徐绍平

个人信息Personal Information

教授

博士生导师

硕士生导师

性别:男

毕业院校:大连理工大学

学位:博士

所在单位:化工学院

学科:化学工艺. 能源化工

办公地点:西校区化工实验楼C325,
详见 http://tcbc.dlut.edu.cn/

联系方式:13500797040, 详见 http://tcbc.dlut.edu.cn/

电子邮箱:spxu@dlut.edu.cn

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Nickel supported on iron-bearing olivine for CO2 methanation

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论文类型:期刊论文

发表时间:2016-08-10

发表刊物:INTERNATIONAL JOURNAL OF HYDROGEN ENERGY

收录刊物:SCIE、EI、Scopus

卷号:41

期号:30

页面范围:12910-12919

ISSN号:0360-3199

关键字:Methanation; Bimetallic catalyst; Ni-Fe alloy; Olivine

摘要:Calcined olivine supported nickel catalysts (Ni/olivine) were prepared by incipient wetness method and used for CO2 methanation. To investigate the structure-activity relationships of the catalysts, the structure of the olivine during calcination and that of the Ni/olivine after calcination and reduction were illustrated by means of powder X-ray diffraction, temperature programmed reduction, Mossbauer spectroscopy and BET surface area measurement, and the CO2 methanation were evaluated by using Ni/olivine with different calcination temperatures of the olivine, Ni loadings, calcination and reduction temperatures of the catalyst. It was found that the FeOx phase formed on the surface of the calcined olivine was extracted from the olivine during its calcination, laying the base for the interaction between the surface FeOx and the NiO supported. The Ni-Fe alloy as the effective active component was formed on the calcined olivine containing mainly (MgxFe1-x)(2) SiO4 and the thermal induced FeOx phase, from the reduced NiO and the partially reduced FeOx during the reduction of the Ni/olivine. The unreduced FeOx between the active phase Ni-Fe alloy and the olivine body, as the very support of the Ni-Fe alloy, plays an important role in CO2 methanation. With 6 wt.% Ni/olivine prepared under optimized condition as catalyst, at temperature of 400 degrees C and a H-2/CO2 mole ratio of 6.0 and an hourly space velocity of 11,000 h(-1), the CO2 methanation achieved 98% CO2 conversion with 99% selectivity to CH4. The Ni/olivine with strong resistance to coke deposition and abrasion could be a promising methanation catalyst, especially for fluidized bed operation. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.