ELECTROLYSIS

作品数:425被引量:843H指数:11
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相关机构:中电投宁夏青铜峡能源铝业集团有限公司中国铝业股份有限公司东北大学中国有色金属工业标准计量质量研究所更多>>
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Construction of Ni_(2)P/CoP interface for highly efficient electrolysis of urea-assisted hydrogen production at industrial current densities
《Chinese Journal of Catalysis》2025年第2期163-175,共13页Borong Lu Chunmei Lv Ying Xie Kai Zhu Ke Ye Xiaojin Li 
国家重点研发计划(2021YFB4001700);山东省自然科学基金-重大基础研究项目(ZR2022ZD10);青岛市自然科学基金(23-2-1-221-zyyd-jch);QIBEBT国际合作项目(QIBEBTICP202303);青岛新能源山东省实验室开放课题(QNESLOP202303)。
Interface chemical modulation strategies are considered as promising method to prepare electrocatalysts for the urea oxidation reaction(UOR).However,conventional interface catalysts are generally limited by the inhere...
关键词:Interface chemical strategy Theoretical predictions Advanced interface construction Directed charge transfer Urea oxidation reaction 
Pulsed dynamic electrolysis enhanced PEMWE hydrogen production:Revealing the effects of pulsed electric fields on protons mass transport and hydrogen bubble escape
《Journal of Energy Chemistry》2025年第1期201-214,共14页Xuewei Zhang Wei Zhou Yuming Huang Liang Xie Tonghui Li Huimin Kang Lijie Wang Yang Yu Yani Ding Junfeng Li Jiaxiang Chen Miaoting Sun Shuo Cheng Xiaoxiao Meng Jihui Gao Guangbo Zhao 
National Natural Science Foundation of China(No.52476192,No.52106237);Natural Science Foundation of Heilongjiang Province(No.YQ2022E027)。
The transition of hydrogen sourcing from carbon-intensive to water-based methodologies is underway,with renewable energy-powered proton exchange membrane water electrolysis(PEMWE)emerging as the preeminent pathway for...
关键词:Water electrolysis Hydrogen production Pulsed dynamic electrolysis Proton exchange membrane water electrolysis Mass transport 
Proton exchange membrane-based electrocatalytic systems for hydrogen production
《Carbon Energy》2025年第1期292-311,共20页Yangyang Zhou Hongjing Zhong Shanhu Chen Guobin Wen Liang Shen Yanyong Wang Ru Chen Li Tao Shuangyin Wang 
National Key R&D Program of China,Grant/Award Number:2021YFA1500900;Basic and Applied Basic Research Foundation of Guangdong Province-Regional Joint Fund Project,Grant/Award Number:2021B1515120024;Science Funds of the Education Office of Jiangxi Province,Grant/Award Number:GJJ2201324;Science Funds of Jiangxi Province,Grant/Award Numbers:20242BAB25168,20224BAB213018;Doctoral Research Start-up Funds of JXSTNU,Grant/Award Number:2022BSQD05;China Postdoctoral Science Foundation,Grant/Award Number:2023M741121;National Natural Science Foundation of China,Grant/Award Number:22172047;Provincial Natural Science Foundation of Hunan,Grant/Award Number:2021JJ30089;Shenzhen Science and Technology Program,Grant/Award Number:JCYJ20210324122209025;Changsha Municipal Natural Science Foundation,Grant/Award Number:kq2107008;Hunan Province of Huxiang Talent project,Grant/Award Number:2023rc3118;Natural Science Foundation of Hunan Province,Grant/Award Number:2022JJ10006.
Hydrogen energy from electrocatalysis driven by sustainable energy has emerged as a solution against the background of carbon neutrality.Proton exchange membrane(PEM)-based electrocatalytic systems represent a promisi...
关键词:ELECTROLYSIS hydrogen production proton exchange membrane 
Electrocatalytic lignin oxidation for hydrogen and fine chemical co-production using platinized nickel foam in a 3D printed reactor
《DeCarbon》2024年第4期46-51,共6页Mohmmad Khalid Biswajit Samir De Samaneh Shahgaldi 
This project received financial support from Natural Sciences and Engineering Research Council of Canada via a Discovery Grant(2022-00058);Canada Research Chair Fund(3266004);The Fonds de recherche du Quebec-Nature et technologies FRQNT(NCR-327419);We would also like to thank Intlvac Thin Film team for the support.
