
张浅,工学博士,副教授,博士生导师,广东工业大学“青年百人”计划A类引进人才,广东省植物资源生物炼制重点实验室、广州市清洁交通能源化学重点实验室、广东工业大学航空燃料先进技术创新实验室创建骨干。主要从事生物质平台分子能源转化研究,聚焦小分子绿醇高值化催化转化制备可持续航空燃料(SAF)基础理论研究与关键技术开发。主持国家自然科学基金面上项目、青年项目、国家重点研发计划项目子课题、广东省自然科学基金面上项目(2项)、广州市基础与应用基础研究项目、广东省植物资源生物炼制重点实验室自主创新重点项目、中国博士后科学基金面上项目等国家、省部级项目近10项,并作为骨干参与国家自然科学基金联合基金(重点)、国家重点研发计划和广东省重点研发计划等项目。已在国际期刊发表论文50余篇,近5年以第一(含共一)/通讯作者在Nat. Commun.、Angew. Chem. Int. Ed.、Appl. Catal. B: Environ.、AIChE J.、Appl. Energ.等化工与能源领域国际期刊发表SCI论文近30篇。获授权中国发明专利20余项、PCT/美国发明专利2项,与中国商飞、波音中国等共同发起制定可持续航空燃料国家团体标准2项,研究成果支撑研建万吨级工业示范产线。指导研究生、本科生获“挑战杯”中国大学生创业计划竞赛银奖、中国“互联网+”大学生创新创业大赛银奖等国家、省部级奖励项目5项。
联系方式
Email:zhangqian@gdut.edu.cn
通讯地址:广州市大学城广东工业大学工学四号馆轻工化工学院,510006
教育/工作背景
2021-至今,广东工业大学,轻工化工学院,副教授/博导
2019-2020, University of Wisconsin-Madison (U.S.), Chemical & Biological Engineering, 访问学者(George W. Huber教授课题组)
2018-2020,广东工业大学,化学工程与技术博士后流动站,博士后
2013-2018,中国科学院大学 (中国科学院广州能源研究所), 化学工程专业,工学博士学位
2013-2014,中国科学技术大学,热科学和能源工程系,联合培养
2009-2013,郑州大学,化工与能源学院,化学工程与工艺专业,学士学位
研究领域
1. 生物质平台分子催化转化
2. 功能催化材料设计构筑
3. 可持续航空燃料、催化制氢
招生类型
学术型博士/硕士:化学工程与技术
专业型博士/硕士:材料与化工/化学工程
科研团队
绿色能源创新团队:https://qghgxy.gdut.edu.cn/kxyj1/kytd/lsnychtd.htm
团队负责人:王铁军 教授,国家级领军人才,研究生院院长。团队教师10余人,在读博士和硕士研究生60余名。
承担科研项目
国家自然科学基金面上项目 (22278088),2023.01-2026.12,主持
国家自然科学基金青年科学基金项目 (51906048),2020.01-2022.12,主持
国家重点研发计划催化科学重点专项子课题(2023YFA1508104-02),2023.12-2028.11,主持
广东省自然科学基金面上项目 (2024A1515012612),2024.01-2026.12,主持
广东省自然科学基金面上项目 (2019A1515010416),2019.10-2022.09,主持
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学术兼职:
《广东工业大学学报》首届青年编委,中国化工学会专业会员,中国化学会会员,中国可再生能源学会会员,广州市青年科技工作者协会会员,国际期刊审稿人等
近期论文:
[1] B Chen, X Zheng, J Gu, S Qiu, J Song, X Wu, H Dong, Q Zhang*, T Wang*. Engineering Sn doping Ni/chitosan to boost higher alcohols synthesis from direct coupling of aqueous ethanol: Modifying adsorption of aldehyde intermediates for C-C bond cleavage suppressing. Applied Catalysis B: Environment and Energy. 2023, 321:122048.(IF=21.1,SCI 1区Top,学校TOP1)
[2] X Li1, X Wu1, B Chen, J Li, T Jin, H Zeng, S Qiu, Q Meng, Q Zhang*, T Wang*. Ordered coupling of aqueous ethanol to sustainable aviation fuel by molecular fence effect of superhydrophobic catalyst. AIChE Journal, 2026, 10.1002/aic.70497. (IF=4,化工三大经典期刊顶刊,化工领域高质量科技期刊T1级,学校TOP1)
[3] J Gu1, W Gong1, Q Zhang1, R Long, J Ma, X Wang, J Li, J Li, Y Fan, X Zheng, S Qiu*, T Wang*, Yujie Xiong*. Enabling direct-growth route for highly efficient ethanol upgrading to long-chain alcohols in aqueous phase. Nature Communications. 2023, 14:7935.(IF=15.7,SCI 1区Top,Nature子刊)
