储能科学与工程系

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王飞

发布日期:2026-07-13 点击数:

基本信息

姓名:王飞

职称:教授

职务:储能科学与工程系主任

导师类别:博士生导师

研究方向:

1. 水合物法CO2捕集利用封存;

2. 水合物法天然气输运/调峰、天然气提氦

3. 氢储能

电子邮箱:elliot_wang@qust.edu.cn

个人简介

山东省杰青/优青/泰山学者青年专家、新疆维吾尔自治区天池英才特聘专家,山东省高等学校天然气水合物青创人才团队带头人、青岛市碳资源与电池技术循环利用重点实验室副主任、青科大-大兴重工水合物低碳能源装备研发中心主任、青岛六十八中科学副校长。主要从事清洁能源(天然气、氢气)存储和CO2捕集-利用-封存等领域的理论研究及成果转化,致力于低碳能源领域的技术创新及产业化应用;主持国家级项目2项、省部级项目8项、市厅级及其他项目共计20余项,经费累计1500余万元;以第一/通讯作者发表SCI论文100余篇、1区60余篇,授权发明专利20余项;获中国化工学会基础研究二等奖、中国可再生能源学会人物奖、国际先进材料学会科学家奖等奖励荣誉10余项。

教育背景

2013.9-2016.6,中国科学院大学,化学工程,博士

2010.9-2013.6,青岛大学,纺织化学与染整工程,硕士

2006.9-2010.6,青岛大学,轻化工程,学士

工作经历

2020.1-至今,青岛科技大学,教授/博导/储能科学与工程系主任

2018.9-2019.12,青岛科技大学,特聘教授/博导

2016.9-2018.8,中国科学院青岛生物能源与过程研究所,博士后

代表性论文

2026年度

[1]Xu Wang, Haoyu Yuan, Xinyan Tian, Qing Gao, Yuxiang Qi, Daozhong Cheng, Xuefeng Gong, Chen Chen*, Fei Wang*. Physics-informed supervised residual learning framework for accurate prediction of gas hydrate phase equilibria. Fluid Phase Equilibria, 2027, 611, 114795. (IF: 2.62)

[2]Mengyang Li, Wei Guan, Ping Li, Yan Lin*, Chen Chen*, Fei Wang*. Optimization of well placement for CO2 sequestration in subsea hydrate reservoirs considering field synergy and inter-well interference. Energy, 2026, 360, 141571. (IF: 10.1, 大类1区)

[3]Xin-Ran Sun, Meng-Ge Li, Yong-Jie Wang, Bao-Sin Qu, Tong Qin, Zhi-Heng Wang, Yan Lin*, Jie Zhong, Xiao-Lin Wang, Fei Wang*. 3D-printed reactor with designed architectures and regulated surface roughness for high-density methane storage in hydrates. Chemical Engineering Science, 2026, 335, 124417. (IF: 5.1, 大类1区)

[4]Xin-Yan Tian, Jin-Tao Zhang, Qing Gao, Yan Lin*, Fei Wang*, Xiao-Lin Wang. Advances in the synthesis and application of porous liquids. Separation and Purification Technology, 2026, 403, 138795. (IF: 9.1, 大类1区)

[5]Yifan Zhang, Haoyu Yuan, Senbo Xiao, Zhiliang Zhang, Fei Wang*, Jianying He*. Dissolution-driven CO₂/CH₄ separation via gas hydrates: Mechanism-guided process optimization. Journal of CO2 Utilization, 2026, 108, 103455. (IF: 8.6, 大类2区)

[6]Yan Lin, Yan-Ling Guo, Zhi-Yuan Wang*, Jie Zhong, Xiao-Ming Wang, Yi-Ning Ding*, Hong-Zheng Lu, Fei Wang*, Xiao-Lin Wang. Revealing the kinetic promotion mechanism of carbon nanotubes to methane hydrate formation: As to the situation coupled with traditional kinetic promoter L-leucine. Chemical Engineering Journal, 2026, 539, 177101. (IF: 12.5, 大类1区)

[7]Xuehui Zhou, Kejia Xu, Peng Zhang, Chenwei Liu, Daiming Liu, Guodong Zhang*, Fei Wang*, Xiaolin Wang. A composite DIOX/PSNS-g-CTAB promotion system enhances hydrate-based solidified hydrogen storage. Energy, 2026, 353, 140974. (IF: 10.1, 大类1区)

[8]Mengyang Li, Jie Zhong, Haoyu Yuan, Xu Wang, Yuedong Zhang, Zhiyuan Wang,* Chen Chen,* Fei Wang*. Advances in heat and mass transfer enhancement for gas hydrate formation: A review of models, strategies, and conductive materials. International Journal of Heat and Mass Transfer, 2026, 263, 128681. (IF: 6.6, 大类2区)

[9]Elaheh Sadeh, Abdolrez Farhadian*, Zherui Chen, Abolfazl Mohammadi, Fei Wang*, Nastaran Sayyari, Rustam R. Davletshin. Trace amounts of renewable surfactants enable rapid and high-density methane storage in clathrate hydrates: Sustainable alternatives to synthetic promoters. Green Chemistry, 2026, 28, 3765-3787. (IF: 10.6, 大类1区)

[10]Xinran Sun, Yi Zhong, Yanling Guo, Zixuan Fu, Li Li, Yan Lin*, Cheng Peng, Peng Wang, Xiaolin Wang, Fei Wang*. Enhanced methane storage in hydrates via silver-decorated graphene aerogels: Shortened induction time and optimized growth dynamics. Journal of Energy Storage, 2026, 146, 120257. (IF: 10.7, 大类2区)

