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Duke Energy said it plans to double its renewable energy capacity by the end of the decade, and stop generating electricity from coal by 2035. CEO Lynn Good announced the plans during a call with investors on Feb. 10.

The announcement comes as Duke intends to deploy $63 billion of capital over the next five years, 80% of which is expected to support investments in grid modernization and zero or lower-carbon emitting generation. Good said Duke's wind and solar capacity would increase from 10,000 MW currently to 24,000 MW by 2030.

Duke Energy's Edwardsport IGCC (integrated gasification combined-cycle) coal-fired generation plant. Duke will stop generating electricity from coal by 2035, the company said. (Courtesy: Duke)

"As coal is phased out from our generation profile, it will be replaced with zero-carbon resources and prudent investments in cleaner natural gas," Good said, according to a transcript summary of the call.

Duke has retired 56 coal units for a total of 7.5 GW of capacity since 2010, Good said. The utility will spend around $4 billion on hydrogen-enabled natural gas generation to better ensure reliability in the absence of coal.

Around $15 billion would be spent on nuclear, renewables, storage, and hydropower over the same period, plus $33 billion on transmission and distribution infrastructure.

The financial sector is increasingly concerned about ownership of fossil fuel assets, particularly coal facilities, said Billy Pizer, vice president for research and policy engagement at the non-profit think thank Resources for the Future. Against this backdrop of regulation and financial momentum, "rapidly phasing out coal is good not just for the environment but for Duke Energy’s business."

Climate mandate

North Carolina Gov. Roy Cooper on Wednesday signed into law a bipartisan mandate that will require the state to reduce carbon emissions by 70% by 2030 and reach carbon neutrality by 2050. (Courtesy: North Carolina Governor's Office)

Charlotte, North Carolina-based Duke is working to comply with a bipartisan clean energy and emissions mandate signed into law by North Carolina Gov. Roy Cooper (D) in October. House Bill 951, which emerged from a Republican-controlled state legislature, requires the state to reduce carbon emissions by 70% by 2030 and reach carbon neutrality by 2050.

Under the bill, the state's utilities commission has until the end of 2022 to develop a plan with utilities to achieve the mandated emissions targets. "The Carbon Plan" would then be reviewed every two years and may be adjusted. Any generation and resource changes must maintain or improve grid reliability.

The utilities commission was authorized to direct the procurement of solar energy this year by utilities. And, regulators were directed to establish rules within 180 days for the early retirement of subcritical coal plants.

Good said that Dude planned to file its carbon plan after gathering stakeholder input. She said the utility expected an order on the carbon plan "by the end of this year."

Looking solely at Duke's North Carolina operations, Jordan Kern, an assistant professor in North Carolina State University's Dept. Forestry and Environment Resources, believes that the utility is "doing enough" to decarbonize the grid and meet the goal of the Paris Climate Agreement.

Kern added that other states and utilities can learn form the example set by North Carolina and Duke.

"House Bill 951 encourages Duke Energy to invest billions of dollars in infrastructure needed to reduce carbon emissions, and the public utilities commission will allow for cost recovery via increased electricity rates," Kern told Renewable Energy World. "Duke Energy shareholders could eventually profit from this investment, and I think that was probably important in getting buy-in from the utility.

"Electricity customers will absolutely see higher bills, but that is unavoidable if we are talking about taking meaningful steps to mitigate climate change."

Stakeholders who are engaging in the crafting of the North Carolina Carbon Plan, meanwhile, are waiting for Duke to jumpstart transmission planning to meet solar's growing demand for interconnection.

Duke "has not engaged or presented to stakeholders what kind of transmission planning that would include and how Duke plans to get that going before 2030," said Maggie Shober, research director for the Southern Alliance for Clean Energy.

Expanded emissions target

Duke Energy's Sutton Combined-Cycle plant in Wilmington, North Carolina (Courtesy: Duke Energy)

Duke also announced that the utility's 2050 net-zero goals would expand to include Scope 2 and certain Scope 3 emissions.

The utility said it would include emissions from "the power it purchases for resale, from the procurement of fossil fuels used for generation and from the electricity purchased for its own use."

Duke added a new net-zero by 2050 goal for the natural gas business that includes "upstream methane and carbon emissions related to purchased gas and downstream carbon emissions from customers' consumption."

Duke claims to have already reduced Scope 1 emissions from electricity generation by 44% from 2005 levels.

Matt Abele of the NC Sustainable Energy Association told Renewable Energy World that Duke's announced coal plant closures are the result of HB951, which allowed the utility to recoup costs from retirements. He said he remains skeptical about Duke's expanded emissions targets.

“The jury is still out" on Duke's additional commitment to Scope 2/3 emissions. He said the utility "still seems fairly committed to natural gas in its own fleet" under Scope 1. He pointed to Duke's latest integrated resource plan as evidence. He also cited "expanded efforts for cross-state collaboration" through mechanisms like the Southeast Energy Exchange Market that "may actually increase" natural gas dependency in the state.

