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热能工程系

秦昌雷

2018-08-24 10:31  点击:[]

 

姓名

秦昌雷

性别

所在部门

热能工程系

职称

副教授

职务

 

联系电话

023-65103101

邮箱

c.qin@cqu.edu.cn

 

个人简介:

山东莱芜人。工学博士,副教授,博士生导师。2010-2014年在澳大利亚昆士兰大学(The University of Queensland)攻读并获得博士学位,期间受昆大国际游学资助访问加拿大自然资源部CanmetENERGY能源中心。2014年引进重庆大学动力工程学院,2018年遴选为博士生导师,2019年被评为“重庆大学先进工作者”。

目前围绕CO2高温吸脱附、甲烷/生物质定向产氢、化学链燃烧及气化等能源的低碳与清洁转化技术,在气-/-固反应过程、高效吸附/催化剂合成、颗粒成型与磨损、流态化反应器等方面开展实验与模拟工作。主持国家自然科学基金,重庆市基础科学与前沿技术研究专项,重庆市留创计划(重点),教育部留学回国人员科研基金等一系列国家/省部级科研项目;主研国家重点研发计划,重庆市重点产业共性关键技术创新专项等。

截至20198月,已在Environ. Sci. Technol.Appl. EnergyChem. Eng. J.FuelEnergy Fuels等国际著名学术期刊发表SCI论文43篇,其中第一/通讯作者中科院一区论文8篇、二区论文13篇(2篇入选ESI高被引论文,7篇影响因子>8),论文被引约1100次,H-index21。曾在国际学术会议口头报告6次,担任国际会议分会场主席1次。获重庆市科技进步三等奖1项,参编教材2部。应邀担任国家自然科学基金通讯评审人,Environ. Sci. Technol.Appl. EnergyChem. Eng. J.FuelACS Sustainable Chem. Eng.Energy Fuels,化工学报,化工进展等二十余个国内外权威期刊特邀审稿人。

 

教育经历:

2010.8-2014.3The University of Queensland,机械与采矿工程学院,工学博士,导师: Dr. Bo FengA/Prof. Alexander Klimenko

2008.9-2010.7,重庆大学动力工程学院,保送硕博连读,导师: 冉景煜 教授

2004.9-2008.7,重庆大学动力工程学院,工学学士,导师: 冉景煜 教授

 

主要研究兴趣:

(1)             CO2高温吸附与利用 (CO2 adsorption at high-temperature and utilization)

(2)             生物质/甲烷定向产氢 (Biomass or methane to high purity Hydrogen)

(3)             化学链燃烧与气化 (Chemical looping combustion or gasification)

 

教学/学生培养:

主讲本科生《燃烧学》、《动力工程计算方法》及研究生《动力机械测试原理》课程。

负责的“低碳控制与产氢”课题组研究经费充足,实验与模拟条件完备,具有德国耐弛热重分析仪、美国NOVA非色散红外光谱仪、美国PE傅里叶变换红外光谱仪、整体式生物质气化平台、甲烷重整反应平台、35 kW串行流化床系统、挤出—滚圆机等一系列实验仪器与装备。与澳大利亚昆士兰大学、墨尔本大学、科钦大学、加拿大CanmetENERGY、英国克兰菲尔德大学、西班牙CSIC等国内外诸多知名高校的课题组保持长期稳定的合作交流关系。

欢迎思维活跃、做事踏实且有志于发展低碳、清洁能源转化技术的同学报考硕士及博士研究生;同时也为杰出本科生提供国创、SRTP、节能减排比赛等科研实践与训练机会。

 

部分科研项目:

(1)          国家自然科学基金青年项目,23万,2017-2019,负责人

(2)          重庆市基础科学与前沿技术研究专项,5万,2017-2020,负责人

(3)          重庆市留学回国人员创业创新支持计划(重点),12万,2017-2019,负责人

(4)          国家重点研发计划:用于CO2捕集的高性能吸收剂/吸附材料及技术,98万,2017-2021,主研人

(5)          重庆大学引进人才科研启动经费,30万,2014-2018,负责人

(6)          教育部留学回国人员科研启动基金,3.5万,2015-2017,负责人

(7)          教育部重点实验室科研基金,4万,2016-2017,负责人

(8)          重庆市重点产业共性关键技术创新专项,35万,2016-2019,主研人

(9)          中央高校基本科研业务费,8万,2015-2017,负责人

(10)      重庆市博士后科研项目特别资助(一等),20万,2015-2016,负责人

(11)      中国博士后面上项目,5万,2015-2016,负责人

(12)      中澳洁净煤技术研究与发展联合协调项目,62万元澳元,2010-2012,主研人

 

