Earlier quoted context omitted.
> because of some development in the future will make recycling of spend fuel rods feasible. Context: They are responding to a complaint that isn't explicit here. That complaint usually comes in the form of: "we have nowhere to put the waste" or "Yucca Mountain was canceled and we'll never have such a facility because of NIMBY." So the response is more "We can store on site and don't need deep geological depositories…
> > because of some development in the future will make recycling of spend fuel rods feasible. > Context: They are responding to a complaint that isn't explicit here. That complaint usually comes in the form of: "we have nowhere to put the waste" or "Yucca Mountain was canceled and we'll never have such a facility because of NIMBY." So the response is more "We can store on site and don't need deep geological deposito…
> So the argument is: because we haven't managed to actually find a long term storage we can make up numbers about recycling and lifetime of the waste?
No, that is not the argument.
1) Those lifetime numbers aren't made up. I'm not sure why you would claim so. You can easily check these numbers. (This is why I'm concerned about good faith. You are just saying that the article is flat out lying, not hand waving)
2) We don't need repositories. There are other sources, including our own acidburnNSA[0]. Storing things on sight is perfectly fine and we can do so for hundreds of years safely. I think many miss a lot of the purposes of deep geological repositories and the strange constraints they have on them. One such constraint (driven by cold war fear) is that these sites can't accidentally be dug up by future archeologists or aliens thousands of years after we are gone and who may not understand our language. It is a weird constraint because it's assuming we have a nuclear war, wipe everyone out, and forget everything about radiation. This is really unlikely.
> there are massive uncertainties about not just the storage, but also the logistics of the transport, the maintance etc..
Would you care to explain? We've advanced storage techniques in the last 70 years we've been using nuclear. What is the concern with transportation? We've had them fall out of planes (during a period where engines would also fall off planes, but this doesn't happen anymore) and hit by trains all without any problem. It sounds like we have room for mistakes/error. Those examples are success of real world testing.
> Where are the real world examples?
> now opened a long term storage facility is Finland
It feels like you answered your own question. But here's France's storage[1] and Russia's[2]. You should also read [0] because it discusses easier methods.
[0] https://whatisnuclear.com/waste.html
[1] https://twitter.com/Orano_usa/status/1182662569619795968