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深圳大学高等研究院是深圳大学于2014年成立的一个包含本科与研究生培养、侧重跨学科教学与学术研究的校内综合办学单位。作为深圳大学内部探索全面改革创新的学术特区,高等研究院与香港和海外著名高校合作,借鉴国内外研究型大学通行的管理模式,引进具有一流视野的资深教授和发展潜力的青年教师,营造与国际接轨的学术氛围和培养环境,开展卓越的教学、研究和管理工作。

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高等研究院系列学术讲座之九十

发布时间:2018-06-06 | 浏览次数:

Lignocellulosic biomass utilization through a pyrolysis based platform & microalgae based wastewater treatment through a biofilm based reactor

Prof. Dr. Zhiyou Wen

Iowa State University


About the Speaker

Dr. Zhiyou Wen is a Professor at Iowa State University. His background is bioprocessing engineering. He got his PhD degree from the University of Hong Kong, Postdoc training at Washington State University and Assistant Professor at Virginia Tech University before moving to Iowa State in 2010. Dr. Wen ‘s research focuses on microalgal wastewater treatment and value-added products, conversion of the lignocellulosic biomass to fuels and chemicals through a thermochemical-biological hybrid processing.


Talk Information

In this seminar, I would like to discuss two biorenewable research areas that my group at Iowa State University has been working. The first is the lignocellulosic biomass utilization through a pyrolysis-based biorefinery platform; the second is the wastewater treatment using microalgae.

To convert lignocellulosic biomass to fuels and chemicals, two platforms are commonly used: (1) Thermochemical platform – Biomass is thermally processed to pyrolysis oil or synthesis gas, which is subsequently catalytically transformed into chemicals and fuels, and (2) Sugar platform – Enzymes are added to biomass to produce sugars that are fermented to industrial chemicals or fuels. The thermochemical-biological conversion process is a hybrid approach that employs both thermochemical and biological processes to transform biomass to chemicals and fuels. In particular, the biomass fast pyrolysis generated a variety products that can be biologically converted into fuels and chemicals.

Microalgae have been widely studied to remove nutrients from wastewater but the commercial implementation of open pond as a treatment system has not happened due to high operation cost and the large footprint of these systems. My research group developed a unique culture system so called revolving algal biofilm (RAB) for solving the above problems. The RAB system has been used for municipal wastewater and food industrial effluent with superior efficiency of removing nitrogen, phosphorus and special chemicals.


时间:2018年6月12日15:00-16:00

地点:行政办公楼628会议室(原620-12会议室)

All are welcome!