代表性论文:

(1)          Long Ma, Changlei Qin(*), Shuai Pi, Henan Cui. Fabrication of efficient and stable Li4SiO4-based sorbent pellets via extrusion-spheronization for cyclic CO2 capture. Chemical Engineering Journal, 2020, 379: 122385. (中科院SCI一区,IF=8.355)

(2)          Donglin He, Zhiliang Ou, Changlei Qin(*), Tao Deng, Junjun Yin, Ge Pu. Understanding the catalytic acceleration effect of steam on CaCO3 decomposition by density function theory. Chemical Engineering Journal, 2020, 379: 122348. (中科院SCI一区,IF=8.355)

(3)          Zhonghui Zhang, Zhiliang Ou, Changlei Qin(*), Jingyu Ran, Chunfei Wu. Roles of alkali/alkaline earth metals in steam reforming of biomass tar for hydrogen production over perovskite supported Ni catalysts. Fuel, 2019, 257: 116032. (中科院SCI二区,IF=5.128)

(4)          Shuai Pi, Zonghao Zhang, Donglin He, Changlei Qin(*), Jingyu Ran(*). Investigation of Y2O3/MgO-modified extrusion–spheronized CaO-based pellets for high-temperature CO2 capture. Asia-Pacific Journal of Chemical Engineering, https://doi.org/10.1002/apj.2366. (中科院SCI四区,IF=1.396)

(5)          Zhiliang Ou, Changlei Qin(*), Juntian Niu, Lihui Zhang, Jingyu Ran(*). A comprehensive DFT study of CO2 catalytic conversion by H2 over Pt-doped Ni catalysts. International Journal of Hydrogen Energy, 2019, 44(2): 819-834. (中科院SCI二区,IF=4.084)

(6)          Shuai Pi, Zonghao Zhang, Donglin He, Changlei Qin(*), Jingyu Ran(*). Novel Binders-Promoted Extrusion-Spheronized CaO-Based Pellets for High-Temperature CO2 Capture. Energy & Fuels, 2019, 33(3): 2381-2389. (中科院SCI二区,IF=3.021)

(7)          Zonghao Zhang, Shuai Pi, Donglin He, Changlei Qin(*), Jingyu Ran(*). Investigation of Pore-Formers to Modify Extrusion-Spheronized CaO-Based Pellets for CO2 Capture. Processes, 2019, 7(2): 62. (中科院SCI四区,IF=1.279)

(8)          Changlei Qin(*), Donglin He, Zhonghui Zhang, Lili Tan, Jingyu Ran. The consecutive calcination/sulfation in calcium looping for CO2 capture: Particle modeling and behaviour investigation. Chemical Engineering Journal, 2018, 334: 2238-2249. (中科院SCI一区,IF=8.355)

(9)          Lili Tan, Changlei Qin(*), Zhonghui Zhang, Jingyu Ran, Vasilije Manovic, Compatibility of NiO/CuO in Ca-Cu Chemical Looping for High-Purity H2 Production with CO2 Capture, Energy Technology, 2018, 6(9): 1777-1787. (中科院SCI二区,IF=3.163)

(10)      Donglin He, Changlei Qin(*), Zonghao Zhang, Shuai Pi, Jingyu Ran, Ge Pu, Investigation of Y2O3/MxOy-Incorporated Ca-Based Sorbents for Efficient and Stable CO2 Capture at High Temperature, Industrial & Engineering Chemistry Research, 2018, 57(34): 11625–11635. (中科院SCI二区,IF=3.141)

(11)      Ruijie Gong, Changlei Qin(*), Donglin He, Lili Tan, Jingyu Ran(*), Oxygen Uncoupling of Cu-based Oxygen Carrier with the Presence of Coal Ash in Chemical Looping Process, Energy & Fuels, 32 (2018) 7708-7717. (中科院SCI二区,IF=3.021)

