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FACULTY

Renewable Energy and Energy Storage

Yun Huang

2020-12-16 09:45 点击:[]


Name

Yun Huang

Department

Department of Renewable energy

Title

Associate professor

Contact Information

Email: yunhuang@cqu.edu.cn

Biography:

Dr. Huang obtained her doctor's degree in engineering from Zhejiang University in 2014. In the same year, she joined the Power Engineering Institute of Chongqing University through the introduction of the domestic talents of Chongqing University.As a project leader, she has undertaken 2 research projects supported by the National Natural Science Fundation of China and 1 research project supported by theState's Key Project of Research and Development Plan. Besides, Dr. Huang is the communication evaluation expert of National Natural Science Fundation of China, reviewer of national and international journals "Chemical Engineering Journal", "Bioresource Technology", "Applied energy", "Energy conversion and management", "International Journal of Hydrogen Energy", etc.

Her research mainly focuses on key issues about thermal physics in energy and environmental technology,CO2fixation and wastewater treatment by microalgae, Flow and mass transport in microalgae suspension and biofilm,microalgae application in wastewater treatment.

Education Background:

2014.07–Present:

Associate Professor, School of Energy and Power Engineering, Chongqing University, China.

Topic: flow and mass transfer in photo-bioreactor for microalgae cultivation to fix CO2from flue gas and microbioenergy conversion technology.

2009.09-2014.06

Ph. D in State Key Laboratory of Clean Energy Utilization, Zhejiang University, China.

Thesis Topic: Process regulation for microalgae to fix high concentrations of CO2in flue gas

2005.09-2009.06

BS in School of Thermal Energy and Power Engineering in Jiangsu University, China.

Research Interests:

Microalgae biomass conversion and utilization

Photo-bioreactor for microalgae cultivation

CO2fixation and wastewater treatment by microalgae

Flow and mass transport in microalgae suspension and biofilm

Scale up of microalgae cultivation and conversion system

Research Grants

- 2020:

National Natural Science Funds of China (No. 52076023,4 years, 580,000 RMB)

- 2019:

National Key Research and Development Program of China (No.2018YFB1501401, 4years, 370,000 RMB)

- 2017:

National Natural Science Funds of China for Young Scholar (No. 51606020,3 years, 250,000 RMB)

- 2016:

Postdoctoral Scientific Research Project of Chongqing, China (No. Xm2015070, 2 years, 50,000 RMB)

- 2015:

Scienceand Technology Support Program of Sichuan, China (No.2016GZ0317, 3 years, 300,000 RMB)

- 2015:

FundamentalResearch Funds for the Central Universities, China (No. 106112015CDJXY140003, 3 years, 100,000 RMB)

Selected Publications

Journal Papers:

1.Chaoyang Wei,Yun Huang*,Qiang Liao, Xun Zhu, Ao Xia, Xianqing Zhu. Application of bubble carrying toChlorella vulgarisflocculation with branched cationic starch: an efficient and economical microalgae harvesting method for biofuel production [J].Energy Conversion and Management, 2020, 213: 112833

2.Chaoyang Wei,Yun Huang*,Qiang Liao, Ao Xia, Xun Zhu, Xianqing Zhu. Analysis of the energy barrier betweenChlorella vulgariscells and their interfacial interactions with cationic starch under different pH and ionic strength [J].Bioresource technology, 2020, 304: 123012.

3.Yun Huang, Chaoyang Wei, Qiang Liao*, Ao Xia, Xun Zhu, Xianqing Zhu.Biodegradable branched cationic starch with high C/N ratio forChlorellavulgariscells concentration: regulating microalgae flocculation performance by pH.Bioresource Technology. 2019.276: 133-139.

4.Chaoyang Wei,Yun Huang*, Qiang Liao, Ao Xia, Xun Zhu, Xianqing Zhu.Adsorption thermodynamic characteristics of Chlorella vulgaris with organic polymer adsorbent cationic starch: Effect of temperature on adsorption capacity and rate. Bioresource Technology. 2019.293.122056.

5.Yaping Zheng,Yun Huang*, Ao Xia, Fu Qian, Chaoyang Wei. A rapid inoculation methods for microalgae biofilm cultivation based on microalgae-microalgae co-flocculation and zeta-potential adjustment. Bioresource Technology. 2019. 278 :272-278

6.Yangli Ye,Yun Huang*, Ao Xia, Qian Fu, Qiang Liao*, Weida Zeng, Yaping Zheng, Xun Zhu, Optimizing culture conditions for heterotrophic-assisted photoautotrophic biofilm growth of Chlorella vulgar to simultaneously improve biomass and lipid productivity,Bioresource Technology,2018, 270:80-87

7.Ao Xia, Ziming Hu, Qiang Liao*,Yun Huang*, Xun Zhu, Wenfan Ye, Yahui Sun. Enhancement of CO2transfer and microalgae growth by perforated inverted arc trough internals in a flat-plate photobioreactor.Bioresource Technology.2018, 269: 292-299.

