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可再生能源系

夏奡

2018-05-08 17:37  点击:[]

[中文版]

姓名

夏奡

性别

        

所在部门

可再生能源系

职称

研究员

职务

 

联系电话

023-65103113

邮箱

aoxia@cqu.edu.cn

 

*个人简介:

夏奡,工学博士,研究员,博士生导师,中国科协“青年人才托举工程”人选,重庆大学“百人计划”学者。

2008年获浙江大学能源与环境系统工程专业学士学位及竺可桢学院混合班荣誉学位,2013年获浙江大学动力工程及工程热物理专业博士学位,随后在爱尔兰国立科克大学(UCC)及爱尔兰海洋可再生能源中心(MaREI)从事博士后研究。2016年全职引进重庆大学动力工程学院、低品位能源利用教育部重点实验室开展科研工作。长期从事生物质能及节能减排相关领域的研究。在Trends in BiotechnologyApplied EnergyEnergyBioresource Technology等国际SCI期刊上发表论文80余篇,出版Springer Nature专著1部(ISBN 978-981-10-7676-3,合作撰写国际能源署(IEA)生物天然气出版物1部(ISBN 978-1-910154-18-2),应邀撰写Springer重要参考书(Major Reference Works1章。研究成果被引用1500余次,6篇论文入选ESI高被引论文、1篇论文入选ESI热点论文、1篇论文入选重庆市科协自然科学优秀学术论文,H-index24

应邀担任国家重点研发计划、国家自然科学基金、波兰科学基金评审专家,担任教育部学位与研究生教育发展中心博士论文评审专家。担任2个国际期刊客座编辑和编委、1个国际期刊副主编以及Applied EnergyRenewable & Sustainable Energy ReviewsEnergyBioresource TechnologyAlgal ResearchEnergy & Fuels36SCI期刊评审专家。担任APEC先进生物氢能研究中心重庆分会副主席。担任国际学术会议组委会委员或分会主席3次、做特邀报告2次。目前作为课题负责人主持国家自然科学基金面上及青年项目、国家重点研发计划子课题、重庆市留学人员回国创业创新支持计划重点项目等多个科研项目。曾获得国际SCI期刊Bioresource Technology最佳审稿人奖、Applied EnergyEnergy Conversion and Management7SCI期刊杰出审稿人奖、浙江大学最高荣誉“竺可桢奖学金”、国际清洁能源会议“优秀论文奖”等荣誉和奖励。

担任本科生SRTP项目、国创项目、节能减排大赛等科研训练项目导师,指导学生曾获得国际水协会世界厌氧大会“杰出海报奖”、中国“互联网+”大学生创新创业大赛重庆选拔赛金奖、全国大学生节能减排社会实践与科技竞赛一等奖、重庆大学优秀本科毕业论文等荣誉和奖励。

 

教育经历:

2004.9~2008.6

浙江大学

能源工程学院

学士

2008.8~2013.12

浙江大学

能源工程学院

博士

2014.1~2016.1

爱尔兰国立科克大学

环境研究所

博士后

 

*研究方向:

[1]     生物燃气转化过程中的能质传输问题

[2]     生化反应器多尺度过程强化

[3]     新型节能减排技术

欢迎对上述方向感兴趣、有志于一起奋斗的博士和硕士研究生加入。

 

科研项目:

[1]     国家自然科学基金面上项目(51876016):基于直接种间电子传递的导电生物膜制甲烷反应器的物质传递和转化特性研究,60万元,2019.1~2022.12,负责人

[2]     国家重点研发计划子课题(2016YFB0601002):微藻烟气CO2多相传递与固碳机理,80万元,2016.7~2020.6,负责人

[3]     国家重点研发计划子课题(2017YFB0603601):液态熔渣相变换热与物相演化耦合作用机制,64万元,2016.7~2020.6,负责人

[4]     国家自然科学基金青年项目(51606021):降流式两步厌氧发酵制取氢烷气生物膜反应器内传递与转化特性及调控方法研究,23.6万元,2017.1~2019.12,负责人

[5]     中央高校基本科研业务费基地平台项目(106112017CDJPT140001):有机废水发酵联产氢气和甲烷研究,50万元,2017.1~2017.12,负责人

[6]     重庆市留创计划重点项目(cx2017019),12万元,2017.12~2019.12,负责人

[7]     重庆大学“百人计划”科研启动费,100万元,2016.1~2018.12,负责人

 

*发表论文:

一、近年SCI论文

[1]     Ao Xia and Jerry Murphy*. Microalgal cultivation in treating liquid digestate from biogas systems. Trends in Biotechnology 2016; 34:264–275.