(12)      Donglin He, Ge Pu, Changlei Qin(*), Ruijie Gong, Lili Tan, Jingyu Ran. Impacts and Action Mechanism of Coal Ash on CaO-Based Sorbents for CO2 Capture under an Oxy-fuel Calcination Environment. Industrial & Engineering Chemistry Research, 2017, 56(51): 15143-15152. (中科院SCI二区,IF=中科院)

(13)      Yan Shao, Donglin He, Changlei Qin(*), Jingyu Ran(*), Li Zhang. SO2 removal characteristics using waste CaO from calcium looping CO2 capture process. Greenhouse Gases: Science and Technology, 2017, 7(4): 637-648. (中科院SCI四区,IF=1.693)

(14)      Donglin HeChanglei Qin(*)Vasilije ManovicJingyu RanBo Feng, Study on the interaction between CaO-based sorbents and coal ash in calcium looping process, Fuel Processing Technology, 2016, 156339-347. (中科院SCI二区,IF=4.507)

(15)      Donglin He, Yan Shao, Changlei Qin(*), Ge Pu, Jingyu Ran, Li Zhang, Understanding the Sulfation Pattern of CaO-Based Sorbents in a Novel Process for Sequential CO2 and SO2 CaptureIndustrial & Engineering Chemistry Research, 2016, 55(39): 10251-10262. (中科院SCI二区,IF=中科院)

(16)      Changlei Qin(*), Vasilije Manovic(*), Jingyu Ran, Bo Feng, Simulation of the calcination of a core-in-shell CuO/CaCO3 particle for Ca–Cu chemical looping, Fuel, 2016(181): 522-530. (中科院SCI二区,IF=5.128)

(17)      Changlei Qin(*), Junjun Yin, Bo Feng, Jingyu Ran, Li Zhang, Vasilije Manovic, Modelling of the calcination behaviour of a uniformly-distributed CuO/CaCO3 particle in Ca–Cu chemical looping, Applied Energy, 164 (2016) 400-410. (中科院SCI一区,IF=8.426)

(18)      Changlei Qin(*), Bo Feng, Junjun Yin, Jingyu Ran, Li Zhang, Vasilije Manovic(*), Matching of kinetics of CaCO3 decomposition and CuO reduction with CH4 in Ca–Cu chemical looping. Chemical Engineering Journal, 2015, 262(0): 665-675. (中科院SCI一区,IF=8.355)

(19)      Changlei Qin, Hong Du, Liang Liu, Junjun Yin, Bo Feng(*), CO2 Capture Performance and Attrition Property of CaO-Based Pellets Manusfactured from Organometallic Precursors by Extrusion. Energy & Fuels, 2014, 28 (1): 329-339. (中科院SCI二区,IF=3.021)

(20)      Changlei Qin, Junjun Yin, Jingyu Ran(*), Li Zhang, Bo Feng(*), Effect of support material on the performance of K2CO3-based pellets for cyclic CO2 capture. Applied Energy, 2014, 136 (0): 280-288. (中科院SCI一区,IF=8.426)

(21)      Changlei Qin, Junjun Yin, Cong Luo, Hui An, Wenqiang Liu, Bo Feng(*), Enhancing the Performance of CaO/CuO based Composite for CO2 Capture in a Combined Ca-Cu Chemical Looping Process. Chemical Engineering Journal, 2013, 228 (0): 75-86. (中科院SCI一区,IF=8.355)

(22)      Changlei Qin, Wenqiang Liu, Hui An, Junjun Yin, Bo Feng(*), Fabrication of CaO-Based Sorbents for CO2 Capture by a Mixing Method. Environmental Science & Technology, 2012, 46 (3): 1932-1939. (中科院SCI一区,IF=7.149)

(23)      Changlei Qin, Junjun Yin, Hui An, Wenqiang Liu, Bo Feng(*), Performance of Extruded Particles from Calcium Hydroxide and Cement for CO2 Capture. Energy & Fuels, 2012, 26 (1): 154-161. (中科院SCI二区,IF=3.021)

(24)      Changlei Qin, Junjun Yin, Wenqiang Liu, Hui An, Bo Feng(*), Behavior of CaO/CuO Based Composite in a Combined Calcium and Copper Chemical Looping Process. Industrial & Engineering Chemistry Research, 2012, 51 (38): 12274-12281. (中科院SCI二区,IF=3.375)

