杨远东

作者: 时间:2022-10-21 点击数:

杨远东,男,1994年生,中共党员,工学博士,助理研究员,硕士生导师,入选“山东大学青年学者未来计划”,SCI期刊Carbon Capture Science & Technology (2024IF=10.4)青年编委。2016年本科毕业于山东大学能源与动力工程学院,2021年博士毕业于华中科技大学煤燃烧国家重点实验室(导师:WENQIANG LIU、徐明厚),2022年起任山东大学热科学与工程研究中心助理研究员(讲师),兼任单位研究生招生秘书。

1、基本信息:

个人主页:https://faculty.sdu.edu.cn/yangyuandong/

ResearchGatehttps://www.researchgate.net/profile/Yuandong-Yang/

E-mailyyd@sdu.edu.cn

办公地址:山东大学千佛山校区北区教学一楼四层203

2、研究方向:

主要从事“双碳”目标下的负碳技术、清洁能源技术研究(详细如下),每年招收硕士2,同时欢迎有科研兴趣的本科生交流讨论、开展工作!

[1] 基于固体吸附剂的二氧化碳捕集技术 (CCS)

[2] 基于吸附剂-催化剂双功能材料的二氧化碳捕集原位转化技术(DFMs-ICCC)

[3] 基于吸附剂的中高温热化学储能技术(TcES)及压缩二氧化碳储能技术(CCES)

[4] 固体吸附剂造粒成型技术

3、科研项目:

ü 纵向科研项目:

[1] 2023.7-2028.6:山东大学青年学者未来计划项目(项目负责人)

[2] 2023.1-2025.12:国家自然科学基金青年项目(项目负责人)

[3] 2023.1-2026.12:国家自然科学基金面上项目(项目骨干)

[4] 2018.12-2022.12:科技部国家重点研发计划课题项目(项目骨干)

ü 横向应用项目:

[1] 2024.3-2024.12:国电投山东公司海上光伏钢结构桩基防腐关键技术研究项目(共同负责人)

[2] 2020.8-2020.9:国家建投遵化热电2×350MW机组汞氧化性能考核项目(项目骨干)

[3] 2017.5-2017.9:上海电气燃用高氯煤3MW试验平台汞及PM排放特性试验项目(项目骨干)

4、科研成果:

已在相关研究方向累计发表SCI论文40余篇,总计被引1300余次,H-index=21 (Web of Science)。其中以第一作者/通讯作者J. Mater. Chem. A., Chem. Eng. J., P. Combust. Inst.等能源环境领域SCI期刊发表论文16篇(含中科院一区9篇,IF>10七篇,曾入选ESI高被引1篇),并以第一申请人授权国家发明专利4项。此外,出版编著1部、参与制定团体标准2,详细如下:

ü 期刊论文(第一/通讯作者):

>> 2024 <<

[1] Wang XC, Yang YD*, Li YJ*, et al. Hydrothermal-calcination synthesis of lithium orthosilicate microspheres for high-temperature CO2 capture. Carbon Capture Science & Technology, 2024, Just Accepted. (2024IF=10.4);

[2] Yan XY, Yang YD*, Liu WQ*, et al. Screening of organic lithium precursors for producing high-performance Li4SiO4-based thermochemical energy storage materials: Experimental and kinetic investigations. Journal of Energy Storage, 2024, 85, 111098. (2024IF=8.9);

[3] Sun XD, Zhang XK*, Yang YD*, et al. A cation-ion conducting direct alcohol fuel cell: Establishing pH-asymmetric to simultaneous generate electricity and hydrogen. International Journal of Hydrogen Energy, 2024, 59, 825-832. (2024IF=8.1);

[4] Wang XC, Ren XH*, Yang YD*, et al. Li4SiO4-based heat carrier derived from different silica sources for thermochemical energy storage. Energies, 2024, 17, 2180. (2024IF=3.0);

>> 2023 <<

[5] Yang YD, Sun XD*, Ren XH*, et al. Kinetic and thermodynamic investigations on the cyclic CO2 adsorption-desorption processes of lithium orthosilicate. Chemical Engineering Journal, 2023, 468, 143679. (2024IF=13.3);

[6] Yang YD, Wu DW*, Liu WQ*, et al. One-step fabrication of size-controllable, biowaste-templated Li4SiO4 spherical pellets via freeze-drying method for cyclic CO2 capture. Chemical Engineering Journal, 2023, 462, 142297. (IF=13.3);