[4] J Gu1, Q Zhang1, Y Fan1, G Chen, J Li, S Qiu*, T Wang*, T Sheng*, Y Xiong*. Restructured Three-Coordinated Ni-Se Catalytic Sites for Enhanced Cross-Condensation of Methanol and Ethanol. Angewandte Chemie-International Edition, 2025, e202510601. (IF=17,SCI 1区Top,学校TOP1)
[5] J Liao1, Q Zhong1, J Gu, S Qiu, Q Meng, Q Zhang*, T Wang*. New approach for bio-jet fuels production by hydrodeoxygenation of higher alcohols derived from C-C coupling of bio-ethanol. Applied Energy. 2022.324.119843.(IF=11,SCI 1区Top,学校TOP1)
[6] X Zheng, B Chen, J Gu, S Qiu, X Wu, Q Zhang*, T Wang*. Ultra-low temperature direct reconstruction of biomass fermentation of ethanol to higher alcohols in water over thermostable hcp-Ni. Green Chemistry. 2024,26, 3507-3516.(IF=9.3,SCI 1区Top,学校TOP2)
[7] S Jiang, R Shu*, A Wang, Z Deng, Y Xiao, J Li, Q Meng, Q Zhang*. Efficient hydrodeoxygenation of lignin-derived phenolic compounds under acid-free conditions over carbon-supported NiMo catalysts. Green Chemistry. 2024, 26, 9330-9345. (IF=9.3,SCI 1区Top,学校TOP2)
[8] J Gu1, K Mao1, Q Zhang1, B Chen, H Dong, S Qiu*, Q Meng, Y Xiong*, J Song, T Wang*. N-rich doping strategy for constructing Ni@NC catalysts to boost aqueous ethanol coupling towards higher alcohols by inhibiting C1 byproducts. Chemical Engineering Journal. 2023, 453:139583. (IF=13.2,SCI 1区Top)
[9] W Liu1, B Chen1, Q Zhang*, S Qiu, X Wu, Q Meng, L Ma, T Wang*. One-pot synthesis of high-carbon bio-alcohols from aqueous ethanol upgrading over water-tolerance NiSn@C catalyst. Energy Conversion and Management. 2021, 249: 114822. (IF=10.9,SCI 1区Top,学校TOP2)
[10] S Jiang, Q Zhang*, X Lin, W Liu, S Qiu, R Shu*. Enhanced hydrodeoxygenation of lignin-derived phenolic compounds by regulating support composition of Ni/Al2O3-C catalyst. Fuel. 2025, 380: 133117. (IF=7.5,SCI 2区Top,学校TOP2)
[11] Q Zhong1, J Liao1, Q Zhang*, S Qiu, Q Meng, X Wu, T Wang*. Aqueous upgrading of ethanol to higher alcohol diesel blending and jet fuel precursors over Na-doped porous Ni@C nanocomposite. Fuel. 2022, 324: 124507. (IF=7.5,SCI 2区Top,学校TOP2)
[12] Q Zhang1, Y Cen1, B Chen, J Li, X Zheng, X Wu*, S Qiu*, T Wang. Mild synthesis of C6+ higher alcohols from aqueous ethanol upgrading over Ni@MB catalyst derived from melt-blown cloth. Chemical Engineering Science. 2024, 288, 119841.(IF=4.1,SCI 2区, 化工三大经典期刊,化工领域高质量科技期刊T1级,学校TOP2)
[13] G Zou, X Liu, Z Peng, J Hou, J Li, M Li,X Cai, X Wu*, Y Pi*, Q Zhang*, T Wang. Synergistic Nitrogen Doping and Core-Shell Confinement in Ni@C Catalysts for Highly Selective C4+ Higher Alcohols Synthesis from Aqueous Ethanol. Chemical Engineering Science, 2026, 321, 122980. (IF=4.1,SCI 2区, 化工三大经典期刊,化工领域高质量科技期刊T1级,学校TOP2)
