催化作用
烧结
二氧化碳重整
材料科学
甲烷
化学工程
纳米颗粒
耐久性
纺纱
纳米技术
冶金
合成气
复合材料
化学
有机化学
工程类
作者
Huihui Yan,Kun Wang,Liping Zhao,Peng Zhang,Han Chen,Jing Liu,Lian Gao
摘要
Abstract A new type of Ni/Al 2 O 3 self‐supporting catalysts, with high specific surface area, was fabricated by blow‐spinning technology. These Ni/Al 2 O 3 self‐supporting catalysts are hollow flexible fibers and were utilized for the dry reforming of methane. The Ni/Al 2 O 3 catalysts exhibited exceptional catalytic performance, maintaining their activity for over 150‐h at a high temperature of 800°C. The Ni nanoparticles disputed on the hollow fibers demonstrated remarkable resistance to sintering and coking during high‐temperature catalysis. This was a noteworthy feature, as sintering and coking are common challenges faced by catalysts during high‐temperature reactions. Furthermore, the catalysts retained its activity even after a rigorous 150‐h test at 800°C, indicating its durability and stability. Importantly, the Ni/Al 2 O 3 self‐supporting could be successfully reactivated after the test, further highlighting its reusable nature. This study offers promising new avenues for the development of high‐temperature, self‐supporting, and reactivatable catalysts.
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