师资队伍
动力工程及工程热物理(学术型)/动力工程(专业型)
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张苗苗

   

张苗苗,女,汉族,河北石家庄人,博士,讲师(校聘副教授),硕士生导师。本科毕业于山东大学,2025年于山东大学动力工程及工程热物理专业获工学博士学位,主要从事甲烷高值化转化、二氧化碳资源化利用、微波场多相催化及仿真模拟等方面的研究工作。近年来,主持省级、校级基金项目3项,参与国家自然科学基金1项、省部级重点研发计划2项、企业横向2项等项目;在Chemical Engineering Journal、Journal of Materials Chemistry A等国际权威期刊发表SCI论文20余篇;授权发明专利2项。

主要科研项目:

[1]微波协同高熵氧化物催化剂强化CH4-CO2重整关键技术研究,河南省科技攻关项目,2026.01-2027.12,在研,主持

[2]基于高能活性位点精准调控的微波催化CH4-CO2重整机制研究,校博士基金项目,2026.01-2029.12,在研,主持

[3]面向微波辐射的MOFs衍生催化剂定向调控及CH4-CO2重整机理研究,开云官方官网登录入口青年探索创新性基金,2026.01-2027.12,在研,主持

[4] 微波耦合高熵氧化物催化焦油CO2资源化重整的反应机制与调控方法研究,国自然面上,2025.01-2028.12,在研,参与

代表性学术论文:

[1] Zhang Miaomiao, Gao Yibo, Mao Yanpeng*, et al. Enhanced dry reforming of methane by microwave-mediated confined catalysis over Ni-La/AC catalyst. Chemical Engineering Journal, 2023, 451:138616.

[2] Zhang Miaomiao, Gao Yibo, Mao Yanpeng*, et al. Hierarchical core-shell Ni@C-NCNTs nanocomposites tailored for microwave-induced dry reforming of methane process. Journal of Materials Chemistry A, 2023, 11(40):21908-21926.

[3] Zhang Miaomiao, Gao Yibo, Jin Yang, et al. New insights into microwave-mediated dry reforming of methane over Al2O3-stabilized activated carbon-based catalysts: Experimental and DFT study. International Journal of Hydrogen Energy, 2025, 109, 344-356.

[4] Zhang Miaomiao, Gao Yibo, Wang wenlong, et al. Effect of promoters on the syngas production in the microwave-enhanced methane dry reforming over Ni-x/AC (x=Mg, Ca, La, Ce) catalysts. Journal of CO2 Utilization, 2025, 95, 103064.

[5] Zhang Miaomiao, Zhou Meng, Gao Yibo, et al. Eu3+/Tb3+ co-doped CaWO4 for multi-color luminescence, electromagnetic immunity and dual-mode self-calibration optical thermometry. Ceramics International, 2025, 16, 22075-22085.

[6] Gao Yibo, Zhang Miaomiao, Mao Yanpeng*, Microwave-triggered low temperature thermal reduction of Zr-modified high entropy oxides with extraordinary thermochemical H2 production performance. Energy Conversion Management, 2022, 252, 115125.

[7] Guo Dexun, Zhang Miaomiao, Zhang Baoxu, Microwave plasma torch enhances direct conversion of solid waste gasification tars for high-selectivity hydrogen production. Process Safety and Environmental Protection, 2026, 207, 108453.


联系方式:E-mail: zmm@hpu.edu.cn