Nuclear Power and 526 Deer:Compare Land-use foot print for energy production
hwfo.substack.com
hwfo.substack.com
First, Nevada's deserts are more ecologically interesting than the author lets on. They're still probably the least bad option in terms of large solar arrays, but Nevada's pine forests are already precarious enough as-is conservation-wise and large solar deployments don't help that. Nevada would be a great place to build nuclear, though, especially with federal subsidies in exchange for being America's nuclear waste dumping ground should Yucca Mountain (or some equivalent proposal) materialize.
Second, you don't technically need to fence out wildlife from solar farms; you just need to raise the panels high enough for large animals to not interfere with them. There would still be significant wildlife displacement from the loss of trees and the blocked sunlight (meaning fewer habitat and food options), but probably not quite as dire as the article's suggestion. That said, I don't know of any solar farms built this way.
Third, it's unclear under which category parking lot solar panels fall. Parking lots already represent destroyed ecosystems, and I don't see a fundamental reason why all parking lots couldn't be solar-covered.
Let's try a mine that is more like the majority of world uranium reserves
https://minedocs.com/20/Inkai_Operation_TR_12312016.pdf
Produces about 3600t/yr and can keep that up over 30 years (it will be devistated for much longer than this).
Covers an area of 500km^2
Natural Uranium is about 100GJ/m^2 after you discard 90% of it via enrichment.
We get 10m^2/W and this is increasing as high yield mines are consumed.
I've no idea how you get to 19m^2/MWh for PV solar. That's an energy density of 6W/m^2
If you're using mining you can't get there from 0.3m^2 for nuclear because it uses less than 3x the silver and less than double then copper per net energy compared to the generator and control rods. Unless you're somehow claiming sand mining consumes 2m^2 per kg?
If you take the difference between rooftop and utility, That's 16m^2 per MWh or a coverage density of 50% with a capacity factor around 7%
Second even if we use their claimed 6W/m^2 that's still less area per person than the average american uses to park their car for world per capita average insolation.
It's a non issue.
At a more realistic 20W/m^2 (about what you get on a random spot in the UK on average) you can provide the net electricity for 60m^2 per household. At a more realistic penetration just the roof area of occupied buildings is enough.
The land use is a non issue. If you're really concerned about biodiversity just cover half of the golf courses. Solar farms are far better for diversity than pesticide and fertilizer covered monocrop grass.