(25)      Junjun Yin, Changlei Qin, Bo Feng(*), Lei Ge, Cong Luo, Wenqiang Liu, Hui An, Calcium Looping for CO2 Capture at a Constant High Temperature. Energy & Fuels, 2014, 28 (1): 307-318. (中科院SCI二区,IF=3.021)

(26)      Junjun Yin, Changlei Qin, Hui An, Ananthanarayanan Veeraragavan, Bo Feng(*), Influence of Hydration by Steam/Superheating on the CO2 Capture Performance and Physical Properties of CaO-Based Particles, Industrial & Engineering Chemistry Research, 52 (2013) 18215-18224. (中科院SCI二区,IF=3.375)

(27)      Junjun Yin, Changlei Qin, Hui An, Wenqiang Liu, Bo Feng(*), High-Temperature Pressure Swing Adsorption Process for CO2 Separation. Energy & Fuels, 2012, 26 (1): 169-175. (中科院SCI二区,IF=3.021)

(28)      Jun Shi, Jingyu Ran, Changlei Qin, Mingchu Ran, Li Zhang. Adaptive air distribution in an ejector burner for the utilisation of methanol-mixed fuels. Fuel, 2015, 162: 313-322. (SCI二区,IF=5.128)

(29)      Junjun Yin, Xin Kang, Changlei Qin, Bo Feng(*), Ananthanarayanan Veeraragavan, Dmitry Saulov, Modeling of CaCO3 decomposition under CO2/H2O atmosphere in calcium looping processes. Fuel Processing Technology, 2014, 125 (0): 125-138. (中科院SCI二区,IF=4.507)

(30)      Wenqiang Liu(*), Junjun Yin, Changlei Qin, Bo Feng(*), Minghou Xu, Synthesis of CaO-Based Sorbents for CO2 Capture by a Spray-Drying Technique. Environmental Science & Technology, 2012, 46 (20): 11267-11272. (中科院SCI一区,IF=7.149)

(31)      Junjun Yin, Cheng Zhang, Changlei Qin, Wenqiang Liu, Hui An, Gang Chen, Bo Feng(*), Reactivation of calcium-based sorbent by water hydration for CO2 capture. Chemical Engineering Journal, 2012, 198–199 (0): 38-44. (中科院SCI一区,IF=8.355)

(32)      Wenqiang Liu, Hui An, Changlei Qin, Junjun Yin, Guoxiong Wang, Bo Feng(*), Minghou Xu, Performance Enhancement of Calcium Oxide Sorbents for Cyclic CO2 Capture—A Review. Energy & Fuels, 2012, 26 (5): 2751-2767. (中科院SCI二区,IF=3.021)

(33)      Cong Luo, Ying Zheng(*), Junjun Yin, Changlei Qin, Ning Ding, Chuguang Zheng, Bo Feng(*), Effect of Sulfation during Oxy-Fuel Calcination Stage in Calcium Looping on CO2Capture Performance of CaO-Based Sorbents. Energy & Fuels, 2013, 27, (2): 1008-1014. (中科院SCI二区,IF=3.021)

(34)      Cong Luo, Ying Zheng(*), Junjun Yin, Changlei Qin, Ning Ding, Chuguang Zheng, Bo Feng(*), Effect of Support Material on Carbonation and Sulfation of Synthetic CaO-Based Sorbents in Calcium Looping Cycle. Energy & Fuels, 2013, 27, (8): 4824-4831. (中科院SCI二区,IF=3.021)

(35)      Hui An, Tao Song, Laihong Shen, Changlei Qin, Junjun Yin, Bo Feng(*), Coal gasification with in situ CO2 capture by the synthetic CaO sorbent in a 1 kWth dual fluidised-bed reactor. International Journal of Hydrogen Energy, 2012, 37 (0): 14195-14204. (中科院SCI二区,IF=4.084)

 

发明专利:

