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首页|期刊导航|低碳化学与化工|W负载量对Ni-W双金属催化剂催化CH4-CO2重整反应性能的影响

W负载量对Ni-W双金属催化剂催化CH4-CO2重整反应性能的影响

段姗姗 吕永康 王荀 任瑞鹏

低碳化学与化工2024,Vol.49Issue(12):12-18,26,8.
低碳化学与化工2024,Vol.49Issue(12):12-18,26,8.DOI:10.12434/j.issn.2097-2547.20240083

W负载量对Ni-W双金属催化剂催化CH4-CO2重整反应性能的影响

Effects of W loading amounts on catalytic performances of Ni-W bimetallic catalysts for CH4-CO2 reforming reaction

段姗姗 1吕永康 1王荀 2任瑞鹏1

作者信息

  • 1. 太原理工大学 省部共建煤基能源清洁高效利用国家重点实验室,山西 太原 030024
  • 2. 太原理工大学安全与应急管理工程学院,山西 太原 030024||山西焦煤集团有限责任公司,山西 太原 030024
  • 折叠

摘要

Abstract

CH4-CO2 reforming reaction is a technology for achieving CO2 resource utilization.During CH4-CO2 reforming reaction process,the sintering and carbon deposition of catalysts are the main factors restricting their industrialization.A series of Ni-W bimetallic catalysts were synthesized using the solid-state grinding method.The texture properties,phase compositions,number of active sites,and carbon deposition of the catalysts were analyzed by BET,XRD,H2-TPR,H2-TPD,XPS,TG-DTA and Raman.The effects of different W loading amounts(mass fraction)on catalytic performances and anti-carbon deposition performances of catalysts were evaluated.Compared with monometallic Ni-based catalysts,the introduction of W significantly reduces the particle size of the active component.However,with the increase of W loading,the particle size of the active component increases and the number of active sites significantly decreases in Ni-W bimetallic catalysts.Among them,the initial activity of the Ni2W/SBA-15 is the highest.At 700℃and 30000 mL/(g·h),the conversion rates of CH4 and CO2 are 58%and 66%,respectively.The TG-DTA results show that the Ni6W/SBA-15 produces the least amount of carbon deposition,which is 3.67%after 1450 min.

关键词

CH4-CO2重整/双金属催化剂/抗积炭性能/W负载量

Key words

CH4-CO2 reforming/bimetallic catalysts/anti-carbon deposition performance/W loading amounts

分类

化学化工

引用本文复制引用

段姗姗,吕永康,王荀,任瑞鹏..W负载量对Ni-W双金属催化剂催化CH4-CO2重整反应性能的影响[J].低碳化学与化工,2024,49(12):12-18,26,8.

基金项目

国家自然科学基金(22078226) (22078226)

山西省应用基础研究计划(202103021223115). (202103021223115)

低碳化学与化工

OA北大核心CSTPCD

1001-9219

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