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张宗伟

作者:    信息来源:    发布时间: 2026-04-01

张宗伟

性别:男 职称:教授; 籍贯:山东菏泽

Tel: +86-13672116966Email: zhv116@163.com, zw-zhang@cauc.edu.cn

机构: 航空工程学院;环境与可持续发展研究院

研究生招生:航空宇航科学与技术、航空工程、材料科学与工程

教育背景:

西北大学:过控/化机      工学学士

化学工程       工学硕士

天津大学:化学工艺      工学博士

研究领域:

可持续航空燃料化学与技术

可持续航空燃料验证及评价

新航空能源材料

学术组织:

国际民航组织(ICAO)环保委(CAEP)航空燃料组(WG5)技术专家

中国化学会(CCS)会员

美国化学会(ACS)会员

中国航空学会航空安全分会会员

中国可再生能源学会生物质能专委会会员


研究经历:

主持或参与天津市教委科研项目、MJ专项、国家自然基金、横向课题三十余项。发表论文40余篇,SCIEI收录30余篇,申请发明专利10余项,软著1项,曾获中国商飞大飞机奋斗者荣誉称号。

项目:

1、 x可持续航空燃料x(参与,3/99),MJ专项, 4600万,2023-2026

2、 可持续航空燃料技术研究平台(参与,子项目负责人),4.34亿

3、 未来航油工程与技术研究平台(主持),4000

4、 100%生物航煤制备策略及调控机制研究(主持),中央高校基金重点,20万,2026-2028

5、 可替代航空燃料性能设计及评估(主持),天津市教委科研项目,2020-2023

6、 能源植物制备航空燃料关键技术研究(主持),中央高校基金重点,20万,2023-2025

7、 植物油定向合成航空燃料(参与),国家自然基金面上,90万,2015-2018

8、 可持续航空燃料全周期碳排放测算规范(参与),民航局民航安全能力,2024-2025.

9、 某燃料研究(参与),国防科工局,237万,2014-2017.

10SAF技术路线及成本经济性分析(参与),美国能源基金会,106万,2024-2025

11、全球视野下的可持续航空燃料的动态追踪(参与),美国能源基金会,71万,2025-2026

12、可持续航空燃料政策体系研究(参与),美国环保协会北京代表处,35万,2023-2024.

13、光催化吸附协同去除航煤噻吩的研究(主持),中央高校基金,2016-2019.

14、分子筛催化生物质制备可持续航空燃料及其安全性评价研究(参与),天津市自然基金(多元),2023-2025.

论文:

[1] Zhang Zongwei*, Wang XY, Ding Shuiting*, et al. Safety management and carbon footprint optimization of sustainable aviation fuel during storage and transportation, Energy Conversion and Management (TOPIF=10.9), 2025, 345120403.

[2] Zhang Zongwei*, Liu HN,, Ding Shuiting*. LCA and TEA analyses of bio-jet fuel prepared from Arundo donax, Sustainable Energy Technologies and Assessments (TOPIF=7.1), 2025, 75,104233.

[3] Zhang Zongwei, Wang Zihan, et al. Comparison of water footprint and carbon footprint of corn, soybean, camelina, and canola for the preparation of sustainable aviation fuels in Gansu Province, China. Journal of Cleaner Production (TOPIF=9.8), 2024, 475:143743.

[4] Yang JL, …, Zhang ZW*,.., Teng BT*. Progress of biomass gasification and Fischer-Tropsch synthesis to aviation kerosene. Bioresource Technology (TOP), 2025, 434:132768

[5] Zhang Zongwei, Zhang Xiangwen, Wang Qingfa. Influence of impurities and oxidation on hydroconversion waste cooking oil into bio-jet fuel, Chem.Eng.Technol. 2020, 2(43)273-281.

[6] Zhang, Zongwei, Wang Xinyuan, et al. Life Cycle Water Footprint Analysis and Future Prediction Based on LSTM for Arundo donax in Sustainable Aviation Fuel Production, Water Resources Management, 2025, https://doi.org/10.1007/s11269-025-04099-5.

[7] Zongwei Zhang, Junqi Li, et al. Estimating Soil Carbon Sequestration of Jatropha for Sustainable Aviation Fuel Pathway, Water, Air, Soil Pollution (SCI), 2023, 235(1): 47.