[2]     Ao Xia, Jun Cheng* and Jerry Murphy. Innovation in biological production and upgrading of methane and hydrogen for use as gaseous transport biofuel. Biotechnology Advances 2016; 34:451–472.

[3]     Chihe Sun, Ao Xia*, Qian Fu, Yun Huang, Richen Lin and Jerry Murphy. Effects of pre-treatment and biological acidification on fermentative hydrogen and methane co-production. Energy Conversion and Management 2019; In Press.

[4]     Chihe Sun, Ao Xia*, Qiang Liao*, Qian Fu, Yun Huang, Xun Zhu, Pengfei Wei, Richen Lin and Jerry Murphy. Improving production of volatile fatty acids and hydrogen from microalgae and rice residue: Effects of physicochemical characteristics and mix ratios. Applied Energy 2018; 230:1082–1092.

[5]     Pengfei Wei, Ao Xia*, Qiang Liao, Chihe Sun, Yun Huang, Qian Fu, Xun Zhu and Richen Lin. Enhancing fermentative hydrogen production with the removal of volatile fatty acids by electrodialysis. Bioresource Technology 2018; 263:437–443.

[6]     Muhammad Rizwan Tabassum, Ao Xia* and Jerry Murphy. Biomethane production from various segments of brown seaweed. Energy Conversion and Management 2018; 174:855–862.

[7]     Ao Xia, Ziming Hu, Qiang Liao*, Yun Huang, Xun Zhu, Wenfan Ye, Yahui Sun. Enhancement of CO2 transfer and microalgae growth by perforated inverted arc trough internals in a flat-plate photobioreactor. Bioresource Technology 2018; 269:292–299.

[8]     Muhammad Rizwan Tabassum, Ao Xia* and Jerry Murphy. Potential of seaweed as a feedstock for renewable gaseous fuel production in Ireland. Renewable & Sustainable Energy Reviews 2017; 68:136–146.

[9]     Amita Jacob Guneratnam, Ao Xia*, Jerry Murphy. Comparative study of single- and two-stage fermentation of the brown seaweed Laminaria digitata. Energy Conversion and Management 2017; 148: 405-412.

[10] Muhammad Rizwan Tabassum, Ao Xia*, Jerry Murphy. Comparison of pre-treatments to reduce salinity and enhance biomethane yields of Laminaria digitata harvested in different seasons. Energy 2017;140: 546-551.

[11] Ao Xia, Amita Jacob, Muhammad Rizwan Tabassum, Christiane Herrmann and Jerry Murphy*. Production of hydrogen, ethanol and volatile fatty acids through co-fermentation of macro-and micro-algae. Bioresource Technology 2016; 205:118–125.

[12] Ao Xia, Amita Jacob, Christiane Herrmann and Jerry Murphy*. Fermentative bio-hydrogen production from galactose. Energy 2016; 96:346–354.

[13] Muhammad Rizwan Tabassum, Ao Xia* and Jerry Murphy. Seasonal variation of chemical composition and biomethane production from the brown seaweed Ascophyllum nodosum. Bioresource Technology 2016; 216:219–226.

[14] Muhammad Rizwan Tabassum, Ao Xia* and Jerry Murphy. The effect of seasonal variation on biomethane production from seaweed and on application as a gaseous transport biofuel. Bioresource Technology 2016; 209:213–219.

[15] Ao Xia, Jun Cheng*, Lingkan Ding, Richen Lin, Wenlu Song, Huibo Su, Junhu Zhou and Kefa Cen. Substrate consumption and hydrogen production via co-fermentation of monomers derived from carbohydrates and proteins in biomass wastes. Applied Energy 2015; 139:9–16.

[16] Ao Xia, Amita Jacob, Christiane Herrmann, Muhammad Tabassum and Jerry Murphy*. Production of hydrogen, ethanol and volatile fatty acids from the seaweed carbohydrate mannitol. Bioresource Technology 2015; 193:488–497.

[17] Ao Xia, Jun Cheng*, Wenlu Song, Huibo Su, Lingkan Ding, Richen Lin, Hongxiang Lu, Jianzhong Liu, Junhu Zhou and Kefa Cen. Fermentative hydrogen production using algal biomass as feedstock. Renewable & Sustainable Energy Reviews 2015; 51:209–230.

[18] Ao Xia, Christiane Herrmann and Jerry Murphy*. How do we optimise third generation algae biofuels? Biofuels Bioproducts & Biorefining-Biofprining 2015; 9:358–367.

[19] Ao Xia, Jun Cheng*, Lingkan Ding, Richen Lin, Wenlu Song, Junhu Zhou and Kefa Cen. Enhancement of energy production efficiency from mixed biomass of Chlorella pyrenoidosa and cassava starch through combined hydrogen fermentation and methanogenesis. Applied Energy 2014; 120:23–30.

