王超

时间:2025-12-04 浏览量: 作者:

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王超教师简介

 

一、个人基本情况

王超,199011月出生,工学博士,副教授,硕士生导师,毕业于日本弘前大学,安全系统工程专业。主要从事碳资源转化与分级利用、重质油短流程加氢提质工艺开发、生物质热化学转化技术、工业催化剂开发、流化床反应器设计、工程热化学等方面研究。

二、学习、工作经历

l 学习经历

2019.10-2022.09

日本弘前大学

安全系统工程

工学博士

2015.09-2018.06

石河子大学

化学工程

工学硕士

2011.09-2015.07

辽宁石油化工大学

应用化学

工学学士

l 工作经历

2025.9-至今

2023.12-2025.8

2018.08-2023.11

辽宁石油化工大学,环境与安全工程学院

广东工业大学,轻工化工学院

沈阳化工大学,能源与化工产业技术研究院

副教授

校聘副教授

讲师

三、学术兼职

工程热化学学会会员;

中国化工学会会员;

中国颗粒学会会员;

辽宁省可再生能源学会理事;

FuelResources Chemicals and MaterialsCarbon Resources Conversion等期刊审稿人。

四、研究方向

本人及所在团队以煤炭、油页岩、生物质等能源资源转化利用,功能炭材料制备等多相复杂反应体系为研究对象,以反应解耦和多尺度调控为主要研究方法,在多尺度(反应)复杂体系、反应器创制、工艺开发、过程模拟计算、系统集成和优化等方面的研究,做出了较多有特色的成果,对推动传统行业领域拓展和产业结构优化升级做出贡献。

1. 碳资源转化技术:生物质气化、碳化、热解、解耦燃烧等技术开发;

2. 重质油加工利用技术:高硫重质油催化加氢脱硫催化剂与整体工艺开发;

3. 流化床工艺设计:小型流化床反应系统设计与中试流化床反应器调试等;

五、主要业绩

主要从事碳资源转化与分级利用相关工作,在Applied energyFuelPowder technologyCRCRCM等国内外知名杂志上发表SCI论文50余篇,申请专利10项。主持国家自然科学基金2项、辽宁省教育厅面上项目1项、参与国家基金项目3项、国家重点研发计划课题3项,参与省重点基金项目3项。2021年获得国家优秀自费留学生奖学金支持。

六、科研项目

1) 国家自然科学基金 面上项目,22678261,生物质流化床两段气化中焦油生成调控与深度脱除机理研究,2027/01-2030/12,在研,主持。

2) 国家自然科学基金 青年科学基金项目,22108175,红外辐射热解废轮胎工艺及其定向调控挥发分二次反应机制的研究,2022/01-2024/12已结题,主持;

3) 辽宁省教育厅高校基本科研项目,LJKMZ20220798,生物质废弃物流化态两段解耦气化技术开发及应用研究,2023/01-2024/12,已结题,主持;

4) 辽宁石油化工大学科研启动项目,主持,2025-092033-09

5) 国家重点研发计划, 2024YFB3411600,高孔隙率氧化镁陶瓷隔热构件烧制成形技术与装备, 2024/12- 2027/11, 在研,参与;

6) 国家基金委面上基金项目,22476027,基于多尺度微纳结构调控构筑石墨烯基凝胶膜及其太阳能驱动水-电联产增效机制 ,2025/1-2028/12,在研,参与;

7) 国家基金委辽宁联合基金重点项目,U1908201,煤/油页岩内构件移动床热解炼油反应器工业放大基础,2020/01-2023/12,结题,参加.

8) 国家重点研发计划政府间国际科技创新合作重点专项,2018YFE0103400,甲烷活化催化机理与高性能催化剂研制及应用,2019/08-2022/07, 结题,参加.

9) 国家重点研发计划,2020YFC1909305, 大型煤制燃气与清洁技术及菱镁产业应用,2020/11-2023/10, 结题,参加.

10) 国家高技术研究发展计划(863 计划), No.2015AA03A401,固定源烟气处理稀土催化材料的应用与开发,2015/3-2018/5,已结题,参与.

11) 盘锦企鸿源化工有限公司,低成本甲醇重整制氢耦合劣质船舶燃料油加氢提质技术开发,2024/8-2025/8, 已结题;

七、发表论文情况

1) Chao Wang, Gang Song, Mengjuan Zhang, Zhenglin Wang, Kaixuan Yang, Xin Jia, Lianxue Lu, Xianglong Cheng, Jiancheng Yang, Kaixuan Li, Jun Pan, Guangwen Xu, Zhennan Han. Catalytic pyrolysis of biomass over NiMo/Al2O3 monolithic catalyst for syngas. Fuel 427 (2027) 139610.

2) Chao Wang, Zhenglin Wang, Mengjuan Zhang, Guangwen Xu et al. Production of low-tar syngas by gasifying corn stalk in a fluidized bed two-stage system using CO2-containing reagent. Fuel 397 (2025) 135264.

3) Chao Wang, Hanyang Li, Mengjuan Zhang, Zhennan Han, Guangwen Xu, et al. Enhanced performance of gasification by blending coal into biomass in a fluidized bed two-stage system, Carbon Resources Conversion 8 (2025) 100333.

