The power sector is both a primary mover and a casualty of carbon emissions. Power companies drive the clean energy transition: Their move to lower-carbon sources of generation and higher efficiency enables the decarbonization of all electricity-consuming sectors. At the same time, power companies are most vulnerable to the effects of the carbon accumulated in the atmosphere, facing higher exposure to physical risk from climate change than other sectors.1 As a result, they have much to gain or lose in their quest to decarbonize while parrying climate blows. Most utilities have set targets to fully decarbonize by mid-century and are implementing strategies to achieve those targets and prepare their workforce for the transition.2
Over the past year, it has become more apparent that the power sector will likely need to more than redouble its efforts. We have reached what the UN Secretary-General has called “code red for humanity,” based on the Intergovernmental Panel on Climate Change’s latest report that the world is quickly approaching the 1.5-degree tipping point.3 The Biden administration has made pledges nationally and internationally that would require full decarbonization of the power sector by 2035—a milestone around which there is consensus across pathways to limit global warming to 1.5 degrees4 (see sidebar, “Pathways to decarbonization”).
With the carbon goalposts shifting, how can utilities prepare the grid for accelerated decarbonization targets amid aggravated climate change effects? And how can they do so while maintaining reliability, affordability, and safety in a context rife with other challenges, such as increasing demand, market disruption, and cybersecurity threats?
Utilities should invest in “carbon-proofing” the grid today to have the flexibility needed in 2035 in a decarbonized scenario. Carbon-proofing generation, transmission, and distribution has two mirror goals:
(1) removing carbon from the grid; while
(2) protecting the grid from carbon already locked into the atmosphere.
First, our analysis will show that the cost of carbon-proofing the grid is lower than the cost of doing nothing across all regions according to utility calculations in their Carbon Disclosure Project (CDP) filings.5 Moreover, many utilities have underestimated the cost of some carbon-related risks, suggesting that the delta between the costs of action and inaction is even greater than the estimates. A second finding is that flexibility measures that can help meet both carbon-proofing goals—renewables deployment and resilience to extreme weather and climate events—are no-regrets investments. Finally, the analysis will explore how a new “carbon compact” between utilities, regulators, and customers can help unlock the necessary funding by aligning capital investment decisions with carbon-proofing at the lowest cost to customers.d for 2035.