[20] Ao Xia, Jun Cheng*, Lingkan Ding, Richen Lin, Wenlu Song, Junhu Zhou and Kefa Cen. Effects of changes in microbial community on the fermentative production of hydrogen and soluble metabolites from Chlorella pyrenoidosa biomass in semi-continuous operation. Energy 2014; 68:982–988.

[21] Ao Xia, Jun Cheng*, Richen Lin, Jianzhong Liu, Junhu Zhou and Kefa Cen. Sequential generation of hydrogen and methane from glutamic acid through combined photo-fermentation and methanogenesis. Bioresource Technology 2013; 131:146–151.

[22] Ao Xia, Jun Cheng*, Richen Lin, Hongxiang Lu, Junhu Zhou and Kefa Cen. Comparison in dark hydrogen fermentation followed by photo hydrogen fermentation and methanogenesis between protein and carbohydrate compositions in Nannochloropsis oceanica biomass. Bioresource Technology 2013; 138:204–213.

[23] Ao Xia, Jun Cheng*, Richen Lin, Lingkan Ding, Junhu Zhou and Kefa Cen. Combination of hydrogen fermentation and methanogenesis to enhance energy conversion efficiency from trehalose. Energy 2013; 55:631–637.

[24] Ao Xia, Jun Cheng*, Lingkan Ding, Richen Lin, Junhu Zhou and Kefa Cen. Improvement of the energy conversion efficiency of Chlorella pyrenoidosa biomass by a three-stage process comprising dark fermentation, photofermentation, and methanogenesis. Bioresource Technology 2013; 146:436–443.

[25] Ao Xia, Jun Cheng*, Wenlu Song, Cong Yu, Junhu Zhou and Kefa Cen. Enhancing enzymatic saccharification of water hyacinth through microwave heating with dilute acid pretreatment for biomass energy utilization. Energy 2013; 61:158–166.

[26] Truc TQ Vo*, Ao Xia, David M Wall, Jerry D Murphy. Use of surplus wind electricity in Ireland to produce compressed renewable gaseous transport fuel through biological power to gas systems. Renewable Energy 2017; 105:495–504.

[27] Truc TQ Vo*, Ao Xia, Fionn Rogan, David M Wall, Jerry D Murphy. Sustainability assessment of large-scale storage technologies for surplus electricity using group multi-criteria decision analysis. Clean Technologies and Environmental Policy 2017; 19:689–703.

[28] Amita Jacob, Ao Xia, Jerry D Murphy*. A perspective on gaseous biofuel production from micro-algae generated from CO2 from a coal-fired power plant. Applied Energy 2015; 148:396–402.

[29] Richen Lin*, Chen Deng, Jun Cheng, Ao Xia, Piet Lens, Stephen Jackson, Alan Dobson and Jerry Murphy. Graphene facilitates biomethane production from protein-derived glycine in anaerobic digestion. iScience 2018; 10: 158–170.

[30] Lingkan Ding, Enrique Chan Gutierrez, Jun Cheng*, Ao Xia, Richard O’Shea, Amita Jacob Guneratnam, Jerry D Murphy. Assessment of continuous fermentative hydrogen and methane co-production using macro-and micro-algae with increasing organic loading rate. Energy 2018; 151:760–770.

 

二、英文专著

[1]     Qiang Liao, Jo-Shu Chang, Christiane Herrmann and Ao Xia. Bioreactors for Microbial Biomass and Energy Conversion, Springer Nature 2018; ISBN 978-981-10-7676-3.

[2]     Ao Xia*, Xun Zhu and Qiang Liao. Hydrogen Production from Biological Sources. In: Lipman T., Weber A. (eds) Fuel Cells and Hydrogen Production. Encyclopedia of Sustainability Science and Technology, Second Edition, Springer 2019, 833–863.

[3]     Jerry Murphy*, Bernhard Drosg, Eoin Allen, Jacqueline Jerney, Ao Xia and Christiane Herrmann. A perspective on algal biogas. IEA Bioenergy 2015; ISBN 978-1-910154-18-2.

 

完整论文列表请参考网页:https://www.researchgate.net/profile/Ao_Xia ResearchGate


 

[English version]

Dr. Ao Xia is currently working at School of Power Engineering at Chongqing University (CQU). He completed his PhD research in 2013 in Energy Engineering from Zhejiang University (ZJU). He was awarded the Chu Kochen Scholarship for the highest honours at ZJU. He worked as a post-doctoral researcher in the Environmental Research Institute (ERI) at University College Cork (UCC) during 2014-2016. His research interests include biofuels, bioenergy, biogas, algae and fermentation.

Website: https://www.researchgate.net/profile/Ao_Xia

Email: aoxia@cqu.edu.cn

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