That’s the whole point of diversifying, use the sources that are available in the places where they are available.
Yes, but they are more niche solutions rather than widely available or feasible ones.
which makes them carbon neutral.
Only in theory, and only with some crop types. And as with all agriculture, it takes up a lot of space. If we simply used that space to plant trees we wouldn’t have to release those GHGs into the atmosphere at all. And then there is the labour intensive process of sowing, watering, harvesting, processing and transportation that emits GHGs of its own.
give us a good idea of how it will evolve.
Yes, but small scale projects do not tell you how it scales to grids worldwide. Nor how it holds up after years, or what happens when these batteries reach the end of their lifecycle. And it may be decades until we can make it on the scale that is necessary for worldwide deployment.
We already know all of this stuff for NPPs due to decades of experience with them.
We’re probably talking about the 2040s at that point.
Possibly, although SMR’s may be built quicker. The point is it’s not the same for a technology that still needs to be developed. All these ideas still need to be developed and then be produced and implemented. So that’s more like 2050s-2060s.
and at this point we have other alternatives that are cheaper and faster to install.
Yeah but the person above didn’t realize that these are not competing technologies. The NPP provides base load power, e.g. at night when the solar panels produce none. And solar panels provide peak load power during the day. They meet different demands, but the NPP is more stable and can also be turned up or down during the day depending on the weather.
NPPs are way more reliable than solar, so the current shutdown is big news just because it happens so rarely. And when there are extreme droughts there will probably be lots of sun around for solar to fill the gap.
Yes, but they are more niche solutions rather than widely available or feasible ones.
Only in theory, and only with some crop types. And as with all agriculture, it takes up a lot of space. If we simply used that space to plant trees we wouldn’t have to release those GHGs into the atmosphere at all. And then there is the labour intensive process of sowing, watering, harvesting, processing and transportation that emits GHGs of its own.
Yes, but small scale projects do not tell you how it scales to grids worldwide. Nor how it holds up after years, or what happens when these batteries reach the end of their lifecycle. And it may be decades until we can make it on the scale that is necessary for worldwide deployment.
We already know all of this stuff for NPPs due to decades of experience with them.
Possibly, although SMR’s may be built quicker. The point is it’s not the same for a technology that still needs to be developed. All these ideas still need to be developed and then be produced and implemented. So that’s more like 2050s-2060s.
Yeah but the person above didn’t realize that these are not competing technologies. The NPP provides base load power, e.g. at night when the solar panels produce none. And solar panels provide peak load power during the day. They meet different demands, but the NPP is more stable and can also be turned up or down during the day depending on the weather.
NPPs are way more reliable than solar, so the current shutdown is big news just because it happens so rarely. And when there are extreme droughts there will probably be lots of sun around for solar to fill the gap.