Google has signed a major power purchase agreement (PPA) for 200 megawatts (MW) of clean fusion power from Commonwealth Fusion Systems’ (CFS) first commercial fusion power plant, ARC. This plant, located in Chesterfield County, Virginia, is set to provide carbon-free power to the grid by the early 2030s.
The tech giant also has the option to buy electricity from more ARC plants in the future. As an investor in CFS since 2021, Google is increasing its stake in the fusion company. While financial terms are undisclosed, this agreement is a big step forward for fusion power and shows Google’s commitment to clean energy innovation.
Michael Terrell, Head of Advanced Energy at Google, said,
“By entering into this agreement with CFS, we hope to help prove out and scale a promising pathway toward commercial fusion power. We’re excited to make this longer-term bet on a technology with transformative potential to meet the world’s future energy demand, and support CFS in their efforts to reach the scientific and engineering milestones needed to get there.”
What Is Fusion, and Why Does It Matter?
Fusion energy combines two light atoms, like hydrogen, into a heavier one, releasing a lot of energy. This is the same reaction that powers the sun.
The IAEA states that fusion could produce four times more energy per kilogram than nuclear fission, which current nuclear power plants use. It can generate millions of times more energy than fossil fuels. Best of all, it’s clean and carbon-free.
Commonwealth Fusion Systems: The Company Behind the Breakthrough
CFS spun out of MIT’s Plasma Science and Fusion Center in 2018. Based in Massachusetts, the fusion giant is working on compact, efficient fusion technology to make fusion power practical and scalable. The company combines breakthrough science with rapid engineering. Using high-temperature superconducting (HTS) magnets and proven tokamak designs, the company aims to bring fusion to the grid quickly and affordably.
Notably, with over $2 billion in support from private and public investors, Commonwealth Fusion Systems leads the way toward a zero-carbon energy future.
Bob Mumgaard, CEO and Co-founder of CFS, said,
“Fusion power is within our grasp thanks in part to forward-thinking partners like Google, a recognized technology pioneer across industries. Our strategic deal with Google is the first of many as we move to demonstrate fusion energy from SPARC and then bring our first power plant online. We aim to demonstrate fusion’s ability to provide reliable, abundant, clean energy at the scale needed to unlock economic growth and improve modern living – and enable what will be the largest market transition in history.”
SPARC to ARC: How the Fusion Journey Begins
The Google-CFS deal connects to SPARC, a compact fusion machine being built at CFS’s campus in Devens, Massachusetts. SPARC uses a tokamak design, a donut-shaped device that holds super-hot plasma with powerful magnetic fields.
With high-temperature superconducting (HTS) magnets, SPARC will be smaller and more efficient than earlier fusion models. Its goal? Achieve net energy gain (Q>1), where it produces more energy than it uses. Once that’s achieved, the technology will power ARC, the world’s first grid-scale fusion power plant.

ARC: Compact, Clean, and Ready for the Grid
ARC aims to generate 400 MW of firm, carbon-free power, similar to a natural gas plant. It can fit easily into existing power grids, providing clean, reliable electricity.

Here’s what makes ARC unique:
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Zero carbon emissions
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Small land footprint — the size of a big-box store
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Safe design — no risk of meltdown or long-lived radioactive waste
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Rapid ramp-up/down — supports both baseload and flexible power needs
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Abundant fuel — uses deuterium from seawater and self-produces tritium
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Minimal fuel needs — one truck can hold 30 years’ worth of fuel
ARC not only competes with fossil fuels but also surpasses them in cost, location flexibility, and safety. It complements renewables like solar and wind by providing steady backup power.
Job Creation and Local Impact
The Chesterfield County project will create hundreds of jobs during construction and operation. The site near Richmond, Virginia, was chosen for its growing energy needs and strong local infrastructure.
Meeting AI and Electrification Demands
As AI and data centers increase electricity use, traditional energy sources struggle to keep up. Fusion could provide clean, reliable power that meets global demand without harming the planet.
Fusion also avoids the resource bottlenecks of fossil fuels and uranium systems. Since hydrogen is widely available, fusion fuel will remain cheap and stable, unlike natural gas prices, which can fluctuate wildly.
A Climate Moonshot: Why Google Is All In
Google’s partnership with CFS is part of its climate mission. In 2024, Google added 2.5 gigawatts of new clean energy across multiple data center regions. The company also signed deals for advanced geothermal and small modular nuclear reactors (SMRs) and uses AI to optimize grid integration.
With this new fusion deal, Google is betting on the next generation of carbon-free energy. The tech giant understands that securing clean, reliable power is essential for future-proofing its data centers and services.

For instance, last year Google signed the first corporate deal to buy power from Kairos Power’s small modular reactors (SMRs), aiming to add up to 500 MW of clean energy to U.S. grids by 2035. The first reactor is expected to be operational by 2030.
Fusion Industry’s Momentum Is Growing
The global fusion race is heating up. The Global Fusion Industry Report shows that over 45 companies have entered the field, raising more than $7 billion in funding. Public-private partnerships are vital, and government support has recently increased by more than 50%.
CFS is leading this charge with real progress. It’s creating a blueprint for a clean energy future. Fusion power from ARC promises low-cost, high-impact solutions for nations, industries, and communities everywhere.

