首页> 外文期刊>Journal of Catalysis >Raman spectroscopic and TPR studies of oxygen species over BaO- and BaX2 (X = F, Cl, Br)-promoted Nd2O3 catalysts for the oxidative coupling of methane
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Raman spectroscopic and TPR studies of oxygen species over BaO- and BaX2 (X = F, Cl, Br)-promoted Nd2O3 catalysts for the oxidative coupling of methane

机译:BaO和BaX2(X = F,Cl,Br)促进的Nd2O3催化剂上的氧物种的拉曼光谱和TPR研究,用于甲烷的氧化偶联

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The 30 mol% BaO- and 30 mol% BaX2(X = F, Cl, Br)-promoted Nd2O3 catalysts have been investigated for the oxidative coupling of methane (OCM). The addition of BaO or BaX2 to Nd2O3 could obviously enhance the catalytic performance. We observed leaching of halide during the OCM reaction. The stability of the halide ions follows the order: F- > Cl- > Br-. XRD and Raman results revealed that the addition of BaO or BaX2 has significantly altered the surface and bulk natures of Nd2O3. The enlargement of Nd2O3 lattice in the BaO- and BaX2-promoted Nd2O3 catalysts was due to ionic exchange between Ba2+ and Nd3+ or X- and O2- ions. Raman results showed that there were dioxygen species such as O-2(2-), O-2(n-), O-2(-), and O-2(delta-) on the surface when BaO or BaX2 was added to Nd2O3. We suggest that the lattice defects generated due to ionic exchanges could promote the formation of dioxygen adspecies. TPR results implied that, besides the dioxygen species, there were mono-oxygen species existing in these catalysts. By pulsing CH4 over the catalysts, we found that both dioxygen and mono-oxygen species could activate CH4 at high temperatures and the existence of dioxygen species could improve the catalytic performance, especially in the enhancement of C-2 selectivity and C2H4/C2H6 ratio. (C) 1998 Academic Press. [References: 20]
机译:已经研究了30 mol%BaO-和30 mol%BaX2(X = F,Cl,Br)促进的Nd2O3催化剂用于甲烷的氧化偶联(OCM)。在Nd2O3中加入BaO或BaX2可以明显提高催化性能。我们观察到在OCM反应过程中卤化物的浸出。卤离子的稳定性遵循以下顺序:F-> Cl-> Br-。 XRD和Raman结果表明,BaO或BaX2的添加已显着改变了Nd2O3的表面和整体性质。 BaO和BaX2促进的Nd2O3催化剂中Nd2O3晶格的扩大是由于Ba2 +和Nd3 +或X和O2-离子之间的离子交换。拉曼结果表明,当添加BaO或BaX2时,表面上存在诸如O-2(2-),O-2(n-),O-2(-)和O-2(δ-)之类的双氧物质。到Nd2O3。我们建议由于离子交换而产生的晶格缺陷可能会促进双氧形态的形成。 TPR结果表明,除了双氧物种外,这些催化剂中还存在单氧物种。通过在催化剂上脉冲CH4,我们发现在高温下双氧和单氧均可激活CH4,并且双氧的存在可改善催化性能,特别是在提高C-2选择性和C2H4 / C2H6比方面。 (C)1998年学术出版社。 [参考:20]

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