[14] Y Ling1, J Liao1, Y Xie, S Qiu, X Wu, Q Meng, Q Zhang*, T Wang*. Alkali carbonate induced N-doping NiSn@NC for direct aqueous ethanol coupling to C6+ higher alcohols. Chemical Communications. 2023: 59, 8580-8583.(IF=4.2,SCI 2区,学校TOP2)
[15] S Qiu1, L Lan1, Z Liang, X Xu, L Tan, H Yang, Q Zhang*, T Wang*. Rational design of silica nanoreactor encapsulated Ni for reinforcing coke-resistance in dry reforming of methane. Applied Catalysis A: General. 2024, 119759. (IF=4.8,SCI 2区)
[16] J Li1, M Lu1, Y Ge, W Lu, Z Liu, H Xu, Y Zhang, Z Li, Z Zheng, P Gao, Q Zhang*, Tiejun Wang*. Efficient and sustainable H2 production from aqueous-phase reforming of methanol over Cu@CA-Val catalyst at low temperatures. International Journal of Hydrogen Energy. 2024, 71:775-784. (IF=8.3,SCI 2区,学校TOP2)
[17] S Qiu, Z Huang, X Sang, Y Liu*, Q Zhang*, Q Chen, Q Meng, T Wang*. Regulating isomerization of gasoline-alkanes in aqueous-phase hydrodeoxygenation of sorbitol using regenerable Ni@MoOx catalysts. Fuel Processing Technology. 2023: 242, 107647. (IF=7.7,SCI 2区Top)
[18] Q Zhang1, W Liu1, S Jiang, M Kuang, J Li, S Qiu*, X Wu*. Upgrading of aqueous ethanol to long-chain alcohols over immobilized highly dispersed Ni-Re catalyst. Industrial & Engineering Chemistry Research. 2024, 63, 21, 9347–9358. (IF=4,SCI 2区, 化工三大经典期刊,化工领域高质量科技期刊T1级,学校TOP2)
[19] K Liang1, J Song1, M Kuang1, X Wu, S Qiu, Q Zhang*, T Wang. Bimetallic engineering Ni@C promoted by Bi-doped direct catalyze aqueous ethanol to C6+ alcohols. Industrial & Engineering Chemistry Research. 2025, 64, 24, 11794-11803. (IF=4,SCI 2区, 化工三大经典期刊,化工领域高质量科技期刊T1级,学校TOP2)
[20] B Chen, K Liang, J Song, H Yang, X Li, Y Chen, Q Zhang*, T Wang *. In Situ Reduced Ni-Sn Bimetallic Catalyst for Enhancing Direct Upgrading of Aqueous Ethanol to Higher Alcohols. Industrial & Engineering Chemistry Research. 2025, 64, 7, 3754–3763. (IF=4,SCI 2区, 化工三大经典期刊,化工领域高质量科技期刊T1级,学校TOP2)
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技术成果及标准
1. 甲醇/乙醇水相有序偶联合成高碳醇及可持续航空燃料,科学技术成果,中石化联鉴字[2025]第186号
2. 可持续航空燃料制备技术规范,团体标准,T/CITS 187-2024
3. 生物基醇制可持续航空燃料技术指南,团体标准,T/CITS 460-2025
指导学生获奖/项目
1. 2025.08,中国国际大学生创新大赛广东省赛银奖(2项),广东省教育厅
2. 2024.12,硕士研究生国家奖学金,教育部
3. 2023.12,广东省科技创新战略专项(大学生科技创新培育),共青团广东省委员会
4. 2023.04,第八届中国“互联网+”大学生创新创业大赛银奖,教育部
5. 2023.03,第十三届“挑战杯”中国大学生创业计划竞赛银奖,共青团中央
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