校内登录

个人信息 更多+
  • 教师姓名: 郭洋
  • 性别: 男
  • 职称: 副教授
  • 博士生导师: 是
  • 硕士生导师: 是
  • 学历: 博士研究生毕业
  • 学位: 博士
  • 所在单位: 能源与动力工程学院
  • 电子邮箱:
  • 办公地点: 兴庆校区:能源馆414室
    创新港校区:1号巨构5187

当前位置: 中文主页 - 科学研究 - 论文成果

Hollow spherical Ni/ZrO2 as superior catalyst for syngas production from photothermal synergistic dry reforming of methane

发布时间:2026-09-18
点击次数:
发布时间:
2026-09-18
论文名称:
Hollow spherical Ni/ZrO2 as superior catalyst for syngas production from photothermal synergistic dry reforming of methane
发表刊物:
Catalysis Science & Technology
摘要:
Dry reforming of methane (DRM) is appealing for syngas production yet challenging due to its high reactive energy barrier and catalyst deactivation. To address the issues in traditional thermocatalytic (TC) DRM, this paper investigated DRM under photothermal synergistic catalytic (PTSC) conditions. The synthesized Ni/ZrO2 catalyst with a hollow sphere structure (sp-Ni/ZrO2) demonstrated excellent performance in suppressing metal sintering and carbon deposition. The hollow sphere structure effectively enhanced the catalyst's light absorption ability, which can broaden spectrum absorption and decrease the bandgap from 4.9 eV to 4.2 eV, and effectively enhanced the synergistic photocatalysis. Under PTSC conditions at 600 °C, the catalyst achieved CO and H2 yields of 73.4 mmol g−1 h−1 and 63.7 mmol g−1 h−1, respectively, while maintaining stability for 18 hours. The activation energies for CO2 and CH4 dissociation under PTSC are 27.2 kJ mol−1 and 32.9 kJ mol−1, significantly lower than the corresponding values of 40.0 kJ mol−1 and 44.4 kJ mol−1 under TC conditions. Besides, the turnover frequencies of CH4 and CO2 for sp-Ni/ZrO2 range from 0.35 to 1.19 s−1 and 0.47 to 1.37 s−1, respectively, which are 1.1–2.1 times higher than those in TC-DRM. This paper provides a new perspective on PTSC catalyst design and offers an innovative solution to overcome the limitations of conventional DRM reactions.
合写作者:
Tengfei Li, Jiahui Cheng, Dan Li, Bilal Patel, Donghai Xu, Yang Guo(通讯作者)
学科门类:
工学
文献类型:
J
卷号:
14
期号:
2
页面范围:
405-418
是否译文:
否
发表时间:
2024-01-21
收录刊物:
SCI