The amount of carbon in paper, cardboard, and food in existing municipal solid waste streams in the US would be nearly enough to make the current US jet fuel demand. It's not like replacing all liquid fuel use -- jet fuel is about 6% of US liquid fuel demand.
Assuming we use the hydrogen conversion process you mentioned, and have fitted the 1000's of square miles of solar panels it would need - I find it hard to believe that the US throws away 90 billion kg of carbon-rich domestic waste every year (apparently, the US gets through about 15 billion gallons of jet fuel per year).
Obviously, even if this is true, we then need to address the other 94% of liquid fossil fuel use.
Materials landfilled in MSW:
https://www.epa.gov/facts-and-figures-about-materials-waste-... https://www.statista.com/statistics/1231960/municipal-solid-...
The point is not necessarily to suggest that landfilled material be what is used to make jet fuel, but to point out the volumes are not enormous compared to what's already flowing through the economy. The US produces even more agricultural waste -- over 200 million tonnes of corn stover each year, for example.
The other fuel uses may in many cases be replaced by non-fuels, for example by electrification. Aviation is a special case where the high energy density of chemical fuels, and particularly hydrocarbons, will often be unavoidably attractive.
So far, you have suggested that we build several 1000 square miles of solar panels, and dedicate 90 billion kg of carbon-containing material annually, just to fuel 5% of the world population's aviation habit. How do you propose we replace the other 94% of that 5%'s liquid fuel use? After that, how about their total energy use (which dwarfs the total liquid fuel use)?
1000 square miles of land sounds like a lot, but for land at $1000/acre (which you can find in much of the US) that's $640M, or maybe 6% of the cost of a single one reactor nuclear power plant.
BTW, the world produces 2,000 million tonnes of municipal solid waste each year. The global production of agricultural waste is also very large. I also wonder how you're going to be fueling those nuclear powered aircraft, if not with carbon-containing synfuels.
I think you need to step back and ask yourself why you're allowing yourself to make such silly statements. You look like a person defending an irrational prejudice.
>The shipping argument is obviously wrong if you think about it even a little.
Humour me - how, exactly? How exactly is it "not a problem" to ship and install several thousand square miles of solar panels? Just for fun, here's another calculation for you to ignore:
To make the 15 billion gallons of jet fuel needed per year (for the US), you need 7.5 billion kg of hydrogen, requiring 375TWh (at 50 kWh/kg H2). Assuming an annual output of 360MWh per acre of solar, you need a million acres, or nearly 2000 square miles of solar panels (just to remind ourselves - this is just for jet fuel for the US, as you seem determined that this is feasible to do sustainably. I'm not sure what we will do about the other 99.9% of total US energy usage).
A commercial solar panel weighs 40 pounds and is 5ft by 3ft. Assuming they fit, you can load up a semi trailer with 1000 of those panels, for a total area of 15000 sq ft of solar per semi truck. You will need 4 million 18-wheeler loads of solar panels, for this proposed 2000 sq mile array. I'm not the one "handwaving away" the obvious difficulties here. The Evergreen container ship would need 200 journeys, loaded entirely with solar panels, to carry them all.
Apparently, installing the panels is the easy part. Hooking them all up to the grid is the time consuming part. I'm not sure what hooking up a 2000sq mile array would look like, as it is somewhere over 1000x greater than the current total world solar capacity.