基本信息
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职业迁徙
个人简介
Our historical reliance on fossil fuels has resulted in high greenhouse gas emissions – primarily carbon dioxide – leading to climate change and a range of associated issues. Carbon capture and sequestration has therefore attracted intense interest in recent years, as a means of removing this excess carbon dioxide from the atmosphere. However, carbon dioxide currently has low economic value, so in order for this process to become economically viable, new techniques are required to add value to the captured carbon. This is what Dr Fengwang Li’s research focuses on.
“My work uses electricity from renewable sources such as solar, wind and hydro to transform waste carbon dioxide, together with water, into economically valuable chemicals and fuels that can replace fossil fuels.
“One example is ethylene, used to produce plastics for applications from medical devices to synthetic fabrics and the basis of a US$200B global industry. Another is ethanol, a clean alternative engine fuel and fuel additive. Substituting these renewable chemicals and fuels for their current fossil-fuel–based equivalents would lead to a net reduction in carbon dioxide emissions.
“My work uses electricity from renewable sources such as solar, wind and hydro to transform waste carbon dioxide, together with water, into economically valuable chemicals and fuels that can replace fossil fuels.
“One example is ethylene, used to produce plastics for applications from medical devices to synthetic fabrics and the basis of a US$200B global industry. Another is ethanol, a clean alternative engine fuel and fuel additive. Substituting these renewable chemicals and fuels for their current fossil-fuel–based equivalents would lead to a net reduction in carbon dioxide emissions.
研究兴趣
论文共 113 篇作者统计合作学者相似作者
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Josip Knezevic,Tianqi Zhang,Renwu Zhou,Jungmi Hong,Rusen Zhou,Christopher Barnett, Qiang Song,Yuting Gao, Wanping Xu,Dingxin Liu,Nicholas Proschogo, Biswaranjan Mohanty,Jyah Strachan,Behdad Soltani,Fengwang Li,Thomas Maschmeyer,Emma C. Lovell,Patrick J. Cullen
Nature synthesis (2024)
Yu Yang,Cheng Zhang,Chengyi Zhang,Yaohui Shi,Jun Li,Bernt Johannessen,Yongxiang Liang,Shuzhen Zhang, Qiang Song, Haowei Zhang, Jialei Huang,Jingwen Ke,Lei Zhang, Qingqing Song,Jianrong Zeng,Ying Zhang,Zhigang Geng,Pu-Sheng Wang,Ziyun Wang,Jie Zeng,Fengwang Li
Nature Communicationsno. 1 (2024): 1-11
Next energyno. 3 (2023): 100030-100030
Mingchuan Luo,Adnan Ozden,Ziyun Wang,Fengwang Li,Jianan Erick Huang,Sung-Fu Hung,Yuhang Wang,Jun Li,Dae-Hyun Nam,Yuguang C. Li,Yi Xu,Ruihu Lu,Shuzhen Zhang,Yanwei Lum,Yang Ren,Longlong Fan,Fei Wang,Hui-hui Li,Dominique Appadoo,Cao-Thang Dinh,Yuan Liu,Bin Chen,Joshua Wicks,Haijie Chen,David Sinton,Edward H. Sargent
ENERGY & ENVIRONMENTAL MATERIALSno. 2 (2023)
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作者统计
#Papers: 114
#Citation: 11963
H-Index: 52
G-Index: 100
Sociability: 6
Diversity: 3
Activity: 304
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