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可再生能源系

朱贤青

2018-09-03 12:12  点击:[]

 

姓名

朱贤青

性别

所在部门

可再生能源系

职称

讲师

职务

 

联系电话

023-65103120

邮箱

xianqingzhu@cqu.edu.cn

 

*个人简介:

朱贤青,工学博士,重庆大学能源与动力工程学院青年教师。2013年获得华中科技大学热能与动力工程学士学位,并保送至华中科技大学煤燃烧国家重点实验室攻读博士。2017年获得博士生国家奖学金。20186月获得华中科技大学热能工程博士学位后入职重庆大学动力工程学院,目前主要从事生物质热溶剂萃取提质及高值化利用,生物质热解、气化及CFD模拟,固体废弃物资源化利用等方面的研究。主持两项华中科技大学研究生创新基金,参与国家自然科学基金国际(地区)合作与交流项目1项、国家自然科学基金面上项目2项、横向项目2项。在FuelBioresource TechnologyEnergy Conversion and ManagementFuel Processing TechnologyEnergy&Fuel等国际权威期刊上发表SCI论文15篇,EI论文5篇。申请国家发明专利9项,已授权5项。多次参加国内外学术会议,并在国际会议上做口头报告3次。

 

教育经历:

2013/09-2018/06     华中科技大学   煤燃烧国家重点实验室   博士

2009/09-2013/06     华中科技大学   能源与动力工程学院     学士

 

*研究方向:

[1] 生物质热溶剂萃取提质及高值化利用

[2] 生物质热解、气化及CFD模拟

[3] 固体废弃物资源化利用

研究生培养:

欢迎认真踏实、对以上研究方向有兴趣的同学报考研究生!向优秀本科生提供助研、节能减排等科研项目训练机会,欢迎随时联系与交流!

 

在研科研项目:

[1] 重庆大学引进人才科研启动费,20万,2018-2021,负责人

[2] 垃圾热解气化炉CFD模拟,企业横向项目,2018-2019,负责人

[3] 国家自然科学基金国际(地区)合作与交流项目:城市含碳固体废弃物清洁高效热转化关键技术的基础研究,2016-2019,参与人

[4] NSFC-山西煤基低碳联合基金项目: 煤的热溶萃取物制备碳纤维研究,2016-2018,参与人

 

已结题科研项目:

[1] 国家自然科学基金青年基金:温和条件下的低阶煤多级分离提质及其动力学研究,2016-2019,参与人

[2] 华中科技大学研究生创新基金,2015-2016负责人

[3] 华中科技大学研究生创新基金,2016-2017负责人

 

*发表论文:

[1] Zhu Xianqing, Tong Shan, Li Xian, et al. Conversion of Biomass into High-Quality Bio-oils by Degradative Solvent Extraction Combined with Subsequent Pyrolysis. Energy & Fuels. 2017, 31(4): 3987-3994.      (SCI二区, IF=3.091)

[2] Zhu Xianqing, Tang Jian, Li Xian, et al. Modeling and Kinetic Study of Degradative Solvent Extraction of Biomass Wastes. Energy & Fuels. 2017, 31(5): 5097-5103.  (SCI二区, IF=3.091)

[3] Zhu Xianqing, Li Xian, Xiao Li, et al. Novel carbon-rich additives preparation by degradative solvent extraction of biomass wastes for coke-making. Bioresource Technology. 2016, 207: 85-91. (SCI一区, IF=5.651)

[4] Zhu Xianqing, Xue Yi, Li Xian, et al. Mechanism study of degradative solvent extraction of biomass. Fuel. 2016, 165: 10-18. (SCI二区, IF=4.601)

[5] Zhu Xianqing, Zhang Zong, Zhou Qixiong, et al. Upgrading and multistage separation of rice straw by degradative solvent extraction. Journal of Fuel Chemistry and Technology. 2015, 43(04): 422-428. (EI)

[6] Xiao Li, Zhu Xianqing, Li Xian, et al. Effect of Pressurized Torrefaction Pretreatments on Biomass CO2 Gasification. Energy & Fuels. 2015, 29(11): 7309-7316. (SCI二区, IF=3.091)