By backing this technology early, Google is securing a clean, stable energy supply for its growing needs. It shows that fusion is no longer science fiction; it’s becoming a commercial reality.
The post Google Backs Fusion Energy: Signs 200MW Offtake Agreement with Commonwealth Fusion Systems appeared first on Carbon Credits.
Carbon Footprint
Want a simpler way to buy carbon credits? Discover our carbon marketplace
Most businesses that decide to act on their net-zero targets reach the same point of friction. Buying carbon credits has meant tracking down brokers, sitting through sales calls, and requesting a quote just to learn a price, sometimes with limited proof of what you are buying.
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Climate-Linked Supply Chain Risk Is Already in Your P&L
The earnings calls that quietly reframed climate from sustainability question to operating risk.
Three earnings calls in the last 18 months tell the story without any help from a press release.
Hershey, May 2024: cocoa price exposure compresses margin, and the company attributes part of the cost shock to West African weather. Olam, July 2024: coffee climate exposure quantified in the annual report. JBS, January 2025: supply chain climate disclosures expanded materially in response to investor pressure and regulatory expectation. None of these companies issued the announcement as climate news. They issued it as financial news. The climate-linked supply chain risk did not arrive with a sustainability framing; it arrived as a P&L line.
You are probably reading this article because you suspect the same thing is happening to your business. This piece walks through what is showing up on which earnings calls, how procurement and finance leaders are quantifying the exposure, and what serious corporates are doing about it before the regulator asks.
Where climate risk has already appeared in earnings
The pattern is consistent across resource-intensive sectors. A weather event compresses supply, the price spikes, the cost flows through the income statement, and the analyst on the call asks whether the event is anomalous or structural. Increasingly, the honest answer is the second one.
Cocoa is the cleanest example. The 2023 to 2024 West African harvest fell sharply on the back of erratic rainfall and disease. Cocoa futures more than tripled. Companies with concentrated West African sourcing absorbed the cost; companies with diversified sourcing absorbed less. The exposure was not climate as ESG topic. It was climate as cost of goods.
Coffee follows the same pattern. Brazilian and Vietnamese harvests have moved on weather more sharply across the last several seasons. Roasters with long-tenor supplier relationships and origin diversification have managed the volatility; roasters with spot-market exposure have not. Wheat, sugar, palm oil, beef: the same dynamic in different commodities, a pattern the IPCC AR6 Working Group II report projects will intensify across agricultural systems through mid-century.
What this means: climate risk is no longer a footnote in the 10-K. It is a line item the CFO has to explain on the call.
The three commodity exposures that hit margin first
For most companies with material Scope 3 exposure, three exposures dominate the near-term P&L risk.
- Concentrated single-origin sourcing in a climate-vulnerable region. If your tier-one supply for any material commodity sits in one geography, you have a concentration risk that climate amplifies. Diversification across origins is the obvious hedge, but it takes years to build and requires relationships you cannot acquire by tender.
- Supplier financial fragility under climate stress. Smallholder farmers, who supply a large share of the global cocoa, coffee, and palm oil market, do not carry the balance sheets to absorb yield shocks. When yields collapse, they exit. When they exit, your supply base shrinks, and the surviving suppliers raise prices. The risk is structural, not cyclical.
- Logistics and storage exposure to extreme weather. Hurricane disruptions to Gulf shipping, drought-driven Panama Canal restrictions, flooding in European inland waterways: each of these has moved input costs in the last three years, a pattern documented in Munich Re’s natural catastrophe data. The exposure shows up as a one-quarter event in the financial press but accumulates over time on the cost line.
TCFD and ISSB disclosure changes
The disclosure architecture has now caught up with the risk. The Task Force on Climate-related Financial Disclosures, whose recommendations are now embedded in the ISSB’s IFRS S2 climate standard, requires companies to disclose climate-related risks across physical and transition categories, with quantification where possible.
For physical risk specifically (the climate-linked supply chain risk you are reading about), the disclosure must address both acute exposures (extreme weather events) and chronic exposures (gradual changes in temperature, precipitation, and growing seasons). The disclosure must address the time horizon over which the risk is material, the parts of the value chain exposed, and the financial impact under different scenarios.
The CSRD imposes similar requirements under European law, with double materiality (both financial and impact materiality) embedded in the assessment. The practical effect: your auditors and your investor relations team now need a defensible answer to the climate-linked supply chain risk question, and the answer needs to be quantified.
What procurement and finance can do now
Three actions matter near-term.
Map your exposure. Most companies do not have a clear view of which tier-one and tier-two suppliers sit in which climate-vulnerable geographies. Without the map, you cannot quantify the risk, and without the quantification, you cannot disclose it credibly. The map is the foundation, and World Resources Institute climate risk research provides useful public tooling to start.
Diversify and deepen, in that order. Diversification across origins reduces concentration risk, but the deeper move is to invest in the resilience of the suppliers you already have. Regenerative practices, agroforestry, soil health interventions: these reduce yield volatility under climate stress and protect your input cost trajectory.
Embed the climate spend inside procurement, not outside it. Treating climate risk as a sustainability cost line subordinates it to the ESG budget. Treating it as a procurement and resilience investment puts it in the budget that matters, which is the cost-of-goods budget that the CFO defends quarterly.
Nature-based supply chain investments are the asset class designed for exactly this purpose. They sit inside the value chain, they reduce climate-linked supply risk, they generate verifiable Scope 3 reductions, and they produce the documentation an auditor and a regulator can both test.
If you are quantifying climate-linked supply chain risk in advance of the next earnings cycle or the next disclosure period, the carbon and sustainability experts at Carbon Credit Capital can help you map your exposure and structure a Dual-Value Model response that addresses reduction, resilience, and disclosure-readiness in a single program. Schedule a consultation.
Carbon Footprint
Where should an SME start with a carbon action plan?
More and more small and medium-sized businesses are hearing the same question from their larger customers: What is your carbon footprint? That question now travels down entire supply chains, and it arrives next to tender requirements, certification criteria, and rising customer expectations.
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