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胡佳玮

      姓名             胡佳玮
      性别             男
      职称             副研究员三级
      电子邮件       hujw@sari.ac.cn
      通讯地址        上海市浦东新区海科路100号9A楼403室
      个人网页       https://people.ucas.edu.cn/~JiaweiHu








招生专业

化学;化学工程与技术;材料与化工;

简历

2018年于比利时根特大学获得化学工程博士学位,师从比利时皇家科学与艺术学院院士Guy B. Marin教授。2019至2021年于新加坡国立大学开展博士后工作,2021年10月加入中国科学院上海高等研究院,任副研究员。曾担任《低碳化学与化工》青年编委,Catalysts、Processes、清洁能源科学与技术等期刊客座编辑。

研究方向

1. 面向节能减排的新型化学链技术研究
2. 面向CO2和CH4高效转化的催化材料创制

获奖及荣誉

1.上海市领军人才(海外),2022年。
2.浦东新区“明珠菁英人才”,2024年。

承担科研项目情况

1. 中国科学院低碳转化科学与工程重点实验室开放课题,“新型Ni掺杂TiO2二维纳米片用于温和条件下光热协同集成型二氧化碳捕集与甲烷化反应的研究”,项目负责人,2022.11-2024.102. 面向CO2和CH4高效转化的催化材料创制
2.中国科学院先导项目(A类),“跨行业耦合与循环利用”,参与,2024.01-2028.09
3.国家能源集团委托项目,“微藻固碳协同生态修复技术研发”,参与,2023.11-2026.01
4.上海市“科技创新行动计划”科技支撑碳达峰碳中和项目,“二氧化碳电还原制乙醇负碳技术研究及千吨/年中试验证”,参与, 2023年12月-2026年11月

代表论著

1. 文章
[1] Jiawei Hu, Hilde Poelman, Stavros-Alexandros Theofanidis, Jonas J. Joos, Christophe Detavernier, Dirk Poelman, Wei Wei, Vladimir V. Galvita*. High temperature H2S removal via CO2-assisted chemical looping over ZrO2-modified Fe2O3, Applied Catalysis B: Environmental, 2023, 330, 122591.
[2] Jiawei Hu, Plaifa Hongmanorom, Junmei Chen, Wei Wei, Prae Chirawatkul, Vladimir V. Galvita, Sibudjing Kawi*. Tandem distributing Ni into CaO framework for isothermal integration of CO2 capture and conversion, Chemical Engineering Journal, 2023, 452, 139460.
[3] Jiawei Hu, Plaifa Hongmanorom, Prae Chirawatkul, Sibudjing Kawi*. Efficient integration of CO2 capture and conversion over a Ni supported CeO2-modified CaO microsphere at moderate temperature, Chemical Engineering Journal, 2021, 426, 130864.
[4] Jiawei Hu, Vladimir V. Galvita, Hilde Poelman, Zhigang Wang, Guy B. Marin*, Sibudjing Kawi*. Coupling CO2 utilization and NO reduction in chemical looping manner by surface carbon, Applied Catalysis B: Environmental, 2021, 297, 120472.
[5] Jiawei Hu, Plaifa Hongmanorom, Vladimir V. Galvita, Zhan Li, Sibudjing Kawi*. Bifunctional Ni-Ca based material for integrated CO2 capture and conversion via calcium-looping dry reforming, Applied Catalysis B: Environmental, 2021, 284, 119734.
[6] Alessandro Longo, Stavros Alexandros Theofanidis, Chiara Cavallari, Nadadur Veeraraghavan Srinath, Jiawei Hu, Hilde Poelman*, Maarten K. Sabbe, Christoph J. Sahle, Guy B. Marin, Vladimir V. Galvita. What makes Fe-modified MgAl2O4 an active catalyst support? Insight from X-ray Raman Scattering, ACS Catalysis, 2020, 10, 6613-6622.
[7] Jiawei Hu, Hilde Poelman, Guy B. Marin, Christophe Detavernier, Sibudjing Kawi, Vladimir V. Galvita*. FeO controls the sintering of iron-based oxygen carriers in chemical looping CO2 conversion, Journal of CO? Utilization, 2020, 40, 101216.
[8] Jiawei Hu, Vladimir V. Galvita*, Hilde Poelman, Christophe Detavernier, Guy B. Marin. Pressure-induced deactivation of core-shell nanomaterials for catalystassisted chemical looping, Applied Catalysis B: Environmental, 2019, 247, 86-99.
[9] Jiawei Hu, Vladimir V. Galvita*, Hilde Poelman, Christophe Detavernier, Guy B. Marin. Catalyst-assisted chemical looping auto-thermal dry reforming: Spatial structuring effects on process efficiency, Applied Catalysis B: Environmental, 2018, 231, 123-136.
[10] Jiawei Hu, Vladimir V. Galvita*, Hilde Poelman, Guy B. Marin. Advanced chemical looping materials for CO2 utilization: A review, Materials, 2018, 11, 1187.
[11] Jiawei Hu, Vladimir V. Galvita*, Hilde Poelman, Christophe Detavernier, Guy B. Marin. A core-shell structured Fe2O3/ZrO2@ZrO2 nanomaterial with enhanced redox activity and stability for CO2 conversion, Journal of CO2 Utilization, 2017, 17, 20-31.
[12] Jiawei Hu, Lukas Buelens, Stavros-Alexandros Theofanidis, Vladimir V. Galvita*, Hilde Poelman, Guy B. Marin. CO2 conversion to CO by auto-thermal catalyst-assisted chemical looping, Journal of CO2 Utilization, 2016, 16, 8-16.
[13] Jiawei Hu, Zhiming Zhou*, Rui Zhang, Li Li, Zhenmin Cheng. Selective hydrogenation of phenylacetylene over a nano-Pd/α-Al2O3 catalyst, Journal of Molecular Catalysis A: Chemical, 2014, 381, 61-69.
2. 专利
[1] 胡佳玮,高强,孙楠楠,魏伟。一种多孔结构的钙基CO2吸附剂、制备方法及其应用,中国发明专利,2023,申请号: 2023107269200