The rare earth element (REE) deposits, consists of the lanthanide series from lutetium to lanthanum  (having atomic numbers between 57 to 71) as well as geochemically alike scandium and yttrium, take place in minor amounts in ordinary rocks. The lanthanum has prevalent applications in splitting response in FCC (Fluidic Catalytic Cracking) catalysts with the end goal to produce high-octane fuel from unrefined petroleum. Its application dwells in storage batteries of hydrogen. Lanthanum ... Read more

The rare earth element (REE) deposits, consists of the lanthanide series from lutetium to lanthanum  (having atomic numbers between 57 to 71) as well as geochemically alike scandium and yttrium, take place in minor amounts in ordinary rocks. The lanthanum has prevalent applications in splitting response in FCC (Fluidic Catalytic Cracking) catalysts with the end goal to produce high-octane fuel from unrefined petroleum. Its application dwells in storage batteries of hydrogen. Lanthanum ... Read more

The rare earth element (REE) deposits, consists of the lanthanide series from lutetium to lanthanum  (having atomic numbers between 57 to 71) as well as geochemically alike scandium and yttrium, take place in minor amounts in ordinary rocks. The lanthanum has prevalent applications in splitting response in FCC (Fluidic Catalytic Cracking) catalysts with the end goal to produce high-octane fuel from ... Read more