触不良和230°C的紧密联系相比uncatalyzed氧化。氧化O2-free环境中最高的氧容量LCO和被发现LCAO(1摩尔每molcat O)。高数量的O和减少Cu0 Cu ~ (2 +)伴随着钙钛矿的损失吗结构(LCO→铜/ La2O3)逆转后暴露在高温low-O2环境。

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