30mil metric ton is what's there.
180 bilion tons in the oceans, minimum, are the numbers I have seen. Lithium in the oceans is as good an inexhaustable supply asnthere is, it takes a lot of work to get it though.
I read seawater has 0.2 parts Li per million, 230bil tons total, but filtering all the seawater is an impossible task. Considering such extraction at-scale has no existing path fwd, it's likely not gonna happen given other tech is available. Perhaps TBD, but I highly doubt anyone will pursue it.
There is a carbon foortprint to look at, for everything. I know there's also a lot of land destruction to get Li.
Mining equip should be loaded with huge Li batts and charged by sunlight in daytime, and then ran at night, OR, everything charged by small onsite nuke plant power.
1) amount of material available
2) carbon footprint per metric ton
3) earth destruction (whatever unit this may be)
4) cost per metric ton
1-4 also applies to the materials in supercaps. Supercaps appear preferable in application, but can they scale? Graphene at-scale is currently also a challenge, but innovation has basically just started.
IMHO, from available data, Li is basically on it's way out.