supported by the National Key Research and Development Program of China(Program Number 2021YFB4000100);the Beijing Postdoctoral Research Foundation(Grant Number 2023-ZZ-63).
Hydrogen energy,with its abundant reserves,green and low-carbon characteristic,high energy density,diverse sources,and wide applications,is gradually becoming an important carrier in the global energy transformation a...
supported by the National Key Research and Development Program of China(Materials and Process Basis of Electrolytic Hydrogen Production from Fluctuating Power Sources such as Photovoltaic/Wind Power,No.2021YFB4000100).
Hydrogen production by proton exchange membrane electrolysis has good fluctuation adaptability,making it suitable for hydrogen production by electrolysis in fluctuating power sources such as wind power.However,current...
By optimal sizing of a wind/photovoltaic hybrid renewable-energy(RE)system,trimming the surplus capacity to reduce the fluctuations in the electricity supplied to the grid,and using it to produce green hydrogen throug...
The increasing recognition of hydrogen as a critical element in the global net-zero transition and its clear role in decarbonizing challenging sectors coincide with the growing urgency to address climate change.Africa...
This work was financially supported by National Natural Science Foundation of China(52176182);Shenzhen Science and Technology Innovation Commission(GXWD20220811164142001,JCYJ20200109113439837);the Innovation Program in Universities and Colleges in Guangdong(2022KTSCX212).
The operating conditions greatly affect the electrolysis performance and temperature distribution of solid oxide electrolysis cells(SOECs).However,the temperature distribution in a cell is hard to determine by experim...
supported by the National Key Research and Development Program of China(Materials and Process Basis of Electrolytic Hydrogen Production from Fluctuating Power Sources such as Photovoltaic/Wind Power,No.2021YFB4000100)。
To analyze the additional cost caused by the performance attenuation of a proton exchange membrane electrolyzer(PEMEL)under the fluctuating input of renewable energy,this study proposes an optimization method for powe...
supported by the National Natural Science Foundation of China (51877173);the Key R&D Project of Shaanxi Province (2023-YBGY-057);the State Key Laboratory of Electrical Insulation and Power Equipment (EIPE22314, EIPE22306);the Natural Science Basic Research Program of Shaanxi (2023-JC-QN-0483)。
Solid oxide electrolysis cell(SOEC) could be a potential technology to afford chemical storage of renewable electricity by converting water and carbon dioxide.In this work,we present the Ni-doped layered perovskite ox...
support by the National Key R&D Program of China(2018YFE0124700);the National Natural Science Foundation of China(52102279,52072134,and 51972128);Natural Science Foundation of Shandong Province(ZR2021QE283);Department of Science and Technology of Hubei Province(2021CBA149 and 2021CFA072).
Reliable and economical energy storage technologies are urgently required to ensure sustainable energy supply.Hydrogen(H_(2))is an energy carrier that can be produced environmentfriendly by renewable power to split wa...
supported in part by National Natural Science Foundation of China(No.52177089);ABB Power Grids Research(No.ABB20171127REU-CTR)。
Power-to-hydrogen by electrolysis(PtHE)is a promising technology in the carbon-neutral evolution of energy.PtHE not only contributes to renewable energy integration but also accelerates decarbonization in industrial s...
With the global energy transformation,hydrogen energy will undoubtedly become one of the important energy sources in the future.The ocean is the largest hydrogen mine on Earth,and seeking water from the ocean is an im...