[7] Yang YD, Sun XD*, Liu WQ*, et al. Li4SiO4 adsorbent derived from industrial biomass fly ash for high-temperature CO2 capture. Fuel, 2023, 337, 126853. (2024IF=6.7);

[8] Zhang XY, Liu WQ*, Yang YD*, et al. Fabrication of structure-improved, sintering-resistant Li4SiO4 materials for stabilized thermochemical energy storage in concentrated solar power plants. Journal of Energy Storage, 2023, 70, 108078. (2024IF=8.9)

>> 2022年之前 <<

[9] Yang YD, Liu WQ*, et al. Eutectic doped Li4SiO4 adsorbents using the optimal dopants for highly efficient CO2 removal. Journal of Materials Chemistry A, 2021, 9, 14309-14318. (2024IF=10.7,当期外封底文章outside back cover);

[10] Yang YD, Liu WQ*, et al. High-temperature CO2 adsorption by one-step fabricated Nd-doped Li4SiO4 pellets. Chemical Engineering Journal, 2021, 410, 128346. (IF=13.3);

[11] Yang YD, Liu WQ*, Xu MH*, et al. Mineral-derived Li4SiO4-based adsorbent for post-combustion CO2 capture: An experimental and kinetic investigation. Proceedings of the Combustion Institute, 2021, 38, 5339-5346. (2024IF=5.3, 燃烧领域顶刊);

[12] Yang YD, Liu WQ*, et al. Novel synthesis of tailored Li4SiO4-based microspheres for ultrafast CO2 adsorption. Fuel Processing Technology, 2021, 213, 106675. (2024IF=7.2);

[13] Yang YD, Liu WQ*, et al. Mechanochemically activated Li4SiO4-based adsorbent with enhanced CO2 capture performance and its modification mechanisms. Fuel, 2020, 273, 117749. (2024IF=6.7);

[14] Yang YD, Liu WQ*, Zhou ZJ*, et al. Novel low cost Li4SiO4-based sorbent with naturally occurring wollastonite as Si-source for cyclic CO2 capture. Chemical Engineering Journal, 2019, 374, 328-337. (2024IF=13.3);

[15] Yang YD, Liu WQ*, et al. Enhancement of CO2 absorption in Li4SiO4 by acidification and eutectic doping. Energy & Fuels, 2018, 32, 12758-12765. (2024IF=5.2);

[16] Yang YD, Liu WQ*, et al. One-step synthesis of porous Li4SiO4-based adsorbent pellets via graphite moulding method for cyclic CO2 capture. Chemical Engineering Journal, 2018, 353, 92-99. (2024IF=13.3, 单篇被引108, 曾入选ESI高被引论文);

ü 授权专利:

[1] 杨远东等,一种球状锂基CO2吸附剂的制备方法及设备。已授权,专利号:ZL 2018 1 0277041.3;

[2] 杨远东等,一种锂基CO2吸附剂及其制备方法。已授权,专利号:ZL 2018 1 1582836.1;

[3] 杨远东等,湿法研磨改性硅酸锂及其制备方法与作为吸附剂的应用。已授权,专利号:ZL 2018 1 0277041.3;

[4] 杨远东等,一种微米级球状锂基CO2吸附剂及其制备方法。已授权,专利号:ZL 2020 1 0052789.0;

ü 编著与标准:

[1] 《燃煤耦合生物质技术规范》, T/CIECCPA 006-2024, 中国工业节能与清洁生产协会团标, 2024.03

[2] 《固体二氧化碳吸附剂的性能指标及测试方法》, 中国工业节能与清洁生产协会团标, 已立项未发布

[3] 双碳目标下的高温碳捕集技术》,ISBN 9787511155535, 中国环境出版社, 2023.06 (28万字)

5、学术兼职与荣誉:

ü 学术兼职:

[1] SCI期刊Carbon Capture Science & Technology (IF=10.4)青年编委 (Early Career Editor);

[2] SCI期刊Frontiers in Energy Research, Materials客座编辑 (Guest Editor);

[3] 国际碳捕集协会(IACC) Senior Member

[4] Chem. Eng. J, Sep. Puri. Tech., Fuel等多个SCI期刊独立审稿人;

ü 主要荣誉:

[1] 优秀口头报告,第二届中国化学链会议, 2023;

[2] Best Oral Presentation Award. International Conference on Carbon Capture Science and Technology (CCST2022), 2022;

6、授课信息:

承担本科生专业课程《工程热力学》、《能量转换系统与设备》,通识课程《新能源与先进储能技术》、《碳达峰与碳中和》教学工作


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