I made some calcultations with an axe and wood: it would take only 6 650 000 kg of 235U nuclei to fission to have an atomic explosion yield the total amount of energy cited (2,5*10^30 J) under same conditions as a human-made bomb. That is the mass of the fissioning nuclei put together, not the critical mass or the whole amount of uranium present at any particular place. Also some of that energy will not do work to put stuff to orbit to achieve the cited figure. It was just a fun exercise in scale.
That's got to be off. Even pure antimatter would require something like 13.9 trillion kg(!) of pure antimatter annihilated with an equal part of matter to produce that much energy. Uranium fission is like 1000 times less energy-dense than mass-energy equivalence, so I'd imagine it'd take more like 27 quadrilllion kg(!!!) of Uranium.
Doesn't seem to work. The giant impact theory, or some variation thereof, still seems like the best one.
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