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FENGXIN GANFENG LITHIUM CO LTD

Overview
  • Total Patents
    14
  • GoodIP Patent Rank
    159,752
About

FENGXIN GANFENG LITHIUM CO LTD has a total of 14 patent applications. Its first patent ever was published in 2011. It filed its patents most often in China. Its main competitors in its focus markets materials and metallurgy, surface technology and coating and organic fine chemistry are GLOBAL IONIX INC, XIAMEN VISBE ENV GROUP and ENEL PRODUZIONE SPA.

Patent filings in countries

World map showing FENGXIN GANFENG LITHIUM CO LTDs patent filings in countries
# Country Total Patents
#1 China 14

Patent filings per year

Chart showing FENGXIN GANFENG LITHIUM CO LTDs patent filings per year from 1900 to 2020

Top inventors

# Name Total Patents
#1 Li Liangbin 14
#2 Zhu Shigui 13
#3 Wang Jinrong 10
#4 Xiong Xunman 7
#5 Zou Guiming 6
#6 Peng Aiping 6
#7 Dai Xiaoyong 6
#8 Zhang Xiaoliang 5
#9 Li Yucheng 5
#10 Chen Jinwen 5

Latest patents

Publication Filing date Title
CN112093963A High ammonia nitrogen contains lithium effluent disposal system
CN112048737A Method for improving lithium metal electrolysis current efficiency by controlling water content
CN110791778A Metal lithium electrolytic bath
CN110369550A A kind of production of lithium metal rope and wrap-up
CN109624476A A kind of process units and its manufacturing method of copper lithium composite band
CN109454239A A kind of process units and method of metallic lithium sand
CN109280785A A kind of process units and method of lithium magnesium alloy
CN104759478A Metal lithium belt manufacturing device and method
CN104562092A Multi-anode lithium metal electrolytic bath
CN104562086A Temperature adjustable lithium metal electrolytic bath
CN104311499A Method for treating chlorine generated in production of metal lithium and application thereof
CN103556181A Metallic lithium electrolytic cell
CN102874849A Method for producing anhydrous lithium chloride special for electrolyzing by using lithium recovered from lithium-containing pharmaceutical waste water
CN102191419A Method for preparing high-sodium metal lithium from recovered lithium-sodium alloy, and high-sodium metal lithium prepared using same