Mine would include where and how the batteries are produced, what their expected lifetime is, and how they will be disposed of at the end of it.
Oh, don't worry, that all happens in the future in places on the other side of the world, so we can pretend it doesn't exist.
Lithium batteries are essentially a laboratory curiosity that has been inappropriately released into the outside world because their advantages are obvious right now while their disadvantages can be ignored on the above principle or simply by outright denial, so instead of them being treated simply as an important step in the process of learning how to achieve similar performance from more commonplace and benign materials, the depressingly inevitable forces of greed have kicked in and now they are all over the place.
Apart from anything else there simply isn't enough
of the stuff. I've just looked up how much "the reserves" are reckoned to be and I am astonished to find that it's only about 20 million tonnes. Compare that with the number of vehicles worldwide (both road and rail) that we are led to believe will be "going electric" and the daftness is immediately obvious.
Then there is the
nature of the fire hazard, a point from which people are distracted by such means as misleading propaganda statements like "the best way of putting them out is water". Yeah, right. It still isn't a
good way of putting them out. They react with water. It doesn't stop the energy release. All it can do is carry away heat if you can use enough of it to have a useful effect. As well as the shock hazard from a vehicle battery, throwing water on them produces hydrofluoric acid, which is very nasty stuff, so now you are dealing with a chemical spill as well. For the same reason the smoke from the fire is highly toxic and dangerous to inhale.
We probably have to accept that a battery of useful capacity and energy density will be potentially able to go up unsmotherably, but then a fire from a burst fuel tank is effectively unsmotherable and is quicker to spread. The distinctive feature of lithium batteries is that both the fumes and the residue are so very much nastier than those from a fire in anything else that trains are made of.
A battery technology intended to replace the amount of energy transport/storage we perform at the moment using tanks of hydrocarbon fuel needs to use only materials which are of comparable abundance - so we have plenty enough to scatter them around the place with similar abandon - and cause no more than comparably unpleasant consequences when things go wrong. While it may be possible to devise a lithium-based chemistry that overcomes the second objection, it is still inherently incompatible with the first. Consequently we do not currently have a battery technology suitable for the kind of mass deployment that we so like to delude ourselves into thinking we do.