VANADIUM

作品数:633被引量:1419H指数:17
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相关作者:杨晓达王超张玉明张义门王悦湖更多>>
相关机构:北京大学中南大学中国科学院大学武汉理工大学更多>>
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相关基金:国家自然科学基金国家重点基础研究发展计划中国博士后科学基金国家高技术研究发展计划更多>>
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A review of mechanism and technology of vanadium extraction from strategic mineral black shale
《Rare Metals》2024年第12期6183-6200,共18页Yuan-Hang Lu Jian-Kang Wen Xiao-Lan Mo Xin-Long Yang Wen-Cheng Gao Hong-Ying Yang 
financially supported by the National Key Research and Development Program of China (No.2020YFC1909704);the National Natural Science Foundation of China (No.52004244)。
Black shale represents' a unique and strategic vanadium resource in China,accounting for ~90% of the nation's vanadium reserves.The complex forms of occurrence of vanadium in black shale,particularly its incorporation...
关键词:Vanadium resources Black shale ROASTING Whole hydrometallurgical process BIOLEACHING 
Vanadium-based alloy for hydrogen storage:a review
《Rare Metals》2024年第12期6201-6232,共32页Han-Yang Kong Qing-Feng Xie Chao-Ling Wu Yao Wang Yun-Gui Chen Hai-Wen Li Yi-Gang Yan 
financially supported by the National Key Research and Development Program of China (No.2022YFB 3 803700);the National Natural Science Foundation of China and the China Academy of Engineering Physics (NSAF)(Nos.U2130208 and 52171205);Sichuan Science and Technology Program(No.PG-PGFT-JFKF23-000009-0);Sichuan Science and Technology Program (No.2021JDJQ0020)。
Storage of hydrogen in solid-state materials offers a safer and compacter way compared to compressed and liquid hydrogen.Vanadium(V)-based alloys attract wide attention,owing to the total hydrogen storage capacity of ...
关键词:Hydrogen storage Vanadium-based alloys Reversible hydrogen capacity Cycling stability Cheap resources 
A review on vanadium extraction techniques from major vanadium-containing resources被引量:1
《Rare Metals》2024年第9期4115-4131,共17页Yin-Hui Wang Yi-Fan Wang Yu-Ting Li Chang Wu Xiu-Li Han Ning-Ning Zhao Ze-Kun Zhang Lei Dai Ling Wang Zhang-Xing He 
supported by the National Natural Science Foundation of China(Nos.51774140,82204604 and 22304055);Hebei Province High-end Iron and Steel Metallurgy Joint Fund Project(No.E2021209147);Hebei Natural Science Fund for Distinguished Young Scholar(No.E2019209433);the Natural Science Foundation of Hebei Province(No.E2022209158);the Science and Technology Planning Project of Hebei Province(No.23564101D);the Key Research Project of North China University of Science and Technology(No.ZD-ST-202308);the Operation Expenses for Universities’Basic Scientific Research of Hebei Province(No.JQN2021018)。
The critical role of vanadium in metallurgy and the increasing commercialization of vanadium redox flow batteries have contributed to a rise in market demand for vanadium,emphasizing the need to ensure the sustainabil...
关键词:Converter vanadium slag Stone coal Process mineralogy Vanadium extraction process Mechanism research 
Enhanced preparation of dendritic metallic vanadium in recyclable NaCl-KCl-VCl_(2) molten salt by V_(2)CO electrolysis
《Rare Metals》2024年第8期3961-3973,共13页Jia-Liang An Ming-Yong Wang Yong-Zheng Jia Jin-Tao Zhang Bao-Yan Feng Shu-Qiang Jiao 
financially supported by the National Natural Science Foundation of China (No.51725401)。
A promising method for the preparation of pure metallic vanadium via V_(2)CO anode electrolysis was proposed and confirmed.The simple and controllable synthesis of a molten chloride salt containing VCl_(2) by an insit...
关键词:V_(2)CO Metallic vanadium Current efficiency Molten salt electrolysis 
Improvement in hydrogen storage performance of MgH_(2) by vanadium doped with ZIF-8 derived a single-atom catalyst V-N-C
《Rare Metals》2024年第6期2623-2635,共13页Fei-Fan Hong Wei-Tao Shi Ruo-Lin Zhao Yi Fan Zi-Qi Liu Si-Zhi Ding Hai-Zhen Liu Wen-Zheng Zhou Jin Guo Zhi-Qiang Lan 
financially supported by the National Natural Science Foundation of China(Nos.52261038 and 51861002);Nanning Excellent Young Talents Cultivation Project of Scientific and Technological Innovation and Entrepreneurship(No.RC20220102)。
Herein,the successful preparation of a singleatom catalyst V-N-C using vanadium-doped zeolitic imidazolate framework(ZIF)-8 as a precursor is reported.The experimental results showed that the V-N-C had a good promotin...