2025年度

[11]Xiaoming Wang, Ying Miao, Yanling Guo, Mengge Li, Xinyan Tian, Qing Gao, Zixuan Fu, Yan Lin*, Peng Wang, Abdolreza Farhadian*, Fei Wang*. Designing internal container architectures to control methane hydrate formation with high energy density. Energy, 2025, 340, 139333. (IF: 10.1, 大类1区)

[12]Shihao Zhao, Peng Zhang, Guodong Zhang*, Fei Wang*. ML-guided prediction of hydrogen hydrate formation: Guiding experiment design and mechanistic insight. Chemical Engineering Journal, 2025, 522, 167230. (IF: 12.5, 大类1区)

[13]Xiaoming Wang, Zhenxing Hou, Xu Wang, Xinyan Tian, Qing Gao, Chen Chen*, and Fei Wang*. Multipoint Interfacial Disturbance Driven by Electromagnetic Field for Promoting Methane Hydrate Formation. Langmuir, 2025, 41, 21359-21367. (IF: 4.4, 大类2区)

[14]Jingyu Lv, Kang Tan, Fei Wang*, Chuanyu Dang, and Mengting Sun*. Sodium p‑styrene sulfonate as a Remarkable Kinetic Promoter for CO2 Hydrate Formation: Promotion Efficiency and Mechanism. Energy & Fuels, 2025, 39, 5357-15368. (IF: 6)

[15]Yongtao Zhang, Zaizheng Jiang, Zhihe Xin, Qingqi Dong, Fei Wang*. Separation of Gas Mixture of H2 and CO2 by Nanopromoter Enhanced Gas Hydrate Formation. Langmuir, 2025, 41, 20999-21009. (IF: 4.4, 大类2区)

[16]Peng Zhang, Guodong Zhang *, Daiming Liu, Abdolreza Farhadian*, Alimorad Rashidi, and Fei Wang*. Adsorption-Driven Preferential Crystallization and Growth Direction Switching of Methane Hydrates within Confined Porespaces. Crystal Growth Design, 2025, 25,5672-5678.(IF: 3.6,小类1区)

[17]Yongtao Zhang, Zaizheng Jiang, Zhiliang Tu, Zhihe Xin, Fei Wang*. Purification of low concentration coalbed methane via hydrate formation enhanced by carbon-based nanopromoters. Fuel, 2026, 403, 136075. (IF: 7.8, 大类2区)

[18]Fei Wang, Yifan Xu, Peng Zhang, Daiming Liu, Guodong Zhang*. Rapid and continuous generation of methane hydrates under low pressure promotes the efficient capture of associated petroleum gas (APG). Energy, 2025, 332, 137197. (IF: 10.1, 大类1区)

[19]Yifan Xu, Peng Zhang, Xin Xiang, Rongtong Qin, Daiming Liu, Guodong Zhang*, Fei Wang*. Continuous and efficient production of CH4/THF/DIOX composite hydrates for energy dense storage under moderate conditions. Journal of Environmental Chemical Engineering, 2025, 13, 117225. (IF: 7.5, 大类2区)

[20]Zhibing Xuan, Xinran Sun, Xiaowang Zhang, Guodong Zhang, Fei Wang*, Daiming Liu*. Efficient formation of methane hydrate in the sulfonated polyimide foam with balanced surface wettability. Chemical Engineering Journal, 2025, 515, 163958. (IF: 12.5, 大类1区)

[21]Wenhui Ma, Li Li, Yan Lin*, Fei Wang*. Management of formation kinetics and energy storage capacity of methane hydrates via Ag-modified graphene aerogel. Energy & Fuels, 2025, 39, 10980-10989. (IF: 6)

[22]Kang Tan, Fei Wang*, Mengting Sun*. Research progress on bio-additives in hydrate-based energy technologies: Application scenarios, classification, functions and mechanisms. Applied Energy, 2025, 394, 126164. (IF: 12.2,大类1区)

[23]Zaizheng Jiang, Zhiliang Tu, Zhihe Xin, Guodong Zhang, Fei Wang*, and Yongtao Zhang*. Recovery of Methane from Low-Concentration Coalbed Methane via Hydrate Formation Enhanced by -SO3-Coated Nanopolymers. Langmuir, 2025, 41, 12597-12606. (IF: 4.4, 大类2区)

[24]Fangzheng Hua, Kang Tan, Jingyu Lv, Fei Wang*, Mengting Sun*. Sodium p-styrenesulfonate serving as an effective and non-foaming promoter for methane hydrate formation. Journal of Environmental Chemical Engineering, 2025, 13, 116931. (IF: 7.5, 大类2区)

[25]Xiaoming Wang, Zehua Huang, Mengge Li, Hongzheng Lu, Mengting Sun*, Yuanmei Song*, Xiaolin Wang, Huifang Li, Yan He, Fei Wang*. Re-evaluation of using carbon nanotubes as the kinetic promoters for methane hydrate formation. Chemical Engineering Journal, 2025, 513, 162937. (IF: 12.5, 大类1区)

