2018年-2020年,美国马里兰大学帕克分校,博士后(国家留学基金委资助)
2017年9-12月,瑞典麦拉达伦大学未来能源中心,访问学者(国家留学基金委资助)
2015年-2016年,英国埃克塞特大学环境与可持续发展研究所,访问学者(河南省外专局资助)
2010年-2013年,河南农业大学,农业生物环境与能源工程,工学博士
2004年-2007年,华北电力大学,热能工程,工学硕士
2000年-2004年,河南农业大学,农业建筑环境与能源工程,工学学士
(二)工作经历
2023年-今,河南工业大学土木工程学院,博士生导师
2021年-今,河南工业大学环境工程学院、碳中和研究院,校特聘研究员、硕士生导师
2007年-2021年,河南省科学院、河南省生物质能源重点实验室,研究实习员、助理研究员、副研究员、研究员
二、主持和参与科研项目(部分)
国家自然科学基金面上项目,52276181,二氧化碳气氛中生物质与塑料共热解交互作用和产物演化机制研究,主持
国家自然科学基金青年基金项目,51506049,乙酰丙酸酯类燃料柴油机燃烧和排放机制研究,主持
国家自然科学基金面上项目,51476050,生物质颗粒冷态致密成型热质传递机制研究,第2名
中原科技创新领军人才项目,194200510028,生物质基酯类燃料复配汽柴油技术及评价研究,主持
河南省科技攻关计划(国际合作)项目,172102410030,生物质基乙酰丙酸乙酯能耗及排放关键技术研究,主持
中国欧盟地平线项目,MJ-2020-D-09,航空替代燃料可持续评价-原料阶段间接土地使用变化研究,第2名
中国工程院重大咨询研究项目,2017-ZD-09-03-02,中部地区生态文明建设及发展战略研究-基于生物质能源的河南生态文明建设体系研究,第2名(执笔人)
中国工程院重大咨询研究项目,2016-ZD-14-01,中国农村能源革命与分布式低碳能源发展-河南农村能源革命案例剖析,第2名(执笔人)
国家重点研发计划课题,2019YFB1503903,低碳混合醇绿色化学合成与精准分离技术,参与
国家重点研发计划课题,2019YFD1100604,秸秆烘焙提质制备清洁成型燃料联产活性炭技术,参与
Zhiwei Wang, Kiran G. Burra, Tingzhou Lei, Ashwani K. Gupta*. Co-pyrolysis of waste plastic and solid biomass for synergistic production of biofuels and chemicals-A review. Progress in Energy and Combustion Science, 2021;84:100899.
Zhiwei Wang*, Mengge Wu, Gaofeng Chen, Mengju Zhang, Tanglei Sun, Kiran G. Burra, Shuaihua Guo, Yan Chen, Shuhua Yang, Zaifeng Li, Tingzhou Lei*, Ashwani K. Gupta*. Co-pyrolysis characteristics of waste tire and maize stalk using TGA, FTIR and Py-GC/MS analysis. Fuel, 2023; 337: 127206.
Zhiwei Wang, Xuan Liu, Kiran G. Burra, Jinhu Li, Mengju Zhang, Tingzhou Lei, Ashwani K. Gupta*. Towards enhanced catalytic reactivity in CO2-assisted gasification of polypropylene. Fuel, 2021;284: 119076.
Zhiwei Wang, Kiran G. Burra, Mengju Zhang, Xueqin Li, Xiaofeng He, Tingzhou Lei, Ashwani K. Gupta*. Syngas evolution and energy efficiency in CO2-assisted gasification of pine bark. Applied Energy, 2020; 269: 114996.
Zhiwei Wang, Kiran G. Burra, Xueqin Li, Mengju Zhang, Xiaofeng He, Tingzhou Lei, Ashwani K. Gupta*. CO2-assisted gasification of polyethylene terephthalate with focus on syngas evolution and solid yield. Applied Energy, 2020;276: 115508.
Zhiwei Wang, Joseph S. Feser, Tingzhou Lei, Ashwani K. Gupta*. Performance and emissions of camelina oil derived jet fuel blends under distributed combustion condition. Fuel, 2020; 271: 117685.
Zhiwei Wang, Kiran G. Burra, Zhang Mengu; Li Xueqin, Matteo Policella, Tingzhou Lei, Ashwani K. Gupta*. Co-pyrolysis of waste tire and pine bark for syngas and char production. Fuel, 2020; 274: 117878.
Zhiwei Wang, Tingzhou Lei*, Xiaoyu Yan, Gaofeng Chen, Xiaofei Xin, Miao Yang, Qian Guan, Xiaofeng He, Ashwani K. Gupta. Common characteristics of feedstock stage in life cycle assessments of agricultural residue-based biofuels. Fuel, 2019;253:1256-1263.
Zhiwei Wang, Kiran G. Burra, Tingzhou Lei, Ashwani K. Gupta*. Co-gasification characteristics of waste tire and pine bark mixtures in CO2 atmosphere. Fuel, 2019; 257: 116025.
