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Ni/CeO2催化剂上CO2甲烷化反应本征动力学研究

范志辉 岳燕燕 张笑楠 李新立 张少康 张振洲 涂维峰 韩一帆

低碳化学与化工2024,Vol.49Issue(8):123-130,8.
低碳化学与化工2024,Vol.49Issue(8):123-130,8.DOI:10.12434/j.issn.2097-2547.20240104

Ni/CeO2催化剂上CO2甲烷化反应本征动力学研究

Study on intrinsic kinetics of CO2 methanation on Ni/CeO2 catalyst

范志辉 1岳燕燕 1张笑楠 1李新立 1张少康 1张振洲 1涂维峰 1韩一帆1

作者信息

  • 1. 郑州大学化工学院,河南郑州 450001
  • 折叠

摘要

Abstract

Hydrogenation of CO2 to synthesize CH4(CO2 methanation)is one of the crucial pathways for the efficient and clean conversion of CO2.Despite extensive researches on the catalytic system for CO2 methanation,the intrinsic kinetics of CO2 methanation under specific conditions have not been thoroughly investigated.Ni/CeO2 catalyst(Ni mass fraction of 10%)was prepared using the combustion method,and samples with varying m(α-Al2O3)∶m(Ni/CeO2)were produced by incorporating α-Al2O3 as the internal diluent.The intrinsic kinetics of CO2 methanation of sample A with m(α-Al2O3)∶m(Ni/CeO2)=25∶1 were examined under the conditions of temperature of 300 ℃,pressure of 1 MPa and gas hourly space velocity of 3 × 106 mL/(g·h).An in-depth analysis of the kinetic equations for the intrinsic CO2 methanation reaction was conducted through a combination of intrinsic kinetic tests,diffuse reflection infrared spectrum,H2-temperature programmed reaction and H2-temperature programmed desorption,etc.The results show that the CH4 generation rate under action of sample A can reach up to 41.4 mmol/(g·h)(H2 partial pressure is 400 kPa,and CO2 partial pressure is 120 kPa).When CO2 partial pressure is 30 kPa to 120 kPa,the CH4 generation rate exhibits linear increases with the rises of the H2 partial pressure,and is not affected by variation of the CO2 or CO partial pressure.Within this CO2 partial pressure range,the hydrogen-rich environment significantly enhances the catalytic activity of the catalyst for CO2 methanation.

关键词

CO2甲烷化/Ni/CeO2催化剂/本征动力学

Key words

CO2 methanation/Ni/CeO2 catalyst/intrinsic dynamics

分类

化学工程

引用本文复制引用

范志辉,岳燕燕,张笑楠,李新立,张少康,张振洲,涂维峰,韩一帆..Ni/CeO2催化剂上CO2甲烷化反应本征动力学研究[J].低碳化学与化工,2024,49(8):123-130,8.

基金项目

国家自然科学基金面上项目(22278379) (22278379)

河南省科技研发计划联合基金(222301420010). (222301420010)

低碳化学与化工

OA北大核心CSTPCD

1001-9219

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