无机盐工业
主管:中海油天津化工研究设计院有限公司
主办:中海油天津化工研究设计院有限公司
   中海油炼油化工科学研究院(北京)有限公司
   中国化工学会无机酸碱盐专业委员会
ISSN 1006-4990 CN 12-1069/TQ

无机盐工业 ›› 2026, Vol. 58 ›› Issue (2): 117-124.doi: 10.19964/j.issn.1006-4990.2025-0005

• 催化材料 • 上一篇    

沉淀温度对二氧化碳加氢制甲醇催化剂结构及其性能的影响研究

李通(), 李妮娜, 李延鹏, 王小龙, 王盼盼, 吴平, 周云云, 朱传宗   

  1. 浙江绿色智行科创有限公司,浙江 宁波 315000
  • 收稿日期:2025-01-02 出版日期:2026-02-10 发布日期:2026-03-12
  • 作者简介:李通(1988— ),男,博士,高级工程师,主要研究方向为工业催化;E-mail:tong.li16@geely.com
  • 基金资助:
    浙江省科技计划项目(2024SJCZX0015)

Study on effect of precipitation temperature on structure and catalytic performance of catalysts over hydrogenation of carbon dioxide to methanol

LI Tong(), LI Nina, LI Yanpeng, WANG Xiaolong, WANG Panpan, WU Ping, ZHOU Yunyun, ZHU Chuanzong   

  1. Zhejiang Green Intelligent Vehicle and Components Technology Innovation Center,Ningbo 315000,China
  • Received:2025-01-02 Published:2026-02-10 Online:2026-03-12

摘要:

高性能催化剂的研制是二氧化碳加氢制甲醇领域的核心,然而催化剂前体中各物相的生成条件及其与催化剂性能之间的对应关系尚不明确。采用共沉淀法在不同沉淀温度下制备系列铜锌铝催化剂,并对制备的催化剂进行XRD、SEM、BET、H2-TPR、CO2-TPD等表征分析,同时采用固定床反应装置考察催化剂的二氧化碳加氢制甲醇反应性能。结果表明:沉淀温度对催化剂的晶体结构、微观形貌和Cu-ZnO物种相互作用具有显著影响;低温沉淀有利于催化剂前体形成绿铜锌矿物种,且有利于形成较小的晶体尺寸;较高的沉淀温度有利于催化剂前体形成类孔雀石晶相,并产生更多的Cu-O-Zn位点,这些位点具有较高的CO2加氢反应活性。铜锌铝催化剂的二氧化碳加氢制甲醇催化性能可能由催化剂的晶粒尺寸和铜锌界面共同决定。研究结果显示,铜锌铝催化剂的最佳沉淀温度为70 ℃,在此温度下制备的CZA-70催化剂在温度为240 ℃、反应压力为5 MPa、空速为10 000 mL/(g·h)、原料气各组分体积比为V(CO2)∶V(H2)∶V(N2)=23.5∶70.5∶6条件下,二氧化碳加氢制甲醇反应中CO2转化率为23.8%、甲醇选择性为60.9%、甲醇时空收率达0.48 g/(g·h)。

关键词: 二氧化碳加氢, 铜锌铝催化剂, 共沉淀法, 甲醇

Abstract:

The development of high-performance catalysts play curial role in the field of CO2 hydrogenation to methanol,however,the formation conditions of crystal phases of catalyst precursors and their corresponding relationships with catalytic performances remain unclear.A series of Cu/ZnO/Al2O3 catalysts synthesized at different precipitation temperatures were prepared by co-precipitation method.The prepared catalysts were characterized by XRD,SEM,BET,H2-TPR and CO2-TPD.Meanwhile,the catalytic performances of the prepared catalysts in CO2 hydrogenation to methanol was also investigated in the fixed bed setup.The results indicated that the precipitation temperature had significant effects on the crystal structure,microstructure and interaction of Cu-ZnO species.Low temperature precipitation was conducive to the formation of aurichalcite phase of catalyst precursors and smaller crystalline size.Higher precipitation temperature was conducive to the formation of malachite phase and generating more Cu-O-Zn sites in the catalyst,which were regarded as the active sites for CO2 hydrogenation to methanol.The catalytic performance of Cu/ZnO/Al2O3 catalyst for hydrogenation of carbon dioxide to methanol was probably determined by the catalyst crystalline size and copper-zinc interface.The optimal precipitation temperature was 70 ℃ within the scope of this investigation.Under the reaction conditions of 240 ℃,5 MPa,GHSV of 10 000 mL/(g·h),and feed gas composition of V(CO2)∶V(H2)∶V(N2)=23.5∶70.5∶6(volume ratio),CZA-70 catalyst,which was prepared at optimal precipitation temperature,showed 23.8% of CO2 conversion,60.9% of methanol selectivity and 0.48 g/(g·h) of methanol space time yield.

Key words: hydrogenation of carbon dioxide, Cu/ZnO/Al2O3 catalyst, co-precipitation method, methanol

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