Zhiwei Wang, Jinhu Li, Kiran G. Burra, Xuan Liu, Xueqin Li, Mengju Zhang, Tingzhou Lei, Ashwani K. Gupta*. Synergetic effect on CO2 assisted co-gasification of biomass and plastics. Journal of Energy Resources Technology, 2021;143:031901.
Zhiwei Wang, Tingzhou Lei*, Miao Yang, Zaifeng Li, Tian Qi, Xiaofei Xin, Xiaofeng He, Atta Ajayebi, Xiaoyu Yan*. Life cycle environmental impacts of cornstalk briquette fuel in China. Applied Energy,2017;192:83-94.
Zhiwei Wang, Tingzhou Lei*, Lu Lin, Miao Yang, Zaifeng Li, Xiaofei Xin, Tian Qi, Xiaofeng He, Jie Shi, Xiaoyu Yan*. Comparison of the physical and chemical properties, performance, and emissions of ethyl levulinate-biodiesel-diesel and n-butanol-biodiesel-diesel blends. Energy & Fuels, 2017; 31 (5):5055–5062.
Zhiwei Wang, Zaifeng Li, Tingzhou Lei*, Miao Yang, Tian Qi, Lu Lin, Xiaofei Xin, Atta Ajayebi, Yantao Yang, Xiaofeng He, Xiaoyu Yan*. Life cycle assessment of energy consumption and environmental emissions for cornstalk-based ethyl levulinate. Applied Energy, 2016;183:170–181.
Tingzhou Lei, Zhiwei Wang*, Xia Chang, Lu Lin, Xiaoyu Yan, Yincong Sun, Xinguang Shi, Xiaofeng He, Jinling Zhu. Performance and emission characteristics of a diesel engine running on optimized ethyl levulinate-biodiesel-diesel blends. Energy, 2016;95:29–40.
Zhiwei Wang, Tingzhou Lei*, Xia Chang, Xinguang Shi, Ju Xiao, Zaifeng Li, Xiaofeng He, Jinling Zhu, Shuhua Yang. Optimization of a biomass briquette fuel system based on grey relational analysis and analytic hierarchy process: A study using cornstalks in China. Applied Energy, 2015;157:523–532.
雷廷宙,何晓峰,王志伟.生物质固体成型燃料生产技术,化学工业出版社,2020年.
雷廷宙,林鹿,王志伟.生物质水解转化酯类燃料及化学品,科学出版社,2019年.
参编.中国农村能源革命与分布式低碳能源发展战略研究 (第6章 河南省农村能源发展案例剖析),科学出版社,2019年.
参编.Advances in Energy and Combustion (Energy Recovery from Waste Tires Via Thermochemical Pathways), Springer Nature Singapore Pte Ltd, 2022年.
参编.Bioenergy Principles and Technologies (第5章 Biomass Briquette Fuel Technology), 科学出版社,2018年.
Products evolution and synergistic mechanism during co-gasification of biomass and plastic under carbon dioxide atmosphere. The 7th International Conference on Biomass Energy, Xiamen, China, Apr. 8-9, 2022.
Behavior of CO2 assisted co-gasification and co-pyrolysis using waste tire and pine bark mixtures. The 44th International Technical Conference on Clean Energy, Clearwater, USA, Jun.16-19, 2019.
Co-gasification characteristic of waste tire and forestry waste under CO2 atmosphere. MIT Applied Energy A+B Symposium, Boston, USA, May. 22-24, 2019.
Experimental study on external heating continuous pyrolysis system with straw briquetting fuel. The 6th International Conference on Biomass Energy, Wuhan, China, Oct. 16-19, 2018.
Life cycle assessment of environmental impact for cornstalk briquette fuel used in gasification and combustion system. The 25th European Biomass Conference & Exhibition, Stockholm, Sweden, May. 12-15, 2017.
Life cycle assessment of environmental impact for biomass briquette fuel-A case study based on integration and automation system in China. The 5th International Conference on Biomass Energy, Beijing, China, Oct. 16-19, 2016.
A comparison of physical and chemical properties, performance and emissions of ethyl levulinate-biodiesel-diesel, n-butanol-biodiesel-diesel blends. The 23rd European Biomass Conference & Exhibition, Vienna, Austria, Jun. 1-4, 2015.
Optimization of fuels formulas for a diesel engine based on ethyl levulinate-biodiesel-diesel blends. The 22nd European Biomass Conference & Exhibition, Hamburg, Germany, Jun. 23-26, 2014.
A Study on physical and chemical properties based on ethyl levulinate as a diesel fuel addition. The 4th International Conference on Biomass Energy, Changsha, China, Oct. 17-20, 2014.
The status of biomass briquetting fuels in China based on market analysis. The 3rd International Conference on Biomass Energy, Nanjing, China, Oct. 20-23, 2012.