[26]Zhao Liang, Ying Teng, Chen Chen, Yiqi Chen, Bin Wang, Fei Wang*, Senyou An, Pengfei Wang*, Yun Li, Yuze Wang, Jinlong Zhu, Songbai Han. Hydrate-based separation of nitrous oxide: Mechanisms, phase equilibria, and kinetic insights for enhanced greenhouse gas mitigation. Separation and Purification Technology, 2025, 366, 132785. (IF: 9.1, 大类1区)

[27]Hao-Ran Li, Yu-Ming Chen, Cheng-Chao Jin, Ai-Ze Hao, Shania Rehmand, Bing-Bing Chen, Fei Wang*, Dai-Ming Liu*. High-performance piezocatalytic hydrogen evolution over bismuth oxyhalides with halogen-dependent piezoelectricity and surface activity. Rare Metals, 2025, 44, 5475-5485. (IF: 12, 大类1区)

[28]Xiaoming Wang, Shangjie Shao, Guangyong Yang, Qixian Yan, Haoyu Yuan, Chen Chen*, Fei Wang*. Experimental verification and 4E analysis of a hydrate-based CO2 capture system for fuel gas decarbonization. Carbon Neutrality, 2025, 4, 11. (IF: 12.5)

[29]Abdolreza Farhadiana*, Anh Phan, Zahra Taheri Rizi*, Alireza Shaabani, Elaheh Sadeh, Mahboobeh Mohammad-Taheri, Mohammad Ali Aminolroayaei, Abolfazl Mohammadi, Nastaran Sayyari, Fei Wang*. Green chemistry advancement in methane storage: A biodegradable surfactant for improved gas hydrate formation and sustainability. Green Chemistry, 2025, 27, 4523-4539. (IF: 10.6, 大类1区)

[30]Fei Wang, Mengqi Liu, Peng Zhang, Yifan Xu, Daiming Liu, Guodong Zhang. Insights into the Storage of Adsorption-Hydration Natural Gas in Preadsorbed Water Nanoporous Materials. Langmuir, 2025, 41, 5581-5590. (IF: 4.4, 大类2区)

[31]Daiming Liu, Lining Tan, Haoran Li, Zhibing Xuan, Chengchao Jin*, Bingbing Chen, Fei Wang*. Robust Coupling Between Piezoelectric Field and Interfacial Polarization in Layered Bismuth-Based Heterostructure for High-performance Piezocatalytic Water Splitting. Small, 2025, 2500268. (IF: 11.8, 小类1区)

[32]Zhihe Xin, Zaizheng Jiang, Fei Wang*, Yongtao Zhang*. Review on flow assurance issues in natural gas pipeline transmission systems and solutions to hydrate deposition. Chemical Engineering Science, 2025, 306, 121290. (IF: 5.1, 大类1区)

[33]Honglin Yu, Peng Zhang, Mengqi Liu, Daiming Liu, Guodong Zhang*, Fei Wang*. CTAB serves as the best kinetic promoters of H2/DIOX mixed hydrates for moderate solidified hydrogen storage via clathrates. Chemical Engineering Journal, 2025, 506, 159818. (IF: 12.5, 大类1区)

[34]Zhibing Xuan, Daiming Liu*, Xinran Sun, Yuming Chen, Haoran Li, Yongtao Zhang, Guodong Zhang, Fei Wang*. Recent advances in high-efficiency formation of gas hydrates within fixed beds: classification, mechanism, applications and challenges. Chemical Engineering Journal, 2025, 505, 159611. (IF: 12.5, 大类1区)

[35]Yuming Chen#, Fei Wang#, Haoran Li, Daiming Liu *. High-performance hydrogenation of N-propylcarbazole over Ru-Ni alloy catalyst by efficient overall hydrogenation transition. Journal of Alloys and Compounds, 2025, 1013, 178619. (IF: 6.7,大类2区)

[36]Fangzheng Hua, Kang Tan, Jingyu Lv, Fei Wang*, Mengting Sun*. Hydrate-Based Methane Storage in Biodegradable Hydrogels Absorbing Dilute Sodium P-Styrenesulfonate Solution. Gels, 2025, 11, 1. (IF: 6.5,大类2区)

[37]Chang Li, Kang Tan, Fangzheng Hua, Changxue Wang, Xiaolin Wang, Fei Wang*, Mengting Sun*. Methane hydrate formation promoted by eco-friendly hydrogels carrying with trace SDS. Fuel, 2025, 380, 133107. (IF: 7.8,大类2区)

2024年度

[38]Mengqi Liu, Honglin Yu, Daiming Liu, Guodong Zhang*, Fei Wang*. Methane dense storage in ZIF-8@cu under low pressure via adsorption-absorption synergy. Journal of Energy Storage, 2024, 103, 114400. (IF: 10.7, 大类2区)

[39]Xiaoming Wang, Li Li, Yan Lin, Jin Xu, Jiatao Zhao, Xiaoguang Zhang*, Fei Wang*, and Xiaolin Wang. Methane Hydrates Formed in a Porous Graphene Aerogel for Energy Storage. Crystal Growth & Design, 2024, 24, 9223-9234. (IF: 3.6,小类1区)

[40]Honglin Yu, Mengqi Liu, Guodong Zhang*, Fei Wang*. Water-based Silicalite-1 porous liquid facilitates adsorption and absorption for CH4 capture. Chemical Engineering Journal, 2024, 499, 156453. (IF: 12.5, 大类1区)

[41]Mengqi Liu, Honglin Yu, Zhe Liu, Daiming Liu, Guodong Zhang*, Fei Wang*. Opening the Pandora box of hydrate-based adsorption-hydration natural gas technology in industrial application. Fuel, 2024, 376, 1332676. (IF: 7.8,大类2区)