Duke is among the 15 utilities that so far have backed the SEEM market design.

Duke Energy aims to double renewable energy capacity by 2030

Renewable Energy

Maybe Religion Is Here to Stay

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What the late Frank Zappa said here about atheism is what I began predicting when I was in my teens, but I’m not so optimistic today.

In fact, there seems to be a trend towards the rejection of science, fear, brutality, and tribalism–each one a pillar of religion and the fanaticism that so often surrounds it.

Maybe Religion Is Here to Stay

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The Scare of Communism

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As shown at left, “communism” and “socialism” have been used to scare American idiots for almost a century.

The Scare of Communism

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Germany Guarantees Offshore Prices, England Wind Surge

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Weather Guard Lightning Tech

Germany Guarantees Offshore Prices, England Wind Surge

Allen covers Germany’s new offshore wind price guarantee, England’s onshore wind revival, wind for Korean chip plants, and Aeris debt trouble.

The Uptime Wind Energy Podcast is brought to you by Weather Guard Lightning Tech, creators of the StrikeTape Ultra LPS retrofit. Subscribe to Uptime’s Substack newsletter. And check out Rosemary’s “Engineering with Rosie” Youtube channel. Have a question we can answer on the show? Email us!

Good Monday everyone.

Last summer … Germany held an auction for new offshore wind capacity. Not a single company bid. Zero. This week Berlin put forward a new law to fix that. The old system asked developers to pay for the right to build in the North Sea and the Baltic. TotalEnergies and BP bid billions of euros … then walked away. So the new plan introduces contracts for difference. Build the farm … and the government backstops the price of electricity. The offshore wind association wants abandoned projects … up to sixteen gigawatts … put back on the auction block under the new rules. That is fifty billion euros worth of wind farms waiting for a second chance. The cabinet vote could come as early as next week.

Stay in Europe but head west. England just posted its highest number of onshore wind applications in a decade. About forty-five proposals. Before Labour lifted the Conservatives’ ban two years ago … applications averaged one megawatt a month. Now they are running at thirty-six megawatts a month. But here is the catch. The average English wind farm has just two turbines. Eight megawatts. In Scotland … the average is nine turbines and fifty-nine megawatts. England is back in the game. It is just playing small.

Now cross the Pacific. South Korea selected Pacifico Energy Korea to develop the Jindo offshore wind cluster. Two-point-one-three gigawatts. That is the second and third phases of a broader three-point-two-gigawatt project off the southern coast. And here is the connection worth noting. The region is also building the Honam Semiconductor Cluster … a major chip fabrication site. Semiconductor fabs need enormous and reliable power. This wind cluster is being positioned as the energy source to feed it. Wind as baseload for chip manufacturing. That is a new kind of offtaker.

Now head to Brazil. Aeris Energy makes wind turbine blades. This week the company told its creditors it needs to restructure again. Roughly three hundred and thirty million dollars in debt. Aeris already restructured last year. But revenue fell forty-eight percent in the first half of this year. The company lost roughly fifty-three million dollars. It tried to find a buyer. No one came forward. Remember TPI Composites filing Chapter Eleven in Houston last year? The independent blade business keeps getting harder.

Back to North America. In Nova Scotia … Port Hawkesbury Paper is spending four hundred and fifty million dollars on thirty-one Nordex turbines. They will be the biggest onshore turbines in North America. Each one … six-point-nine megawatts. And they carry electrothermal technology that prevents ice from forming on the blades. They operate down to minus thirty Celsius. Last January … Nova Scotia’s existing turbines dropped from three hundred and fifty megawatts to seventy-five in a single evening when the cold hit. For anyone building in northern climates … cold-weather performance is no longer optional.

And in Minnesota … Xcel Energy broke ground on two projects this week. A hundred-and-eighty-five-mile transmission line that can carry four thousand megawatts of new wind and solar to the grid. And alongside it … a four-hundred-and-twenty-megawatt natural gas peaking plant in Lyon County for the days when the wind stops.

So what does this week tell us? Germany’s auction reform is the story to watch. If Berlin gets contracts for difference right … sixteen gigawatts of stalled projects could come back to life. England proves that removing a political ban releases demand … but the scale gap with Scotland shows that planning culture matters as much as planning law. The blade supply chain is still under stress. If you are in procurement … know your supplier’s balance sheet. South Korea is tying offshore wind directly to semiconductor manufacturing. That kind of industrial offtaker changes the project finance equation. And from Minnesota to Nova Scotia … the message is the same. Transmission … peaking power … cold-weather reliability. The turbine is the easy part. The system around it is where the money and the risk still live.

And that is the state of the wind industry for the 24th of August 2026.

Join us for the Uptime Wind Energy podcast tomorrow.

Germany Guarantees Offshore Prices, England Wind Surge

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