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CO2 conversion to CO by auto-thermal catalyst-assisted chemical looping

机译:通过自动热催化剂辅助化学循环将CO2转化为CO

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bifunctional 9 wt.%NiO-16 wt.%Fe2O3/MgAl2O4 material was prepared for CO2 conversion to CO by auto-thermal catalyst-assisted chemical looping. This process is designed to maximize CO2 conversion. The generation of CO from CO2 was investigated between 873 K and 1023 K. The high endothermicity of methane dry reforming and the material deactivation by coke deposition were avoided by the simultaneous feeding of CH4, CO2 and O-2 in a 1:1:0.5 molar ratio during the reduction half-cycle of chemical looping. In this half-cycle, interaction of Ni with Fe leads to Ni-Fe alloy formation. The resulting Ni-based catalyst converts CH4+ CO2+O-2 into a mixture of CO and H-2, which both reduce Fe3O4, producing CO2 and H2O. In the CO2 re-oxidation half-cycle, CO is produced and the Ni-Fe alloy decomposes into Ni and Fe3O4. The reduction capacity (R-c) of the gas mixture strongly depends on the ratio R-c between reducing and oxidizing gases. Based on thermodynamic calculations, high conversion of Fe3O4 to reduced state can be reached if R-c > 2 and T > 873 K. During prolonged auto-thermal chemical looping at 1023 K, the 9 wt.%NiO-16 wt.%Fe2O3/MgAl2O4 suffers from deactivation in the first five cycles, after which a more stable operation is established. Based on TEM measurements, sintering was found to be the main cause for the initial decrease of CO production. (C) 2016 Elsevier Ltd. All rights reserved.
机译:制备了双官能度为9%(重量)的NiO-16%(重量)的Fe2O3 / MgAl2O4材料,用于通过自动热催化剂辅助化学循环将CO2转化为CO。此过程旨在最大程度地转化CO2。研究了在873 K和1023 K之间由CO2生成CO的问题。通过同时以1:1:0.5的速率进料CH4,CO2和O-2,避免了甲烷干重整的高吸热性和因焦炭沉积而导致的材料失活。化学环的还原半循环过程中的摩尔比。在该半循环中,Ni与Fe的相互作用导致Ni-Fe合金的形成。所得的基于Ni的催化剂将CH4 + CO2 + O-2转化为CO和H-2的混合物,二者均还原Fe3O4,从而生成CO2和H2O。在CO2再氧化半循环中,会生成CO,Ni-Fe合金会分解为Ni和Fe3O4。气体混合物的还原能力(R-c)在很大程度上取决于还原气体和氧化气体之间的比率R-c。根据热力学计算,如果Rc> 2和T> 873 K,则可以将Fe3O4高转化为还原态。在1023 K的长时间自动热化学循环中,NiO-16 wt%Fe2O3 / MgAl2O4的重量百分比为9%。在前五个周期中会遭受停用,此后将建立更稳定的操作。根据TEM测量,发现烧结是CO产量最初下降的主要原因。 (C)2016 Elsevier Ltd.保留所有权利。

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