[42]Xinran Sun, Daiming Liu*, Zhibing Xuan, Yongtao Zhang, Guodong Zhang, Chen Chen, Mengting Sun, Yan Lin, Jie Zhong, Fei Wang*. High-performance static formation of methane hydrate in fixed bed constructed by incorporating expanded graphite into polyimide foam. Chemical Engineering Journal, 2024, 493, 152777. (IF: 12.5, 大类1区)

[43]Honggang Yu, Chen Chen,* Fei Wang*. Kinetic Promotional Effect of Methane Hydrate Formation in the Presence of Leucine. Energy & Fuels, 2024, 38, 8641-8648. (IF: 6)

[44]Elaheh Sadeh, Abdolreza Farhadian*, Mina Maddah, Matvei E. Semenov, Abolfazl Mohammadi, Fei Wang*. Branched sulfonated promoter: Achieving high methane uptake and foam-free gas recovery for solidified gas storage. Chemical Engineering Journal, 2024, 487, 150674. (IF: 12.5, 大类1区)

[45]Yaning Kong, Honglin Yu, Mengqi Liu, Guodong Zhang*, Fei Wang*. Ultra-rapid formation of mixed H2/DIOX/THF hydrate under low driving force: Important insight for hydrate-based hydrogen storage. Applied Energy, 2024, 362, 123029. (IF: 12.2,大类1区)

[46]Xinqiao Tang, Jiatao Zhao, Yan He*, Fei Wang*. High-efficiency preparation of carbon nanotube catalysts via mono/bi-microemulsion nanoreactor. Colloids and Surfaces A, 2024, 687, 133503. (IF: 5.4,大类2区)

[47]Chang Li, Kang Tan, Fangzheng Hua, Changxue Wang, Mengting Sun*, Fei Wang*, Xiaolin Wang. Eco-friendly hydrogels serving as water carriers for improving methane hydrate formation and dissociation processes. Fuel, 2024, 362, 130854. (IF: 7.8,大类2区)

[48]Xinran Sun, Daiming Liu*, Yongtao Zhang, Guodong Zhang, Fei Wang*, and Xiaolin Wang. Methane hydrate formation enhanced by thermally expanded graphite with multi-sized pores. Chemical Engineering Journal, 2024, 474, 148280. (IF: 12.5, 大类1区)

[49]Zhiliang Tu, Li Li, Fei Wang*, Yongtao Zhang*. Review on separation of coalbed methane by hydrate method. Fuel, 2024, 358, 130224. (IF: 7.8,大类2区)

2023年度

[50]Dong Chen, Xiaoming Wang, Jiayi Zhang, Yan He, Yan Lin*, Fei Wang*. Inhibition on methane hydrate formation by polyacrylate superabsorbent hydrogel. Energy, 2023, 284, 129303. (IF: 10.1,大类1区)

[51]Lining Tan, Xinran Sun, Jintao Zhang, Chengchao Jin, Fei Wang* and Daiming Liu*. Aurivillius-layered Bi2WO6 nanoplates with CoOxcocatalyst as high-performance piezocatalyst for hydrogen evolution. Dalton Transactions, 2023, 52, 14210. (IF: 3.3)

[52]Yaning Kong, Fei Wang*, Guodong Zhang *, Xiaolin Wang. Enhanced formation kinetics of mixed H2/THF hydrate in the presence of nano promoters. Chemical Engineering Journal, 2023, 474, 145901. (IF: 12.5, 大类1区)

[53]Guodong Zhang, Penghui Song, Yaning Kong, Fei Wang*. The first trial of hydrate continuous production: Paving way on hydrate-based carbon capture and storage. Energy, 2023, 282, 128917. (IF: 10.1,大类1区)

[54]Guodong Zhang, Zhe Liu, YaningKong, Fei Wang*. Hydrate-based adsorption-hydration hybrid approach enhances methane storage in wet MIL-101(Cr)@AC under mild condition. Chemical Engineering Journal, 2023, 472, 145068. (IF: 12.5, 大类1区)

[55]Guodong Zhang, Runcheng Zhang, YaningKong, Fei Wang*. Complicated hydrate formation kinetics induced by ion specific effect in porous surface. Chemical Engineering Journal, 2023, 467, 143471. (IF: 12.5, 大类1区)

[56]Daiming Liu, Jintao Zhang, Lining Tan, Chengchao Jin*, Ming Li, Bingbing Chen, Guodong Zhang, Yongtao Zhang, Fei Wang*. Enhanced piezocatalytic hydrogen evolution performance of bismuth vanadate by the synergistic effect of facet engineering and cocatalyst engineering. Journal of Colloid and Interface Science, 2023, 646, 159-166 (IF: 9.6, 大类1区)

[57]Chen Chen, Fengze Ma, Xiaoming Wang, Li Li, Ying Miao, Yang Bai*, Yan He, Fei Wang*. Carbon nanotubes-based porous media constructed via 3D printing for methane hydrate formation. Fuel, 2023, 349, 128645 (IF: 7.8,大类2区)

[58]Xiaolai Zhang, Jiatao Zhao, Chen Chen, Haoyu Yuan, Yonghao Zhang, Yan He, Fei Wang*. SDS-promoted methane hydrate growth in presence of a superhydrophobic substrate. Chemical Engineering Science, 2023, 276, 118761. (IF: 5.1, 大类1区)

