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李钰
讲师
能源与动力学院
个人邮箱:
liyu@just.edu.cn
办公地点:
能源与动力学院333
通讯地址:
江苏省镇江市丹徒新区江苏科技大学能源与动力学院
邮政编码:
212000
传真:

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  • 李钰(邮箱:liyu@just.edu.cn),男,江苏科技大学能源与动力学院讲师,于华中科技大学能源与动力工程学院国家重点实验室获得博士学位,研究方向为电催化还原CO2为高附加值工业产品、CO2捕集高效低能耗材料开发、合成气转化高附加值产品开发及精细化工、水力机械流场优化以及机械减振降噪。担任Thermal Science and Engineering Progress , Journal of Low Frequency Noise, Vibration and Active Control, Advance in Mechanical Engineering等国际期刊的审稿工作。中国工程热物理学会会员。负责《能源与动力工程测试技术》必修课教学。


    部分发表论文:

    [1] Yu LiJing Liu*, Feng Liu, Yingju Yang. Mechanistic study of the effect of oxygen vacancy and sulfur poisoning on the reaction of copper ferrite spinel with CO during chemical-looping combustion. Fuel(国际一区top期刊), 2021,299: 120931.

    [2] Yu LiJing Liu*, Feng Liu, Yingju Yang, Ruixue Fang. Interaction mechanism between CO and H2S over CuFe2O4 oxygen carrier during chemical-looping combustion: A DFT study. Fuel (国际一区top期刊), 2022,324: 124720.

    [3] Yu LiJing Liu*, Feng Liu, Yingju Yang. Computational design and experimental validation of transition-metal doped CuFe2O4 as oxygen carriers in chemical-looping combustion. Fuel (国际一区top期刊), 2022,330: 125584. 

    [4] Yu LiJing Liu*, Feng Liu, Yingju Yang, Ruixue Fang. Theoretical insights into H2S reaction mechanism over CuFe2O4 oxygen carrier. Journal of the Energy Institute  (二区期刊), 2021, 99: 120–126. 

    [5] Yu LiJing Liu*, Feng Liu, Yingju Yang. Influence of doping Al on the reactivity performance of Cu–Fe spinel-type oxygen carrier during chemical-looping combustion. Journal of the Energy Institute (二区期刊), 2022, 105: 25–32.

    [6] Yu Li, Jing Liu*, Feng Liu, Yingju Yang. Experimental and theoretical insights into sulfur resistance of transition metal-doped Cu-Fe spinel during chemical looping combustion. International Journal of Hydrogen Energy (国际二区top期刊),2023,48:16897-16909.

    [7] Li Wang, Yu Li,  Renjie Zou, et al. Experimental and theoretical study on recovered nano amorphous selenium as efficient adsorbents for mercury capture from flue gas. Journal of Cleaner Production  (国际一区top期刊), 2024, 141804.

    [8] Li Wang, Yu Li,  Renjie Zou, et al. Insight into the influence of environmental factors on selenite removal from desulfurization wastewater by NZVI@AC: An experimental and theoretical study. Journal of Water Process Engineering JCR一区期刊), 2024, 57.



  • 电催化还原CO2为高附加值工业产品

    CO2捕集高效低能耗材料开发

    合成气转化高附加值产品开发及精细化工

    水力机械流场优化

    机械减振降噪


  • 2023.06至今,        大胜达包装股份有限公司-江苏科技大学          博士后

    2023.03至今,        江苏科技大学,能源与动力学院,               讲师

    2019.092023.03  华中科技大学,清洁能源国家重点实验室,             博士

    2018.072019.06  AO史密斯有限公司(美资)                          研发工程师

    2015.092018.06  江苏大学热能与动力工程(国家重点学科),              硕士

    2011.092015.06  江苏大学热能与动力工程(国家重点学科,卓越班),      学士


  • 负责《能源与动力工程测试技术》必修课程教学