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Renewable Energy and Energy Storage

Jian Huang

2022-02-22 11:33  点击:[]



Name

Jian   Huang

(

Department

Renewable   Energy and Energy Storage

Title

 

Contact  Information

cquhj@cqu.edu.cn

 

Biography:

Jian Huang was born in Dazhou, Sichuan province in 1994. He received his Ph. D. degree of Thermal Engineering from Harbin Institute of Technology in 2021. Currently, he is a “Hongshen Young Teacher” at the School of Energy and Power Engineering, Chongqing University. His research interests include: photothermal utilization, heat and mass transfer in porous media, and PEM water electrolysis. At present, he have published 15 papers ( 2 ESI highly cited papers) in important academic journals of this field, such as Applied Energy, Energy Conversion and Management, Desalination. His papers were cited 404 times, and 389 times in SCI. He have applied for 7 national invention patents, 5 of which have been authorized.

Education Background:

2018.09-2022.01 Harbin Institute of Technology Ph. D. of Thermal Engineering

2016.09-2018.09 Harbin Institute of Technology Master of Thermal Engineering

2012.09-2016.09 Harbin Institute of Technology Bachelor of Thermal and Power Engineering

Research Interests:

PEM water electrolysis, heat and mass transfer in porous media, photothermal utilization, seawater desalination

 

Research Grants

 

 

Selected Publications

Journal Papers:

1.       Huang J, He Y, Wang L, Huang Y, Jiang B. Bifunctional Au@TiO2 core–shell nanoparticle films for clean water generation by photocatalysis and solar evaporation[J]. Energy Conversion and Management, 2017, 132: 452459. (SCI, IF2020 = 9.709, JCRQ1, ESI highly cited papers)

2.       Huang J, He Y, Shen Z. Joule heating membrane distillation enhancement with multi-level thermal concentration and heat recovery[J]. Energy Conversion and Management, 2021, 238: 114111. (SCI, IF2020 = 9.709, JCRQ1)

3.       Huang J, Hu Y, Bai Y, He Y, Zhu J. Novel solar membrane distillation enabled by a PDMS/CNT/PVDF membrane with localized heating[J]. Desalination, 2020, 489: 114529. (SCI, IF2020 = 9.501, JCRQ1)

4.       Huang J, He Y, Chen M, Wang X. Separating photo-thermal conversion and steam generation process for evaporation enhancement using a solar absorber[J]. Applied Energy, 2019, 236: 244–252. (SCI, IF2020 =9.746, JCRQ1)

5.       Huang J, Hu Y, Bai Y, He Y. Solar membrane distillation enhancement through thermal concentration[J]. Energy, 2020, 211: 118720. (SCI, IF2020 = 7.147, JCRQ1)

6.       Huang J, He Y, Hu Y, Wang X. Coupled photothermal and joule-heating process for stable and efficient interfacial evaporation[J]. Solar Energy Materials and Solar Cells, 2019, 203: 110156. (SCI, IF2020 = 7.267, JCRQ1)

7.       Huang J, He Y, Hu Y, Wang X. Steam generation enabled by a high efficiency solar absorber with thermal concentration[J]. Energy, 2018, 165: 12821291. (SCI, IF2020 = 7.147, JCRQ1)

8.       Huang J, Tang T, He Y. Coupling photothermal and Joule-heating conversion for self-heating membrane distillation enhancement. Applied Thermal Engineering, 2021, 199: 117557. (SCI, IF2020 = 5.295, JCRQ1)

9.       Huang J, He Y, Chen M, Jiang B, Huang Y. Solar evaporation enhancement by a compound film based on Au@TiO2 core–shell nanoparticles[J]. Solar Energy, 2017, 155: 12251232. (SCI, IF2020 = 5.742, JCRQ2)

10.    Huang J, Tang T, He Y. Numerical simulation study on the mass and heat transfer in the self-heating membrane distillation process[J]. Industrial & Engineering Chemistry Research, 2021, 60 (34):12663–12674. (SCI, IF2020 = 3.72, JCRQ2)

Conferences:

1.       2018 Rome, Italy, the 3rd International Nanotechnology Conference & Expo, oral presentation

2.       2017 Seattle, USA, the ASME 2017 Summer Heat Transfer Conference, oral presentation

3.       2017 Daejeon, Korea, the 3rd International Workshop on Nano-Micro Thermal Radiation, poster presentation

4.       2017 Yangzhou, China, the UK-China International Particle Technology Forum VI, oral presentation

5.       2016 Chengdu, China, 2016 International Symposium on Fusion Tech, oral presentation

 

 

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