4) Chao Wang, Gang Song, Mengjuan Zhang, Zhennan Han, Guangwen Xu, et al. Fluidized bed two-stage O2/steam gasification of agricultural biomass for low-tar syngas: An industrial-scale verification test, Carbon Resources Conversion 8 (2025) 100342.

5) Jiarui He, Mengjuan Zhang, Chao Wang*, Peng Zheng*, et al. Kangjun Wang, Infrared heating-induced Cu defects in Cu-Si-Al catalysts: Enhanced gas-phase furfural hydrogenation with tunable selectivity. Fuel 389 (2025) 134553. 

6) 王超, 贾鑫, 付亮亮, 韩振南, 白丁荣, 许光文, 重要绿色低碳化工技术突破中的工程热化学创新, 中国科学化学, 2025, 55, doi: 10.1360/SSC-2025-0031.

7) Chao Wang, Fangzheng Liu, Lianfeng Zhu, Guangwen Xu*, et al. Two-stage fluidized bed gasification enhanced with oxidative pyrolysis for low-tar producer gas from biomass. Fuel 363 (2024) 130839.

8) Chao Wang, Lianfeng Zhu, Mengjuan Zhang, Guangwen Xu*, et al.. A two-stage circulated fluidized bed process to minimize tar generation of biomass gasification for fuel gas production. Applied Energy, 2022, 323, 119639. 

9) Chao Wang, Mengjuan Zhang; Zhennan Han, Guangwen Xu*, et al., Pilot verifcation of a two-stage fluidized bed gasifer with a downer pyrolyzer using oxygen-rich air. Fuel, 2021, 307: 121816.

10) Chao Wang#; Zhennan Han#; Guoqing Guan*, et al., Further Analysis of the Near-plug Gas Flow Conditions in Micro Gas-solid Fluidized Beds. Powder Technology2022, 404117508. 

11) Chao Wang, Xinyu Wang, Zhennan Han, Mengjuan Zhang, et al., Essential strategies for efficient low–tar biomass gasification: in-bed intensification and interactive two–stage reactions, Resources Chemicals and Materials, 4 (2025) 100087

12) Chao Wang, Jiarui He, Mengjuan Zhang, et al., Significant effect of Ca modification on improving catalytic stability of Cu-catalyst in gas-phase furfural hydrogenation to furfuralcohol. Resources Chemicals and Materials, 2 (2023) 321–330.

13) Mengjuan Zhang, Jianxi Wang, Chao Wang*, et al., Hydro-upgrading of low-rank oil with CO2-containing H2 gas generated online from methanol steam reforming. Fuel 327 (2022) 125172.

14) Mengjuan Zhang#, Chao Wang#, Zhennan Han, Guangwen Xu*, et al., Catalyst Ni-Mo/Al2O3 promoted with infrared heating calcination for hydrodesulfurization of shale oil. Fuel, 2021, 305: 121537

15) Mengjuan Zhang#, Chao Wang#; Kangjun Wang; Guangwen Xu*, et al. Gentle hydrotreatment of shale oil in fixed bed over Ni-Mo/Al2O3 for upgrading. Fuel, 2020, 118495(281)

16) Mengjuan Zhang, Hao Guan, Chao Wang*, Guangwen Xu*, et al. High-value utilization of H2-containing gas in low-rank oil catalytic hydroupgrading. Applied Energy 371 (2024) 123587.

17) Mengjuan Zhang, Cong Zhang, Chao Wang*, et al. Pyrolysis of biomass to produce H-rich gas facilitated by simultaneously occurring magnesite decomposition, Carbon Resources Conversion 8 (2025) 100265. 

18) Chao Wang, Feng Yu, Mingyuan Zhu, et al. .MnO2-CeO2-Al2O3 microspheres for monolithic honeycomb catalyst and application in selective catalytic reduction of NOx with NH3 at 50-150 °C. Chemical Engineering Journal, 346 (2018) 182–192.

19) Chao Wang, Feng Yu, Mingyuan Zhu, et al., High selective catalytic reduction of NOx by MnOx-CeO2-Al2O3 catalysts prepared by self-propagating high-temperature synthesis, Journal of Environmental Sciences, 75, 2019, 124-135.

20) Chao Wang, Feng Yu, Mingyuan Zhu, et al., Up-scaled flash nano-precipitation production route to MnOx-CeO2-Al2O3 catalyst with enhanced activity and H2O resistant performance for NH3 selective catalytic reduction with NOx. Chemical Engineering Research and Design, 134 (2018) 476-486.

21) Chao Wang, Feng Yu, Mingyuan Zhu, et al., Both powdered and performed of MnOx-CeO2-Al2O3 catalysts synthesized by self-propagating high-temperature synthesis for the selective catalytic reduction of NOx with NH3, ACS Omega2018, 3 (5), pp 5692–5703.

八、研究生招生专业及联系方式

l 研究生招生专业:安全科学工程、安全工程

l 联系方式18290730636Email: wangchao_0703@163.com

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