溶液燃烧法制备ceo2负载Ni和Co催化剂用于甘油制氢:燃料/氧化剂比和氧过量†的影响

IF 4.4 3区 化学 Q2 CHEMISTRY, PHYSICAL
Anna N. Matveyeva, Shamil O. Omarov, Marianna A. Gavrilova, Andrey D. Trofimuk, Johan Wärnå and Dmitry Yu. Murzin
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引用次数: 0

摘要

甘油是一种很有前途的原料,可用于生产各种化学品和燃料,包括氢气。然而,开发经济、稳定、高活性、高选择性的温和条件下甘油制氢催化剂一直是其实际应用的一个重要问题。本文通过改变燃料/氧化剂比(φ = 0.7 ~ 3)、燃料类型(甘氨酸、尿素)和氧过剩量,采用溶液燃烧合成的方法制备了一系列金属氧化物Ni和Co含量为30 wt%的ceo2负载Ni和Co催化剂。因此,得到了不同种类的Ni和Co及其与CeO2的相互作用,影响了甘油在蒸汽和水相重整中的还原顺序、缺陷、结构特征和活性。利用XRD、DTA-TGA、低温N2物理吸附、SEM-EDX、H2- tpr、H2-和CO2-TPD以及拉曼光谱等仪器方法研究所得样品的特性。结果表明,高甘氨酸-氧化剂比合成的Ni-Ce-O体系在甘油水相重整中可以成功地与贵金属催化剂(Pt/γ-Al2O3)竞争。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

CeO2-supported Ni and Co catalysts prepared by a solution combustion method for H2 production from glycerol: the effect of fuel/oxidizer ratio and oxygen excess†

CeO2-supported Ni and Co catalysts prepared by a solution combustion method for H2 production from glycerol: the effect of fuel/oxidizer ratio and oxygen excess†

Glycerol is a promising raw material for obtaining various chemicals and fuels, including H2. Nevertheless, the development of cost-effective and stable catalysts with high activity and selectivity for H2 production from glycerol under mild conditions has been a serious problem for their practical use. In this work, a series of CeO2-supported Ni and Co catalysts with the content of Ni and Co as metal(II) oxides being 30 wt% was prepared by solution combustion synthesis via changing the fuel/oxidizer ratio (φ = 0.7–3), the fuel type (glycine, urea), and the oxygen excess. Thus, various species of Ni and Co and their interactions with CeO2 were obtained, which affected the reduction sequence, defectiveness, textural characteristics, and activity in steam and aqueous-phase reforming of glycerol. To study the characteristics of the obtained samples, instrumental methods such as XRD, DTA-TGA, low-temperature N2 physisorption, SEM-EDX, H2-TPR, and H2- and CO2-TPD, as well as Raman spectroscopy, were used. The results demonstrated that the Ni–Ce–O system synthesized with a high glycine-to-oxidizer ratio can successfully compete with catalysts based on noble metals (Pt/γ-Al2O3) in aqueous-phase reforming of glycerol.

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来源期刊
Catalysis Science & Technology
Catalysis Science & Technology CHEMISTRY, PHYSICAL-
CiteScore
8.70
自引率
6.00%
发文量
587
审稿时长
1.5 months
期刊介绍: A multidisciplinary journal focusing on cutting edge research across all fundamental science and technological aspects of catalysis. Editor-in-chief: Bert Weckhuysen Impact factor: 5.0 Time to first decision (peer reviewed only): 31 days
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