Biomass electrooxidation has garnered much attention in recent years,owing to its potential to circumvent greenhouse gas emissions.Substituting the sluggish water oxidation with biomass oxidizable species such as lign...
关键词:Lignin electrolysis Water electrolysis OVERPOTENTIAL Fine chemicals Hydrogen production 
Optimization of capacity configuration and comprehensive evaluation of a renewable energy electrolysis of water for hydrogen production system
《Chinese Journal of Chemical Engineering》2024年第12期301-317,共17页Huairong Zhou Xin Wu Chunlei Li Siyu Yang Zhichen Chen Jun Lu Chen Fang 
funded by Major Science and Technology Projects of Gansu Province(23ZDGF002);Hongliu Outstanding Youth Support Program of Lanzhou University of Technology(02-062212);the Joint Funds of the National Natural Science Foundation of China(U22A20415).
The global green hydrogen industry is experiencing rapid growth,but the high production costs are hindering its widespread adoption.To address this challenge,it is particularly important to rationally configure a rene...
关键词:Renewable energy Green hydrogen production Multi-energy coupling Capacity optimization System optimization 
Next‑Generation Green Hydrogen: Progress and Perspective from Electricity, Catalyst to Electrolyte in Electrocatalytic Water Splitting
《Nano-Micro Letters》2024年第11期274-322,共49页Xueqing Gao Yutong Chen Yujun Wang Luyao Zhao Xingyuan Zhao Juan Du Haixia Wu Aibing Chen 
supported by the National Natural Science Foundation of China(U23A20573,U23A20140,22109038);the Starting Research Funds of Hebei University of Science and Technology,Hebei Natural Science Foundation(D2022208001);the S&T Program of Hebei(23314401D);Hebei Pharmaceutical and Chemical Technology Innovation Center(225676121H).
Green hydrogen from electrolysis of water has attracted widespread attention as a renewable power source.Among several hydrogen production methods,it has become the most promising technology.However,there is no large-...
关键词:HYDROGEN ELECTROLYSIS Hydrogen production Renewable energy CATALYST 
Research on typical operating conditions of hydrogen production system with off-grid wind power considering the characteristics of proton exchange membrane electrolysis cell
《Global Energy Interconnection》2024年第5期642-652,共11页Weiming Peng Yanhui Xu Gendi Li Jie Song Guizhi Xu Xiaona Xu Yan Pan 
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...
关键词:Wind power fluctuation Off-grid operation Hydrogen production by PEM electrolysis Neural network clustering Typical working conditions 
Generation of input spectrum for electrolysis stack degradation test applied to wind power PEM hydrogen production
《Global Energy Interconnection》2024年第4期462-474,共13页Yanhui Xu Guanlin Li Yuyuan Gui Zhengmao Li 
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...
关键词:Hydrogen production by electrolysis of water Wind power Proton exchange membrane electrolyzer Gaussian mixture model Cyclic operating condition 
Techno-economic analysis of green hydrogen production by a floating solar photovoltaic system for industrial decarbonization
《Clean Energy》2024年第4期1-14,共14页Rahma Muthia Anastasia Segari Putri Pramudya Mochamad Rafly Maulana Widodo Wahyu Purwanto 
funded by the Osaka Gas Foundation of International Cultural Exchange Year 2022/2023(PKS-1813/UN2.F4.D/PPM.00.00/2022).
This study proposes a conceptual design of green hydrogen production via proton exchange membrane electrolysis powered by a floating solar photovoltaic system.The system contributes to industrial decarbonization in wh...
关键词:floating solar photovoltaics gas blending green hydrogen industrial decarbonization lithium-ion battery photon exchange membrane electrolysis 
Green hydrogen production from photovoltaic power station as a road map to climate change mitigation
《Clean Energy》2024年第2期156-167,共12页Kehinde Ridwan Kamil Bassey Okon Samuel Umar Khan 
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...
关键词:renewable energy PHOTOVOLTAIC climate change green hydrogen vector fossil fossil fuels decarbonization electrolysis 
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