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The microstructure and stability of a Ni-nano-CaO/Al2O3 reforming catalyst under carbonation-calcination cycling conditions

机译:碳酸钙煅烧循环条件下Ni-纳米CaO / Al2O3重整催化剂的微观结构和稳定性

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The paper investigated the effect of carbonation calcination cycling conditions on the microstructure and CO2 sorption property of a sorption complex catalyst. The carbonation operation condition consisted of temperature of 600 degrees C with 20% CO2-80% N-2 and 20% CO2 -80% steam atmosphere to simulate the methane reforming reaction conditions; the calcination condition was 800 degrees C with 100% N-2, The Brunauer-Emmer-Teller (BET) surface area and thermogravimetric analysis (TGA) were measured to investigate the microstructure and variation in sorption property of the catalyst after multiple cycles under each condition. Results showed that the microstructure and CO2 sorption capacity of the sorption complex catalyst decayed significantly in the initial carbonation calcination cycles, especially under a steam atmosphere. X-ray diffraction analysis revealed that a stable compound Ca12Al14O33 formed gradually during the initial carbonation calcination cycle seven at a temperature of 800 degrees C. A model is proposed to explain the observed effect of carbonation calcination cycling on Ca12Al14O33 formation. Furthermore, based on our findings, a new sorption complex catalyst was prepared by pretreating at a high temperature of 900 degrees C. Evaluation of the catalyst prepared by the ReSER hydrogen production process through 10 circulations revealed significant improvement instability. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved,
机译:本文研究了碳化煅烧循环条件对吸附复合催化剂的微观结构和CO2吸附性能的影响。碳酸化操作条件由温度为600℃,CO 2 -80%N-2和CO 2 -80%CO 2 -80%的蒸汽气氛模拟甲烷重整反应条件组成。煅烧条件为800摄氏度,100%N-2的煅烧条件,通过测量Brunauer-Emmer-Teller(BET)表面积和热重分析(TGA)来研究催化剂的微观结构和在多次循环下吸附性能的变化。健康)状况。结果表明,吸附复合催化剂的微观结构和对CO2的吸附能力在最初的碳化煅烧循环中显着降低,特别是在蒸汽气氛下。 X射线衍射分析表明,稳定的化合物Ca12Al14O33在初始碳化阶段7在800摄氏度的温度下逐渐形成。提出了一个模型来解释观察到的碳化煅烧循环对Ca12Al14O33形成的影响。此外,基于我们的发现,通过在900摄氏度的高温下进行预处理,制备了新的吸附复合催化剂。通过ReSER制氢工艺通过10次循环制备的催化剂的评估显示出明显的改善的不稳定性。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.发行。保留所有权利,

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