4.7 Article

Low-temperature biomass tar model reforming over perovskite materials with DBD plasma: Role of surface oxygen mobility

期刊

ENERGY CONVERSION AND MANAGEMENT
卷 248, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.enconman.2021.114802

关键词

Perovskite materials; Oxygen mobility; Steam reforming of biomass tar model; DBD Plasma

资金

  1. National University of Singapore, National Research Foundation, Prime Minister's Office, Singapore
  2. National Environment Agency under the Waste-to-Energy Competitive Research Program [WTE CRP 1501 103]
  3. Ministry of Education [MOE2017-T2-2-130, R-279-000-544-112]

向作者/读者索取更多资源

Efficient conversion of biomass tar was achieved using Co-containing La8Ce2-Co5Ti5Ox catalyst in an integrated catalytic-DBD plasma process, leading to high catalytic performance and gas yield of H-2 and CO, which are essential for achieving high calorific values of the product.
Tar conversion or removal is one of the most troublesome issues limiting biomass or solid waste gasification technology's industrialization. A cost-effective and energy-efficient way of conversion of tar is indispensably dreamed. In this work, an efficient conversion of biomass tar was demonstrated in an integrated catalytic-DBD plasma process to address this. The role of lattice oxygen species for biomass tar model reforming reaction over various perovskite structured La8Ce2-M5Ti5Ox (M = Fe, Co, Ni and Cu) materials was evaluated in an integrated catalytic-DBD plasma process. The tar reforming activity was discussed by considering the production of gaseous products such as H-2, CH4 and CO, which are the main components to achieve high calorific values for the product. Among all the perovskite materials, Co-containing La8Ce2-Co5Ti5Ox gave a superior catalytic performance in oxidative toluene reforming reactions. At 250 degrees C and 90 W discharge power, La8Ce2-Co5Ti5Ox catalyst showed 98% of toluene conversion and the product gas yield of 60 vol% and 27 vol% for CO and H-2 gases, respectively. The energy content of the syngas is enhanced from 36 kJ/h for plasma only reaction to 62 kJ/h and 68 kJ/h for LC-Fe5Ti5Ox and LC-Co5Ti5Ox catalysts, respectively. Besides, LC-Fe5Ti5Ox catalyst showed enhanced H-2 yields with the addition of small amounts of H2O by maintaining similar toluene conversion. The catalytic performances of the perovskite materials were correlated with the oxygen mobility nature of the materials. XRD analysis revealed that the stable perovskite structure is present for all the materials before and after the exposure to plasma energy. O-2-TPD and XPS results revealed that the O species present in La8Ce2-Co5Ti5Ox materials are more mobile than other materials. Finally, the high surface oxygen mobility nature and stable perovskite structure were the possible reasons for the best performance of LC-Fe5Ti5Ox and La8Ce2-Co5Ti5Ox catalysts over other catalysts.

作者

我是这篇论文的作者
点击您的名字以认领此论文并将其添加到您的个人资料中。

评论

主要评分

4.7
评分不足

次要评分

新颖性
-
重要性
-
科学严谨性
-
评价这篇论文

推荐

暂无数据
暂无数据