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Ce改性Co/SEP催化剂对乙醇重整制氢的影响
引用本文:汪春生,王一双,陈明强,汤志远,张涵,杨忠连,王君.Ce改性Co/SEP催化剂对乙醇重整制氢的影响[J].燃料化学学报,2019,47(5):558-565.
作者姓名:汪春生  王一双  陈明强  汤志远  张涵  杨忠连  王君
作者单位:1. School of Chemical Engineering, Anhui University of Science & Technology, Huainan 232001, China; 2. School of Energy and Safety, Anhui University of Science & Technology, Huainan 232001, China
基金项目:国家自然科学基金(51876001,21376007),国家科技支撑计划项目(2014BAD02B03)和中国博士后科学基金(2018M642505)资助
摘    要:采用海泡石(SEP)为载体,通过化学沉淀法制备了Co/SEP和Co-Ce/SEP催化剂,对催化剂进行X射线衍射(XRD)、H2-程序升温还原(H2-TPR)和透射电镜(TEM)等表征。结果表明,Ce的加入显著改善催化剂的分散度和还原性;两种催化剂应用于乙醇重整制氢实验,考察Ce的加入、反应时间、反应温度和水碳比(S/C比)对制氢的影响。结果表明,在WHSV为20.5h-1,水碳比(S/C)为3,反应温度600℃时,Co-Ce/SEP乙醇转化率和氢气产率达到最高,分别为85%和65%。同时Ce的添加能使Co-Ce/SEP拥有更优的活性和稳定性。

关 键 词:催化蒸汽重整  乙醇制氢  海泡石  钴基催化剂  
收稿时间:2019-01-14

Effect of Ce modified Co/SEP catalyst on hydrogen production via ethanol steam reforming
WANG Chun-sheng,WANG Yi-shuang,CHEN Ming-qiang,TANG Zhi-yuan,ZHANG Han,YANG Zhong-lian,WANG Jun.Effect of Ce modified Co/SEP catalyst on hydrogen production via ethanol steam reforming[J].Journal of Fuel Chemistry and Technology,2019,47(5):558-565.
Authors:WANG Chun-sheng  WANG Yi-shuang  CHEN Ming-qiang  TANG Zhi-yuan  ZHANG Han  YANG Zhong-lian  WANG Jun
Abstract:Co/SEP and Co-Ce/SEP catalysts were prepared by chemical precipitation method with sepiolite (SEP) as support. X-ray diffraction (XRD), H2-programmed reduction (H2-TPR) and transmission electron microscopy (TEM) were used to characterize the catalysts. It is proved that the addition of Ce significantly improved the dispersion and reducibility of the catalyst. The effects of Ce addition, reaction time, reaction temperature and steam/carbon (S/C) ratio on hydrogen production were investigated. The results show that the ethanol conversion and hydrogen production of Co-Ce/SEP are the highest values, 85% and 65%, respectively, when the WHSV is 20.5 h-1, the S/C ratio is 3 and the reaction temperature is 600℃. Meanwhile, the addition of Ce can make Co-Ce/SEP possess superior activity and stability.
Keywords:catalytic steam reforming  hydrogen production via ethanol  sepiolite  cobalt based catalyst  
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