(1)          秦昌雷,冉景煜,张力,一种钙铜联合化学循环方法,2018.03ZL201510134158.2

(2)          秦昌雷,马龙,冉景煜,一种高性能球状Li4SiO4CO2吸附颗粒及其制备方法,2019.06CN201910345241.2

(3)          秦昌雷,何东霖,冉景煜,张力,一种钇镁-钙基合成吸附剂及其制备方法,2018.06CN201810027629.3

(4)          秦昌雷,邵岩,冉景煜,一种钙循环脱碳废料资源化再利用的方法,2015.09CN201510626308.1

(5)          冉景煜,张松,秦昌雷,杨琳,杨仲卿,闫云飞,蒲舸,张力,一种铁基复合载氧体及其制备方法, 2017.03, ZL201510085619.1

(6)          冉景煜,张松,秦昌雷,杨琳,杨仲卿,闫云飞,蒲舸,张力,一种生物质化学链重整制氢及抑制焦油产生的协同工艺, 2015.02, ZL201510085618.7

(7)          冉景煜,杨利利,秦昌雷,杨仲卿,闫云飞,蒲舸,张力,一种火力发电厂安全经济运行状态的实时发布方法及系统, 2018.08, ZL201510099483.X

 

学术会议交流:

(1)          Changlei Qin. Behaviour of Cu-Based Oxygen Carrier with the Presence of Coal Ash in Chemical Looping with Oxygen Uncoupling, in 5th International Conference on Chemical Looping, September 24-27, 2018, Park City, USA

(2)          Changlei Qin. Simulation of the consecutive calcination/sulfation in calcium looping for CO2 capture. in 6th International Conference on CO2 Emission Control and Utilization, June 15-17, 2018, Hangzhou

(3)          秦昌雷. 气固杂质作用下的钙循环脱碳特性与机制研究, 第四届全国青年燃烧学术会议,2018330-41日,中国武汉.

(4)          Changlei Qin. The Consecutive Calcination/Sulfation in Calcium Looping for CO2 capture: Particle Modeling and Behaviour Investigation. in 6th Sino-Australian Symposium on Advanced Coal and Biomass Utilisation Technologies. December 4-8, 2017, Perth, Australia

(5)          秦昌雷. CaL-CLCCuO/CaCO3复合颗粒的煅烧再生行为研究,第二届全国青年燃烧学术会议,201649-10日,中国合肥.

(6)          Changlei Qin. Investigation of the Calcination of a CuO/CaCO3 Particle in Ca-Cu Chemical Looping, in 5th Sino-Australian Symposium on Advanced Coal and Biomass Utilisation Technologies. December 14-16, 2015, Wuhan

(7)          Changlei Qin. Modeling of the Calcination Behaviour of a CuO/CaCO3 Particle in Ca-Cu Chemical Looping, in 6th High Temperature Solid Looping Cycles Network Meeting, September 1-2, 2015, Politecnico di Milano, Milan, Italy

(8)          Changlei Qin. Reaction Characteristics of Oxygen Carriers in Chemical Looping Gasification of Biomass. in 4th international Conference on Biomass Energy Technologies-8th World Bioenergy Symposium, October 17-19, 2014, Changsha.

(9)          Changlei Qin. Performance of CaO/CuO Based Composite in Combined Calcium and Copper Chemical Looping. in 4th IEAGHG Network Meeting and Technical Workshop on High Temperature Solid Looping Cycles, August 20-22, 2012, Beijing.

(10)      秦昌雷. 基于钙基载氧体的松木半焦化学链气化研究, 2014年中国工程热物理学会燃烧年会, 20141031-111, 中国西安

(11)      秦昌雷. 生物质半焦/铁基载氧体化学链气化特性研究, 2014年中国工程热物理学会燃烧年会, 20141031-111, 中国西安

 

 

[English version]

Changlei QIN, PhD, Associate Professor/Doctoral Supervisor

Changlei Qin received his PhD in 2014 from School of Mechanical and Mining Engineering, The University of Queensland, Australia. He is currently an associate professor in School of Energy and Power Engineering at Chongqing University. He is also a research fellow in Key Laboratory of Low-grade Energy Utilization Technologies and Systems of Ministry of Education. He is pursuing answers to the issues of low-carbon, clean and effective conversion of fuels, including composites for CO2 capture and catalysis, sorption enhanced H2 production, and particle attrition in fluidization. He is also interested in understanding mechanism and the detailed reaction-mass/heat transfer process in gas-solid reactions.

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