8.Yun Huang,Yaping Zheng, Jun Li, Qiang Liao*, Qian Fu, Ao Xia, Jingwei Fu, Yahui Sun. Enhancing microalgae biofilm formation and growth by fabricating microgrooves onto the substrate surface. Bioresource Technology, 2018, 261: 36-43.

9.Yahui Sun,Yun Huang*, Qiang Liao, Ao Xia, Qian Fu, Xun Zhu, Jingwei Fu. BoostingNannochloropsis oculatagrowth and lipid accumulation in a lab-scale open raceway pond characterized by improved light distributions employing built-in planar waveguide modules. 2018 Bioresource Technology 249 :880-889

10.Chaoyang Wei,Yun Huang*, Qiang Liao, Qian Fu, Ao Xia, Yahui Sun. The kinetics of the polyacrylic superabsorbent polymers swelling in microalgae suspension to concentrate cells density. 2018 Bioresource Technology 249:713-719

11.Yun Huang,Jun Cheng, Hongxiang Lu, Yong He, Junhu Zhou, Kefa Cen. Transcriptome and key genes expression related to carbon fixation pathways inChlorellaPY-ZU1 cells and their growth under high concentrations of CO2. 2017. 10:181.Biotechnology for biofuels.

12.Yun Huang,Sha Zhao, Yu-dong Ding, Qiang Liao, Yong Huang, Xun Zhu. Optimizing the gas distributor based on CO2bubble dynamic behaviors to improve microalgal biomass production in an air-lift photo-bioreactor. 2017.Bioresource Technology. 233: 84–91

13.Yong Huang,Yun Huang*, Qiang Liao, Qian Fu, Ao Xia, Xun Zhu. Improving phosphorus removal efficiency and Chlorella vulgaris growth in high-phosphate MFC wastewater by frequent addition of small amounts of nitrate.International Journal of Hydrogen Energy2017. 42 (45): Pages 27749-27758.

14.Yaping Zheng,Yun Huang*, Qiang Liao, Qian Fu, Ao Xia, Xun Zhu. Impact of the accumulation and adhesion of released oxygen during Scenedesmus obliquus photosynthesis on biofilm formation and growth. 2017Bioresource Technology244(1): pp198-205.

15.Xiao-jian Ding,Yun Huang*,Qiang Liao, Qian Fu, Ao Xia, Chao Xiao. Medium-low temperature hydrothermal hydrolysis kinetic characteristics of concentrated wet microalgae biomass Chlorella vulgaris. 2017International journal of agricultural and biological engineering10:154-162.

16.Yun Huang,Wei Xiong, Qiang Liao, Qian Fu, Ao Xia, Xun Zhu. Comparison of Chlorella vulgaris biomass productivity cultivated in biofilm and suspension from the aspect of light transmission and microalgae affinity to carbon dioxide. 2016.Bioresource Technology.222: 367–373.

17.Yun Huang,Yahui Sun, Qiang Liao, Qian Fu, Ao Xia, Xun Zhu. Improvement on light penetrability and microalgae biomass production by periodically pre-harvestingChlorella vulgariscells with culture medium recycling. 2016.Bioresource Technology.216: 669–676

18.Hai-Xing Chang,Yun Huang*,Qian Fu, Qiang Liao, Xun Zhu.Kinetic characteristics and modeling of microalgae Chlorella vulgaris growth and CO2biofixation considering the coupled effects of light intensity and dissolved inorganic carbon. 2016Bioresource Technology.206:231–238.(ESI高被引论文)

19.Ya-Hui Sun,Yun Huang*,Qiang Liao, Qian Fu, Xun Zhu. Enhancement of microalgae production by embedding hollow light guides to a flat-plate photobioreactor. 2016.Bioresource Technology.207:31–38.

20.Yaping Zheng,Yun Huang,Qiang Liao, Xun Zhu, Qian Fu, Ao Xia. The effects of substrate surface wettability and hydrodynamic conditions on the growth of Scenedesmus Obliquus biofilm. 2016.International Journal of Hydrogen Energy, 2016-6.

21.Yun Huang,Jun Cheng, Hongxiang Lu, Rui Huang, Junhu Zhou, Kefa Cen. Simultaneous enhancement of microalgae biomass growth and lipid accumulation under continuous aeration with 15% CO2.RSC Advances. 2015,5, 50851 - 50858

Conferences:

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