[59]Chen Chen, Haoyu Yuan, Xiaoming Wang, Na Wang, Yan He, Fei Wang*. Magnetically separable 0D-2D Fe3O4-GO nanocomposite with high thermal diffusivity for methane hydrate formation. Chemical Engineering Journal, 2023, 465, 142832. (IF: 12.5, 大类1区)

[60]Xinru Liu, Xinqiao Tang, Yan He*, Fei Wang*. Microemulsion nanoreactor applied for the synthesis of iron-based catalysts for carbon nanotube formation. Colloids and Surfaces A, 2023, 666, 131325. (IF: 5.4,大类2区)

[61]Daiming Liu, Xinran Sun, Lining Tan, Jintao Zhang, Chengchao Jin, Fei Wang*. High-performance piezocatalytic hydrogen evolution by (Bi0.5Na0.5)TiO3 cubes decorated with cocatalysts. Ceramics International, 2023, 49, 20343-20350. (IF: 6,小类1区)

[62]Guodong Zhang, Zhe Liu, Daiming Liu, Yan Lin*, Fei Wang*. Hydrate-based adsorption-hydration hybrid approach enhances methane storage density in ZIF-8@AC. Chemical Engineering Journal, 2023, 455, 140503. (IF: 12.5, 大类1区)

[63]Chen Chen, Haoyu Yuan, Xiaoming Wang, Na Wang, Yan Lin, Yan He, Fei Wang*. Magnetic nanopromoter enables excellent kinetic promotion and cycling performance in methane hydrate formation. Chemical Engineering Journal, 2023, 452, 139318. (IF: 12.5, 大类1区)

2022年度

[64]Yongtao Zhang, Fulin Chen, Yan He, Fei Wang*. Enhanced CO2 hydrate formation via biopromoter coupled with initial stirring activation. Fuel, 2022, 330, 125713. (IF: 7.8,大类2区)

[65]Guodong Zhang, Xiaoyun Shi, Zhe Liu, Fei Wang*. The synergy of spiral agitation and nano-promoters significantly enhances hydrate formation under mild conditions. Chemical Engineering Journal, 2022, 450, 138354. (IF: 12.5, 大类1区)

[66]Lupeng Wu, Yi Zhong, Haoyu Yuan, Hui Liang, Fei Wang*, Le Gu*. Ultra-dispersive sulfonated graphene as water-based lubricant additives for enhancing tribological performance. Tribology International, 2022, 174, 107759. (IF: 7.6, 大类1区)

[67]Fei Wang#, Jintao Zhang#, Chengchao Jin, Xucheng Ke, Fei Fei Wang, Daiming Liu. Unveiling the effect of crystal facets on piezo-photocatalytic activity of BiVO4. Nano Energy, 2022, 101, 107573. (IF: 16.7, 大类1区)

[68]Chen Chen, Haoyu Yuan, Rongshan Bi, Na Wang, Yujiao Li, Yan He*, Fei Wang*. A novel conceptual design of LNG-sourced natural gas peak-shaving with gas hydrates as the medium. Energy, 2022, 253, 124169. (IF: 10.1,大类1区)

[69]Fei Wang, Fu-Peng Song, Chang Li, Meng-Ting Sun*. Promoted methane hydrate formation in -SO3--rich hydrogel clathrate. Fuel, 2022, 323, 124398. (IF: 7.8,大类2区)

[70]Chen Chen, Haoyu Yuan, Xiaoming Wang, Yan Lin, Yan He, Fei Wang*. Recyclable and high-efficiency methane hydrate formation promoter based on SDS-coated superparamagnetic nano-Fe3O4. Chemical Engineering Journal, 2022, 437, 135365. (IF: 12.5, 大类1区)

[71]Fei Wang, Fu-Peng Song, Chang Li, Meng-Ting Sun*. Preparation of hydrogel-based promoter for methane hydrate formation: Effects of -SO3- density on promotion efficiency. Energy & Fuels, 2022, 36, 2731-2738. (IF: 6)

[72]Dai-Ming Liu, Jin-Tao Zhang, Cheng-Chao Jin*, Bing-Bing Chen, Jing Hu, Ren Zhu and Fei Wang*. Insight into oxygen-vacancy regulation on piezocatalytic activity of (Bi1/2Na1/2)TiO3 crystallites: Experiments and first-principles calculations. Nano Energy, 2022, 95, 106975. (IF: 16.7, 大类1区)

[73]Guodong Zhang, Xiaoyun Shi, Fei Wang*. Enhanced hydrate formation under mild conditions using a novel spiral-agitated reactor. AIChE Journal, 2022, 68, e17617. (IF: 4.1,大类1区)

[74]Guodong Zhang, Xiaoyun Shi, Fei Wang*. Methane Hydrate Production Using a Novel Spiral-agitated Reactor: Promotion of Hydrate Formation Kinetics. AIChE Journal, 2022, 68, e17423. (IF: 4.1,大类1区)

2021年度

[75]Runcheng Zhang, Guodong Zhang*, Fei Wang*. Hydrate formation loaded by activated carbon bed in 3D printed containers. Energy & Fuels, 2021, 35, 15675-15683. (IF: 6)

[76]Yang Bai, Hongzheng Lu, Fengze Ma, Yan He*, Fei Wang*. Carbon nanotube-based nanopromoters for gas hydrate formation. Journal of Natural Gas Science and Engineering, 2021, 94, 104109. (IF: 5.3,大类2区)