[8] Zhang chunfei#, Zhang Zongwei #* et al. Tuning hierarchical ZSM-5 for green jet fuel production from Soybean oil via control of Pt location and grafted TPABr content. Catal Commun, 2021,155:106288.

[9] Zhang Zongwei et al. Chemical Properties, Low-Temperature Performance, and Burning Performance of Bio-Jet Fuel, CHINA PETROLEUM PROCESSING & PETROCHEMICAL TECHNOLOGY. 2023, 25(4):23-30.

[10] Li Aang*, Zheng JH. ,Zhang ZW*. Research advances and future perspectives in Fischer-Tropsch synthesis for sustainable aviation fuel,SUSTAINABLE ENERGY & FUELS 2026,10:.42-55.

[11] Yan TT,..,Zhang ZW. Hierarchical hafnium modified silicious Beta zeolite by tailoring Lewis acid sites for efficient conversion of acetone to isobutene, MICROPOROUS AND MESOPOROUS MATERIALS,2025, 396.

[12] Yan Tingting,.., Zhang ZW, Elucidating active-site cooperativity in Y-Zr/Beta zeolite for acetic acid to isobutene conversion, MICROPOROUS AND MESOPOROUS MATERIALS,2025,398.

[13] Zhang Zongwei et al. Oxidation Adsorptive Desulfurization of Jet Fuel Using Mesoporous Sieve Loaded with TiO2. ChemistrySelect, 2021, 62913–2918. SCI.

[14] Zhang Zongwei et al. Hydroconversion of Waste Cooking Oil into Bio-Jet Fuel over NiMo/SBUY-MCM-41. Catalysts, 2019, 9(5):0-466. SCI.

[15] Zhang Zongwei et al. Hydroconversion of Waste Cooking Oil into Bio-Jet Fuel over a Hierarchical NiMo/USY@Al-SBA-15 Zeolite, Chem.Eng.Technol, 2018.3, 41(3):590~597. SCI.

[16] Zhang Zongwei et al. Hydroconversion of Waste Cooking Oil into Green Biofuel over Hierarchical USY-Supported NiMo Catalyst: A Comparative Study of Desilication and Dealumination. Catalysts, 2017,7(10):0-281. SCI.

[17] Zhang Zongwei, Wei Keheng, et al. Life-Cycle Assessment of Bio-Jet Fuel Production from Waste Cooking Oil via Hydroconversion, energies, 2022, 15: 6612. SCI.

[18] Chen Yuxiu, ,Yang XJ, , Zhang ZW, et al. Technology Route Options of Chinas Sustainable Aviation Fuel: Analysis Based on the TOPSIS Method. Energies 2023, 16(22), 7597.

[19] An Dongmin,, Zhang Zongwei, et al. rGO/SnO2 nanocomposite based sensor for ethanol detection under low temperature, CERAMICS INTERNATIONAL(TOP期刊,IF=5.1)2024,509:16272-16283.

[20] Zou YL, Zhang ZW, ... Effect of W doping on the phase formation and photocatalytic performance of brookite TiO2 nanoparticles, MATERIALS SCIENCE AND ENGINEERING B-ADVANCED FUNCTIONAL SOLID-STATE MATERIAL , 2026,324.

[21] Ding, ST; Wu, YF; (...); Zhang, ZW, Numerical Investigation of Tar Formation Mechanisms in Biomass Pyrolysis, AEROSPACE, 2025, 12(6).

[22] Yan Q, Shi B, Zhang ZW. Spectroscopic and electrochemical characterization of Flower-leaf and Green-leaf Arundo donax extracts, INTERNATIONAL JOURNAL OF ELECTROCHEMICAL SCIENCE, 2025, 101191.

[23] Zhao Qiang,,Zhang ZW, Biomass Cellulose-Derived Carbon Aerogel Supported Magnetite-Copper Bimetallic Heterogeneous Fenton-like Catalyst Towards the Boosting Redox Cycle of Fe(III)/Fe(II), NANOMATERIALS, 2025,614.

[24] Wang YY,……,Zhang ZW, .,Aa DM. Highly sensitive triethylamine sensor based on MOF-derived bimetallic NiO-SnO2 nanomaterials, 2025,51: 9329-9342.


 

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