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Thermally stable Ir/Ce0.9La0.1O2 catalyst for high temperature methane dry reforming reaction 被引量:1
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作者 Fagen Wang Leilei Xu +7 位作者 Weidong Shi Jian Zhang Kai Wu Yu Zhao Hui Li He Xing Li Guo Qin Xu Wei Chen 《Nano Research》 SCIE EI CAS CSCD 2017年第2期364-380,共17页
In this study, the use of a thermally stable Ir/Ce0.9La0.1O2 catalyst was investigated for the dry reforming of methane. The doping of La203 into the CeO2 lattice enhanced the chemical and physical properties of the I... In this study, the use of a thermally stable Ir/Ce0.9La0.1O2 catalyst was investigated for the dry reforming of methane. The doping of La203 into the CeO2 lattice enhanced the chemical and physical properties of the Ir/Ce0.9La0.1O2 catalyst, such as redox properties, Ir dispersion, oxygen storage capacity, and thermal stability, with respect to the Ir/CeO2 catalyst. Hence, the Ir/Ce0.9La0.1O2 catalyst exhibits higher activity and stabler performance for the dry reforming of methane than the Ir/CeO2 catalyst. This observation can be mainly attributed to the stronger interaction between the metal and support in the Ir/Ce0.9La0.1O2 catalyst stabilizing the catalyst structure and improving the oxygen storage capacity, leading to negligible aggregation of Ir nanoparticles and the Ce0.9La0.1O2 support at high temperatures, as well as the rapid removal of carbon deposits at the boundaries between the Ir metal and the Ce0.9La0.1O2 support. 展开更多
关键词 thermally stable catalyst Ir/Ce0.9La0.1O2 metal-support interaction methane dry reforming
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