[77]Fei Wang*, Amadeu K. Sum, Bei Liu. Editorial: Recent Advances in Promoters for Gas Hydrate Formation. Frontiers in Chemistry, 2021, 9, 708269. (IF: 5.3)

[78]Guodong Zhang, Runcheng Zhang, Fei Wang*. Fast formation kinetics of methane hydrates loaded by silver nanoparticle coated activated carbon (Ag-NP@AC). Chemical Engineering Journal, 2021, 417, 129206. (IF: 12.5, 大类1区)

[79]Daiming Liu, Chengchao Jin, Yongtao Zhang, Yan He, Fei Wang*. Integrated piezo-photocatalysis of electrospun Bi4Ti3O12 nanostructures by bi-harvesting visible light and ultrasonic energies. Ceramics International, 2021, 47, 7692-7699. (IF: 6,小类1区)

[80]Guodong Zhang; Bingjie Liu; Lu Xu; Runcheng Zhang; Yan He; Fei Wang*. How porous surfaces influence the nucleation and growth of methane hydrates. Fuel, 2021, 291, 120142. (IF: 7.8,大类2区).

[81]Guodong Zhang, Ruobing Niu, Xiaoyun Shi, Runcheng Zhang, Fei Wang*. Micro noncontact interaction between falling particles and plates in viscous fluids. Powder Technology, 2021, 381, 567-575. (IF: 5.5,大类2区)

[82]Meng-Ting Sun, Fu-Peng Song, Guo-Dong Zhang, Jing-Zhe Li, Fei Wang*. Polymeric superabsorbent hydrogel-based kinetic promotion for gas hydrate formation. Fuel, 2021, 288, 119676 (IF: 7.8,大类2区).

2020年度

[83]Guodong Zhang, Xiaoyun Shi, Runcheng Zhang, Kun Chao and Fei Wang*. Promotion of Activated Carbon on the Nucleation and Growth Kinetics of Methane Hydrates. Frontiers in Chemistry, 2020, 8, 526101. (IF: 5.3)

[84]Yong-Tao Zhang, Fu-Lin Chen, Shi-Jie Yu and Fei Wang*. Biopromoters for Gas Hydrate Formation: A Mini Review of Current Status. Frontiers in Chemistry, 2020, 8, 481. (IF: 5.3)

[85]Mengting Sun, Guodong Zhang and Fei Wang*. Graphene-based kinetic promotion to gas hydrate formation. Frontiers in Chemistry, 2020, 8, 514. (IF: 5.3)

[86]Yan Lin, Li Liu, Meng-Ting Sun, Chen Chen, Guo-Dong Zhang, Yan He, Fei Wang*. Rapid Formation of Methane Hydrates with Compact Agglomeration via Regulating the Hydrophilic Groups of Nanopromoters. AIChE Journal, 2020,66,e16296. (IF: 4.1,大类1区)

[87]Guodong Zhang, Mengting Sun, Bingjie Liu, Fei Wang*. Adsorption-induced two-way nanoconvection enhances nucleation and growth kinetics of methane hydrates in confined porespace. Chemical Engineering Journal, 2020, 396, 121256. (IF: 12.5,大类1区)

[88]Daiming Liu, Chengchao Jin, Fukai Shan*, Junjing He, Fei Wang*. Synthesizing BaTiO3 Nanostructures to Explore Morphological Influence, Kinetics, and Mechanism of Piezocatalytic Dye Degradation. ACS Applied Materials & Interfaces, 2020, 12, 17443-17451. (IF: 7.8,大类2区)

2019年度

[89]Yan He, Meng-Ting Sun, Chen Chen, Guo-Dong Zhang, Kun Chao, Yan Lin, Fei Wang*. Surfactant-based Promotion to Gas Hydrate Formation for Energy Storage. Journal of Materials Chemistry A, 2019, 7, 21634-21661. (IF: 9.2,大类2区)

[90]Yuan-Mei Song, Fei Wang*, Sheng-Jun Luo*, Rong-Bo Guo*, Dongyan Xu. Methane hydrate formation improved by water-soluble carbon nanotubes via π-π conjugated molecules functionalization. Fuel, 2019, 243, 185-191. (IF: 7.8,大类2区).

[91]Meng-Ting Sun, Zhi-Man Yang, Xiao-Lei Fan, Fei Wang*, Rong-Bo Guo*, Dong-Yan Xu. Improved methane elimination by methane-oxidizing bacteria immobilized on modified oil shale semicoke. Science of the Total Environment, 2019, 655, 915-923. (IF: 8,大类2区)

2018年度

[92]Yan He, Fei Wang*. Hydrate-based CO2 capture: kinetic improvement via graphene-carried -SO3-and Ag nanoparticles. Journal of Materials Chemistry A, 2018, 6, 22619-22625. (IF: 9.2,大类2区)

[93]Yuan-Mei Song#,Fei Wang#, Gang Guo, Shengjun Luo*, Rongbo Guo*. Energy-efficient storage of methane in the formed hydrates with metal nanoparticles-grafted carbon nanotubes as promoter. Applied Energy, 2018, 224, 175-183. (IF: 12.2,大类1区)

[94]Fei Wang#, Yuan-Mei Song#, Guoqiang Liu, Gang Guo, Shengjun Luo*, Rongbo Guo*. Rapid methane hydrate formation promoted by Ag&SDS-coated nanospheres for energy storage. Applied Energy, 2018, 213, 227-234. (IF: 12.2,大类1区)

