Earlier quoted context omitted.
Except when you consider where each technology fits within its own S-curve of adoption (X axis over time, Y axis is % of the technology adopted by the market). When factoring in the shape of the exponential decreases in costs, and that penetration of most of these technologies is at or before the inflection point (between 5%-15% market penetration), it is more likely that the cost declines will ACCELERATE moving forw…
> Except when you consider where each technology fits within its own S-curve of adoption (X axis over time, Y axis is % of the technology adopted by the market). Unfortunately, even a very small amount of noise in the data makes is basically impossible to know where you are in an S-curve. Much safer to make predictions based on the far more limited good news that PV+battery is already cheaper than coal for electricit…
While true, my point is that when combined with the fact that we are pre-inflection point, and the economics now stand on their own (renewables, Electric Vehcile TCO and various Energy Storage applications being already cheapest, competitive or very close too) it is not unreasonable when mapping out the 5-15 year future to bet on an acceleration of cost declines over a deceleration. Particularly because the actual driver of unit cost declines (Wrights Law/Moore's Law) is the doubling / magnitude of units manufactured and put through the system, for which with all the factories being ramped up and planned - point to the positive in my view on it.
Regarding your PV-powered and electrolysis-Sabatier (electrofuel) methane, I think there are two important considerations. In order for methane (or other e-fuels like hydrogen or longer chain hydrocarbons) to be made economically, the capital cost of the equipment needs to be utilized as close to 100% of the time as possible. We already know that PV excess will be centered around the daytime peak (5-7 hours per day) meaning that there would also need to be plenty of excess wind to balance this out to get anywhere close to 100% utilization of the excess energy. Until the electricity grids get sufficiently saturated with renewables broadly, most e-fuel applications will continue to not be competitive, particularly as things like energy storage applications (possibly run off an e-fuel) are likely to be economical prior there being an opportunity for the export of excess e-fuels. That's more at the a end of the S-Curve as far as I can tell.