[7] Li Xian*, Zhu Xianqing, Kenshiro Okuda, et al. Preparation of carbon fibers from low-molecular-weight compounds obtained from low-rank coal and biomass by solvent extraction. New Carbon Materials. 2017, 32(1): 41-47. (SCI四区, IF=1.020)

[8] Tong Shan, Xiao Li, Li Xian, Zhu Xianqing, et al. A gas-pressurized torrefaction method for biomass wastes. Energy Conversion and Management, 2018, 173: 29-36. (SCI一区, IF=6.377)

[9] Li Xian, Zhang Zong, Zhang Lei, Zhu Xianqing, et al. Degradative solvent extraction of low-rank coals by the mixture of low molecular weight extract and solvent as recycled solvent. Fuel Processing Technology, 2018,173: 48-55 (SCI二区, IF=3.752)

[10] Xu Kai, Dong Jizhou, Hu Hongyun, Zhu Xianqing, et al. Effect of ash components on the performance of solid oxide electrolyte-based carbon fuel cells. Energy & Fuels, 2018, 32(4): 4538-4546. (SCI二区, IF=3.752)

[11] Xu Yang, Zeng Xiaobo, Zhang Bi, Zhu Xianqing, et al. Experiment and Kinetic Study of Elemental Mercury Adsorption over a Novel Chlorinated Sorbent Derived from Coal and Waste Polyvinyl Chloride. Energy & Fuels. 2016, 30(12): 10635-10642. (SCI二区, IF=3.091)

[12] Xu Kai, Hu Hongyun, Li Zehua, Zhu Xianqing, et al. Investigation of the anode reactions in solid oxide electrolyte based carbon fuel cells. International Journal of Hydrogen Energy. 2017, 42(15): 10264-10274. (SCI二区, IF=3.582)

[13] Gao Yaxin, Ding Lizhi, Li Xian, Wang Wenhui, Xue Yi, Zhu Xianqing, et al. Na&Ca removal from Zhundong coal by a novel CO2-water leaching method and the ashing behavior of the leached coal. Fuel. 2017, 210: 8-14. (SCI二区, IF=4.601)

[14] Li Xian, Wu Zhengyu, Zhang Lian, Liu Xiaowei, Zhu Xianqing, et al. An updated acid dew point temperature estimation method for air-firing and oxy-fuel combustion processes. Fuel Processing Technology. 2016, 154: 204-209. (SCI二区, IF=3.752)

[15] Fang Yuan, Zou Renjie, Luo Guangqian, Chen Juan, Li Zehua, Mao Zhengjiang, Zhu Xianqing, et al. Kinetic Study on Coal Char Combustion in a Microfluidized Bed. Energy & Fuels. 2017, 31:3243-52. (SCI二区, IF=3.091)

[16] Li Xian, Zhu Xianqing, Xiao Li, et al. Degradative solvent extraction of demineralized and ion-exchanged low-rank coals. Journal of Fuel Chemistry and Technology. 2014, 42(8): 897-904. (EI)

[17] 朱贤青,张宗,周岐雄,等. 稻杆的热溶剂提质及多级分离. 燃料化学学报. 2015, 43(04): 422-428. (EI)

[18] 李显,朱贤青,肖黎,等. 酸洗脱灰及离子交换对低阶煤热溶剂提质分离的影响. 燃料化学学报. 2014, 42(08): 897-904. (EI)

[19] 尹静姝,方园,朱贤青,等. 微型流化床-快速过程红外热分析仪对CaCO_3热分解的动力学研究. 工程热物理学报. 2014(06): 1216-1220. (EI)

 