[95]Gang Guo#, Fei Wang#, Guo-Qiang Liu, Sheng-Jun Luo, Rong-Bo Guo*. Calculation on the phase equilibrium and critical temperature of CH4/CO2. Process Safety and Environmental Protection. 2018, 113, 369-377. (IF: 7.9,小类1区)

2017年度

[96]Fei Wang, Gang Guo, Shengjun Luo*, Rongbo Guo*. Grafting of nano-Ag particles on -SO3--coated nanopolymers for promoting methane hydrate formation. Journal of Materials Chemistry A, 2017, 5, 18486-18493. (IF: 9.2, 大类2区, 内封面论文)

[97]Fei Wang, Gang Guo, Shengjun Luo*, Rongbo Guo*. Preparation of -SO3--coated nanopromoters for methane hydrate formation: effects of the existence pattern of -SO3-groups on the promotion efficiency. Journal of Materials Chemistry A, 2017, 5, 2640-2648. (IF: 9.2,大类2区)

[98]Yuan-Mei Song#, Fei Wang#, Gang Guo, Shengjun Luo*, Rongbo Guo*. Amphiphilic-Polymer-Coated Carbon Nanotubes as Promoters for Methane Hydrate Formation. ACS Sustainable Chemistry & Engineering, 2017, 5, 9271-9278. (IF: 7.6, 大类1区)

[99]Fei Wang#*, Han-Lin Meng#, Gang Guo, Shengjun Luo*, Rongbo Guo*. Methane Hydrate Formation Promoted by -SO3--coated Graphene Oxide Nano-sheets. ACS Sustainable Chemistry & Engineering. 2017,5, 6597-6604.(IF: 7.6, 大类1区)

[100]Fei Wang, Gang Guo, Shengjun Luo*, Rongbo Guo*. Π-π conjugated molecule-based self-assembly of surfactants for promoting methane hydrate formation. ACS Sustainable Chemistry & Engineering,2017, 5, 1408-1415. (IF: 7.6,大类1区)

[101]Guo-Qiang Liu#, Fei Wang#, Sheng-Jun Luo, Dong-Yan Xu*, Rong-Bo Guo. Enhanced methane hydrate formation with SDS-coated Fe3O4 nanoparticles as promoters. Journal of Molecular Liquids, 2017, 230, 315-321. (IF: 5.3,大类2区)

2016年度

[102]Fei Wang, Guo-Qiang Liu, Han-Lin Meng, Gang Guo, Shengjun Luo*, Rongbo Guo*. Improved methane hydrate formation and dissociation with nanospheres-based fixed surfactants. ACS Sustainable Chemistry & Engineering, 2016, 4, 2107-2113. (IF: 7.6,大类1区)

[103]Fei Wang, Shan-Fei Fu, Gang Guo, Zhen-Zhen Jia, Sheng-Jun Luo*, Rong-Bo Guo*. Experimental study on hydrate-based CO2 removal from CH4/CO2 mixture. Energy, 2016, 104, 76-84. (IF: 10.1,大类1区)

[104]Fei Wang, Gang Guo, Guo-Qiang Liu, Sheng-Jun Luo*, Rong-Bo Guo*. Effects of surfactant micelles and surfactant-coated nanospheres on methane hydrate growth pattern. Chemical Engineering Science, 2016, 144, 108-115. (IF: 5.1,大类1区)

2015年度

[105]Fei Wang, Lin Wang, Chuanshui Wang, Gang Guo, Guoqiang Liu, Shengjun Luo*, Rongbo Guo*. Direction Controlled Methane Hydrate Growth. Crystal Growth & Design, 2015, 15, 5112-5117. (IF: 3.6,小类1区)

[106]Fei Wang, Zhen-Zhen Jia, Sheng-Jun Luo, Shan-Fei Fu, Lin Wang, Xiao-Shuang Shi, Chuan-Shui Wang, Rong-Bo Guo. Effects of different anionic surfactants on methane hydrate formation. Chemical Engineering Science, 2015, 137, 896-903. (IF: 5.1,大类1区)

[107]Fei Wang, Sheng-Jun Luo*, Shan-Fei Fu, Zhen-Zhen Jia, Meng Dai, Chuan-Shui Wang and Rong-Bo Guo*. Methane hydrate formation with surfactants fixed on the surface of polystyrene nanospheres. Journal of Materials Chemistry A,2015, 3, 8316-8323. (IF: 9.2,大类2区,JMCA Hot paper)

2014年度

[108]Fei Wang, KuanJun Fang*. Effect of molecular structures of Gemini and polymerizable emulsifiers on cationic emulsion copolymerization of styrene and butyl acrylate. Colloid and Polymer Science, 2014, 292, 1449-1455. (IF: 2.9)

[109]Fei Wang, KuanJun Fang*. Adsorption of cationic nanospheres on cotton fibers: the effect of emulsifiers used in the cationic emulsion polymerization. Colloid and Polymer Science, 2014, 292, 2375-2383. (IF: 2.9)

专利/著作

[1] 王飞,陈宸,张国栋,巢昆,孙梦婷. 一种以NGH为媒介的LNG调峰方法,发明专利,专利号:ZL201910790461.6,授权日期:2024.7.9.

[2] 王飞,孙梦婷,李畅. 高效稳定的水凝胶基气体水合物促进剂的制备方法,发明专利,专利号:ZL202211334691.X,授权日期:2023.10.24.

