Alkaline seawater electrolysis at industrial level: recent progress and perspective
Industrial hydrogen generation through water splitting, powered by renewable energy such as solar, wind and marine, paves a potential way for energy and environment sustainability. However, state-of-the-art electrolysis using high purity water as hydrogen source at an industrial level would bring ab...
Egile Nagusiak: | Zhang, Tao, Liu, Yipu, Ye, Qitong, Fan, Hong Jin |
---|---|
Beste egile batzuk: | School of Physical and Mathematical Sciences |
Formatua: | Journal Article |
Hizkuntza: | English |
Argitaratua: |
2023
|
Gaiak: | |
Sarrera elektronikoa: | https://hdl.handle.net/10356/166261 |
Antzeko izenburuak
-
Co-electrolysis of seawater and carbon dioxide inside a microfluidic reactor to synthesize speciality organics
nork: Rarotra, Saptak, et al.
Argitaratua: (2023) -
Boosting alkaline water electrolysis by asymmetric temperature modulation
nork: Zhu, Qinpeng, et al.
Argitaratua: (2021) -
Low-temperature in situ growth of graphene on metallic substrates and its application in anticorrosion
nork: Zhu, Minmin, et al.
Argitaratua: (2018) -
Electrical units, the phenomenon of electrolysis, and Faraday's laws of electrolysis [slaid]
Argitaratua: (1975) -
Electrovalency and electrolysis [kaset]
Argitaratua: ([19-)