发明专利

1.      朱贤青,李显,姚洪,徐凯等. 一种用低阶煤热溶萃取残渣制备高品质活性炭的方法. 国家发明专利,专利号:201710725953.8

2.      朱贤青,李显,姚洪,徐凯等. 一种耦合热溶萃取和热解制备高品质生物油和气体的方法. 国家发明专利,已授权:ZL201610834375.7

3.      朱贤青,李显,姚洪,胡振中等. 一种低阶煤热溶剂萃取提质方法,国家发明专利,专利号:201710769336.8

4.      李显,朱贤青,姚洪,刘华强等. 一种气煤及其制备方法. 国家发明专利,已授权:ZL201610035651.3

5.      李显,朱贤青,李宇航等. 一种将生物质萃取产物作为添加剂应用于配煤炼焦的方法. 国家发明专利,已授权:ZL201510081203.2

6.      李显,吴超, 朱贤青 钱伟祥, 胡振中,姚洪,汪峰,张旭,聂帅,熊钊. 生物质萃取物与聚丙烯腈共纺制备碳纤维的方法及碳纤维. 国家发明专利. 专利号:201711453452.5

7.      李显,胡振中,姚洪, 朱贤青,徐凯,吴超,钱伟祥. 基于生物质热溶萃取物制备超级电容器电极材料的方法. 国家发明专利. 专利号:201810113584.1

8.      罗光前,方园,李凯迪,李进,姚洪,朱贤青,段然. 一种两段式固体燃料分级反应动力学分析设备. 国家发明专利,已授权:ZL201510242635.7

9.      李显,薛毅,王文慧,张宗,姚洪,朱贤青,肖黎. 一种煤的脱碱方法,国家发明专利,专利号:201510638511.0

 

学术会议交流:

1.      Xianqing Zhu, Shan Tong, Xian Li, et al. Conversion of biomass into high-quality products by degradative solvent extraction combined with subsequent pyrolysis. 6th International Conference on Sustainable Energy and Environment. November 28-30, 2016, Bangkok, Thailand. (oral report)

2.      Xianqing Zhu, Jin Ge, Shan Tong, et al. Novel additives obtained from low grade biomasses for coke-making. 18th International Coal Preparation Congress. June 28-30, 2016, Saint Petersburg, Russia. (oral report)

3.      Xianqing Zhu, Shiping Huang, Huaqiang Liu, et al. Coke-making additives preparation by degradative solvent extraction of biomass wastes. 13th China-Japan Symposium on Coal and C1 Chemistry. September 1-3, 2015, Dunhuang, China. (oral report)

4.      Yi Xue, Wenhui Wang, Xianqing Zhu, et al. Removal of Na&Ca from zhundong coal by CO2-water treatment. 13th China-Japan Symposium on Coal and C1 Chemistry. September 1-3, 2015, Dunhuang, China.

5.      Zong Zhang, Yi Xue, Xianqing Zhu, Xian Li, et al. Combustion Behavior of Low-Rank Coal Upgraded by Degradative Solvent Extraction. Clean Coal Technology and Sustainable Development, Springer, 2016, 31-37.

6.      Zehua Li, Kai Xu, Yuan Fang, Xianqing Zhu, et al. Effect of CO2 and steam gasification on char combustion in an O2/CO2/Steam atmosphere. 5th International Symposium on Gasification and Its Application. November 28-30, 2016, Busan, Korea.

7.      Xian Li, Zong Zhang, Lei Zhang, Xianqing Zhu, et al. Degradative solvent extraction of low-rank coals by the mixture of low molecular weight extract and solvent as recycled solvent. 6th Sino-Australian Symposium on Advanced Coal and Biomass Utilisation Technologies. December 4-8, 2017, Perth, Western Australia. (oral report)


 

[English version]

Xianqing Zhu, PhD, Lecturer

Xianqing Zhu received his PhD degree from School of Energy and Power Engineering, Huazhong University of Science and Technology in June 2018. In 2017, he received a PhD student national scholarship. He joined the School of Power Engineering, Chongqing University in 2018. Currently, his major research topics focused on (1) Degradative solvent extraction and upgrading of biomass waste (2) Biomass pyrolysis, gasification technologies   and CFD simulation (3) Resource utilization of municipal solid waste. Dr. Xianqing Zhu has presided two graduate innovation funds of Huazhong University of Science and Technology, and participated in three National Natural Science Foundations. He has published 15 SCI papers in international authoritative journals such as Fuel, Bioresource Technology, Energy Conversion and Management, Fuel Processing Technology and Energy & Fuel, and applied for 9 national invention patents. He has attended international academic conferences for many times and made three oral reports.

 

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