关键词:MgH_(2) Hydrogen storage materials CATALYST Hydrogen storage perormance 
Superior compound coatings prepared by low-temperature vanadium-nitrocarburizing duplex treatment
《Rare Metals》2024年第4期1828-1835,共8页Gen Jin Fang-Fang Xu Xun-Xun Hu Yue Xu 
financially supported by the National Natural Science Foundation of China(No.51372009)。
Superior compound coatings were prepared on CK45 steel surface by vanadium-nitrocarburizing duplex treatment in low-temperature salt bath.In this study,the microhardness,the phase constitution and the compositional di...
关键词:Vanadium-nitrocarburizing duplex treatment Compound coatings MICROSTRUCTURE Formation mechanism Growth kinetics 
Preparation of vanadium-based electrode materials and their research progress in solid-state flexible supercapacitors
《Rare Metals》2024年第2期431-454,共24页Rui-Jie Zhu Jiang Liu Chao Hua Hao-Yu Pan Yi-Jun Cao Meng Li 
This work was financially supported by the National Natural Science Foundation of China(Nos.52004252 and 52374359);Henan Provincial Natural Science Foundation(No.232300421197);the Project of Zhongyuan Critical Metals Laboratory(No.GJJSGFYQ202310).
Solid-state flexible supercapacitors(SCs)have many advantages of high specific capacitance,excellent flexibility,fast charging and discharging,high power density,environmental friendliness,high safety,light weight,duc...
关键词:Vanadium-based materials Flexible energy storage Specific capacitance Supercapacitors(SCs) 
Boost VS_(2) electrochemical reactive kinetics by regulating crystallographic planes and coupling carbon matrix for high performance sodium-ion storage
《Rare Metals》2024年第1期98-112,共15页Min Zeng Ming-Shan Wang Lin Chen En-Zhi Li Zhen-Liang Yang Dan Zhou Hai-Jiao Xie Jun-Chen Chen Zhi-Yuan Ma Bing-Shu Guo Bo Yu Xing Li 
financially supported by the National Natural Science Foundation of China (Nos.52072322 and 51604250);Sichuan Science and Technology Program (Nos.2022YFG0294 and 2019-GH02-00052-HZ)。
Vanadium disulfide(VS_(2)) as a typical two-dimensional transition metal chalcogenide has excellent competitiveness for sodium-ion storage due to its wide layer spacing(0.575 nm),high theoretical capacity of 932mAh·g...
关键词:Vanadium disulfide Reduced graphene oxide Anode Sodium-ion battery Sodium-ion capacitor 
Oxygen-deficient ammonium vanadate/GO composites with suppressed vanadium dissolution for ultra-stable high-rate aqueous zinc-ion batteries被引量:3
《Rare Metals》2023年第11期3729-3740,共12页Gui-Long Liu Ting Zhang Xiao-Jie Li Ru-Ping Cao Jin-Ke Shen Dong-Lei Guo Nai-Teng Wu Wei-Wei Yuan Ang Cao Xian-Ming Liu 
financially supported by the Natural Science Foundations of China (Nos.51904152 and42002040);Natural Science Foundations of Henan Province (No.222300420502);Key Science and Technology Program of Henan Province (No.222102240044);Key Scientific Research Projects in Colleges and Universities of Henan Province (No.21B610010)。
The structural engineering of hydrated ammonium vanadate as a cathode for aqueous Zn-ion batteries has attracted significant research interest because of its ability to suppress vanadium dissolution and accelerate the...
关键词:Aqueous Zn-ion batteries Vanadium-based cathode Dissolution restraint Oxygen defects Phase transition 
Review of vanadium-based oxide cathodes as aqueous zinc-ion batteries被引量:19
《Rare Metals》2023年第9期2868-2905,共38页Min Chen Shu-Chao Zhang Zheng-Guang Zou Sheng-Lin Zhong Wen-Qin Ling Jing Geng Fang-An Liang Xiao-Xiao Peng Yang Gao Fa-Gang Yu 
financially supported by the National Nature Science Foundation of China(No.51562006);Guangxi Distinguished Experts Special Fund(No.2019B06);the Innovation Project of Guangxi Graduate Education(No.SC2200000985)。
Research on energy storage technology is a vital part of realizing the dual-carbon strategy at this stage.Aqueous zinc-ion batteries(AZIBs)are favorable competitors in various energy storage devices due to their high ...
关键词:Aqueous zinc-ion batteries(AZIBs) Vanadium-based oxides Preparation Modification strategy Mechanism 
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