Department of Chemical Engineering, Hankyoung National University, Anseong 17579, South Korea.
Department of Chemical and Environmental Technology, Inha Technical College, Incheon 22212, South Korea.
J Nanosci Nanotechnol. 2020 Nov 1;20(11):6897-6903. doi: 10.1166/jnn.2020.18809.
Alumina nanofibers (ANFs) were successfully fabricated using electrospinning technology. ANF samples were then calcined at temperatures ranging from 900-1200°C, denoted ANF-900 through ANF-1200 in accordance with their calcination temperatures. Using a wet process, each ANF sample was impregnated with Pt (3 wt%) and Sn (4.5 wt%), followed by drying at 110°C and calcining at 580°C. After they were impregnated with Pt and Sn, ANFs were tested for catalytic activity with the propane dehydrogenation (PDH) reaction. The physicochemical properties of the catalysts were characterized by X-ray diffraction, field emission scanning electron microscopy, transmission electron microscopy, and N₂ adsorption-desorption. PDH catalytic activity of the ANFs was evaluated by comparing propane conversion and propylene selectivity. The results indicate that calcination of ANF prior to catalyst impregnation is crucial to enhancing catalytic activity and that calcination temperature influences catalytic activity. Among the ANF series, ANF-900 achieved the highest catalytic activity.
氧化铝纳米纤维(ANF)采用静电纺丝技术成功制备。然后将 ANF 样品在 900-1200°C 的温度下煅烧,根据煅烧温度分别表示为 ANF-900 到 ANF-1200。采用湿法浸渍,将每个 ANF 样品浸渍 Pt(3wt%)和 Sn(4.5wt%),然后在 110°C 下干燥并在 580°C 下煅烧。浸渍 Pt 和 Sn 后,通过丙烷脱氢(PDH)反应测试 ANF 的催化活性。通过 X 射线衍射、场发射扫描电子显微镜、透射电子显微镜和 N₂吸附-脱附对催化剂的物理化学性质进行了表征。通过比较丙烷转化率和丙烯选择性来评估 ANF 的 PDH 催化活性。结果表明,在浸渍催化剂之前对 ANF 进行煅烧对于提高催化活性至关重要,并且煅烧温度会影响催化活性。在 ANF 系列中,ANF-900 表现出最高的催化活性。