[3] 王飞,陈宸,苑浩渝. 一种连续式水合物法海水淡化装置及方法,发明专利,专利号:ZL202210578866.5,授权日期:2023.8.29.

[4] 王飞,张永涛,陈福林. 一种喷淋式水合物连续反应装置,发明专利,专利号:ZL202110339614.2,授权日期:2022.6.24;

[5] 王飞,孙梦婷,张国栋,陈宸. 一种具有稳定溶液分散性的二维纳米磁子制备方法,发明专利,专利号:ZL201911020600.3,授权日期:2021.8.10.

[6] 王飞,张国栋. 一种伴生气回收处理装置和方法,发明专利,专利号:ZL202010730978.9,授权日期:2021.7.27;

[7] 王飞,孙梦婷,张国栋,陈宸. 一种具有稳定溶液分散性的球形纳米磁子及其制备方法,发明专利,专利号:ZL201911020524.6,授权日期:2021.7.9.

[8] 王飞,张国栋. 一种水合物生产-输运一体式连续反应装置,发明专利,专利号:ZL202010993795.6,授权日期:2021.3.12;

[9] 王飞,何燕,刘丽,陈宸. 天然气水合物纳米促进剂及其制备方法,发明专利,专利号:ZL201811133374.5,授权日期:2021.1.19;

[10] Wang, F., Sum, A.K., Liu, B., Von Solms N., eds. Recent Advances in Promoters for Gas Hydrate Formation. Lausanne: Frontiers Media SA. 2021, Doi: 10.3389/978-2-88971-132-1.

获奖及荣誉

[1] 国际先进材料学会科学家奖(IAAM Scientist Medal),国际先进材料学会,2025;

[2] 中国化工学会科学技术奖基础研究成果奖二等奖(1/5),中国化工学会,2024;

[3] 青岛市“五一劳动奖章”,青岛市总工会,2023;

[4] 中国可再生能源学会优秀青年科技人才,中国可再生能源学会,2021;

[5] 国际先进材料学会青年科学家奖(IAAM Young Scientist Medal),国际先进材料学会,2021;

[6] 国际先进材料学会会士(IAAM Fellow),国际先进材料学会,2021;

[7] 第十届中国创新创业大赛江苏赛区优秀团队奖(1/5),中国创新创业大赛江苏赛区组委会,2021.

科研项目

[1] 基于碳纳米管基质的天然气水合物微反应空间构建及作用机理研究,国家自然科学基金面上项目(21978142),2020.1-2023.12,61万,主持;

[2] 天然气水合物纳米促进剂的制备及作用机理研究,国家自然科学基金青年基金(21706269),2018.1-2020.12,20万,主持;

[3] 水合物捕碳及储能,山东省自然科学基金青年基金A类(ZR2025QA17),2025.10-2028.9,100万,主持;

[4] 天然气水合物,山东省自然科学基金优秀青年基金(ZR2022YQ13),2023.1 -2025.12,50万,主持;

[5] 水合物固态储氢,山东省泰山学者人才工程项目(tsqn202211159),2022.7-2025.6,75万,主持;

[6] 山东省高等学校青创人才引育计划天然气水合物创新团队(XM2021A235),2020.1-2022.12,200万,主持;

[7] 纳米球固载化表面活性剂对甲烷水合物促进作用研究,中国博士后基金(2017M612370),2017.8-2019.7,5万,主持;

[8] 基于表面活性剂亲水性基团的甲烷水合物纳米促进剂的制备及作用机理研究,山东省自然科学基金博士基金(ZR2017BB048),2017.8-2019.12,8万,主持;

[9] 水合捕碳工艺设计及连续化装备研发及产业化,泰州市“凤城英才计划”双创引进专项,2026.1-2028.12,100万,主持;

[10] 新型二氧化碳固态气肥制备技术示范与应用,青岛市科技惠民示范专项(24-1-8-xdny-18-nsh),2024.4-2026.3,60万,主持;

[11] 光伏绿电耦合水合物捕碳技术开发,横向课题,2026.8.1-2026.9.30,21.5万,主持;

[12] CO2水合物固态气肥高效制备工艺,横向课题,2026.5.20-2028.4.19,20万,主持;

[13] 海洋CO2封存生态环境影响测试,怀柔国家实验室,2026.5-2026.12,9.5万,主持;

[14] 水合物法二氧化碳捕集催化剂开发,万华化学集团,2025.6-2026.5,60万,主持;

[15]青科大-大兴重工水合物低碳能源装备研发中心,横向课题,2024.7-2029.6,50万,主持;

[16]海水提溴实验验证,横向课题,2024.9-2024.11,30万,主持;

[17]水合物法固态天然气存储工艺开发,横向课题,2022.11-2023.10,15万,主持;

学术兼职

[1] SCI 期刊Frontiers in Energy Research,Associate editor

[2] SCI 期刊Frontiers in Chemistry,Guest editor

[3] ESCI期刊Clean Energy,青年编委

[4] ESCI期刊Carbon Neutrality,青年编委

[5] 高起点新刊Green Carbon,青年编委

[5] 核心期刊《中国海洋平台》编委会副主任委员

[6] 国家自然科学基金/博士后基金网评专家

[7] 中国可再生能源学会天然气水合物专委会委员

[8] 山东省储能学会常务理事

[9] 青岛市碳资源与电池技术循环利用重点实验室副主任

[10] 深圳市天然气水合物重点实验室学术委员会委员

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