Earlier quoted context omitted.
> solar + storage providing power evenly over 24h (an unrealistic worst case) becomes economical. That's not the the worst case. Solar output varies by season. So you have to have enough storage for multiple weeks. This also means you have to greatly over-provison solar panels so that they not only provide power, but also enough to charge batteries.
Very rare long term outages would not be covered by batteries. For that, you want a rock bottom low capital cost, even if it's much less efficient. Hydrogen makes sense for that use case, burned in turbines. For seasonal variation, simply overbuilding is also a possibility. No storage would be needed at all in Minnesota, for example, until renewables get to 70% of consumed electrical energy.
And where's hydrogen going to come from? You need to overprovision renewables so that they not only provide power for now, but also store enough power (via batteries or hydrogen or whatever) to get around daily, seasonal and inter-seasonal variability.
And by the way, hydrogen from renewables is massively inefficient.