Canada is making bold moves in nuclear energy. It is investing heavily in next-generation technology to boost its clean power supply. As demand for low-emission electricity grows, the government is modernizing its flagship CANDU reactors along with developing the small modular reactors (SMRs).
On March 5, 2025, Canada’s Energy Minister, Jonathan Wilkinson, announced a deal with AtkinsRéalis to develop the MONARK reactor, a new CANDU design. Under this agreement, Canada will provide up to $304 million over four years to cover 50% of the project’s design costs.
AtkinsRéalis CEO Ian L. Edwards,
“We are honoured to have the full faith and confidence of the Government of Canada in continuing our development of proven home-grown CANDU technology.”
AtkinsRéalis Leads CANDU Innovation
AtkinsRéalis, a global engineering and nuclear company, has been operating since 1911. It focuses on building a sustainable future by connecting people, data, and technology. The company provides end-to-end services to key sectors such as engineering, nuclear, and capital projects.
They have pioneered CANDU technology for over a decade and have contributed majorly to global low-carbon energy solutions.
CEO Ian L. Edwards further added,
“The federal government’s decision today to invest in the further development of CANDU technology, an evolution of the proven Darlington reactor model, will enable us to continue this important work already underway with our utility partners. Advancing CANDU technology creates economic value for the country and Canadians, ensures energy security at this critical time, improves health outcomes through the creation of more cancer-fighting isotopes, builds stronger and more resilient relationships with Indigenous peoples, workers and communities, and above all, maintains Canada’s status as a Tier-1 nuclear nation.”
This initiative involves Atomic Energy of Canada Limited (AECL), Canadian suppliers, and reactor operators. Together, they will modernize a technology that has powered Canada for decades.

Canada’s CANDU Advantage: A Homegrown Powerhouse
CANDU (CANada Deuterium Uranium) reactors have a major plus. They use natural uranium sourced from Saskatchewan. This means no enriched uranium is needed. Most of the uranium is used to produce fuel for nuclear plants (over 99%). The rest (less than 1%) is used for research reactors and medical isotopes.
In 2022, Canada produced 7.4 kilotonnes of uranium from mines in Saskatchewan. This was worth around $1.1 billion. This makes uranium a secure energy source for Canada and an easily available fuel for CANDU reactors.
- Currently, Canada has 17 CANDU reactors—16 in Ontario and one in New Brunswick.
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Net Zero Integration: can eliminate over 17 million tonnes of CO₂ emissions annually when replacing coal.
Internationally, CANDU technology is used in South Korea, China, Argentina, and Romania. Demand for CANDU reactors is rising. In late 2024, Romania said it would buy two more units for its Cernavoda nuclear site. This move strengthens Canada’s reputation in global nuclear energy.
The CANDU supply chain drives economic growth as the industry sources 85% of its components from domestic companies. This supports 89,000 high-quality jobs in manufacturing and engineering. In 2024, AtkinsRéalis hired over 750 new employees for Candu Energy Inc. and placed more than $1 billion in orders with Canadian suppliers.
Minister Wilkinson hailed the potential of CANDU reactors by explaining,
“CANDU reactors maintain an almost entirely Canadian-made, Canadian-designed supply chain through a consortium of Canadian companies, and they provide good-paying, long-lasting, and sustainable jobs in manufacturing for Canadians. They are also fuelled by uranium mined in Saskatchewan without the need for enrichment. As countries look to secure safe sources of clean energy, demand for Canadian nuclear is growing. The Government of Canada is acting now to modernize Canadian-owned CANDU technology, which will provide a viable, cost-effective design in support of the expansion of nuclear energy capacity in Canada and internationally.”

SMRs: The Future of Flexible Nuclear Power
Canada is also investing in small modular reactors to diversify its nuclear energy options.
The Government’s press release also highlighted,
Minister Wilkinson, on behalf of the Honourable Steven Guilbeault, Minister of Environment and Climate Change, also announced $55 million in funding from Environment and Climate Change Canada’s Future Electricity Fund (FEF) to support Ontario Power Generation’s Darlington New Nuclear Project.
This project will install three GE Hitachi BWRX-300 SMRs at Darlington. Each unit will produce 300 megawatts, which can power 900,000 homes.
Saskatchewan is moving forward with SMR deployment. The federal government increased funding for SaskPower’s pre-development work. It went up from $24 million to $80 million. This support helps with engineering studies, environmental assessments, regulatory planning, and collaboration with indigenous communities. These are all essential steps before construction begins.
More Nuclear Investments, Less Carbon
Moving on, Minister Wilkinson announced a $52.4 million investment to push SMRs and CANDU reactors. This investment also includes decarbonization strategies in Saskatchewan, Alberta, and Ontario.
- The investment includes $11.4 million from the Enabling SMRs Program for three projects and $41 million under NRCan’s Electricity Predevelopment Program for four projects.
Economic and Environmental Wins
Investing in nuclear power offers major economic advantages. The Conference Board of Canada says a four-reactor CANDU project could boost Canada’s GDP by $50 billion. It might also generate $29 billion in tax revenue. Additionally, building these four CANDU reactors could create over 20,000 full-time jobs and ~ 3,500 permanent jobs for more than 70 years.
Nuclear energy is also crucial for Canada’s goal of net-zero emissions by 2050. Unlike fossil fuels, CANDU reactors and SMRs produce zero emissions. Thus, expanding the nuclear capacity will bring direct environmental benefits like:
- They provide a clean and reliable power source.
- Help replace coal and natural gas plants.
- Cut greenhouse gas emissions and ensure a stable electricity supply.
The post Canada’s Nuclear Boom: Big Investments in CANDU and SMRs appeared first on Carbon Credits.
Carbon Footprint
Insetting vs Offsetting: Which Actually Counts Toward Your Scope 3 Targets
The accounting differences that decide whether your nature investment shows up in inventory, in BVCM, or nowhere at all.
The question reaches a procurement team about three weeks before the next sustainability committee meeting. Someone has read about insetting. Someone else has just signed off on an offset purchase. The CSO wants to know if the two are interchangeable. The answer is no, and the GHG Protocol Land Sector and Removals Standard is the reason why.
This article walks through what each term means at audit-grade specificity, what the standards actually say about how each gets counted, and how to decide which tool fits which target. The insetting vs offsetting question is one of the most-searched in corporate climate strategy, and one of the most poorly answered. By the end of this piece, you should be able to brief a committee on the difference without notes.
The two definitions, in plain English
Offsetting means buying carbon credits generated outside your value chain and retiring them against your residual emissions. The reduction happens somewhere else, financed by you, and the credit is the receipt.
Insetting means investing in emission reductions or removals inside your own value chain, typically with suppliers, where the reduction is directly linked to the products and services you buy. The reduction happens inside the boundary of your Scope 3 inventory, and the accounting treatment is fundamentally different.
The shorthand from the University of Oxford’s Nature-based Insetting Initiative is useful: insetting is what you do with the supply chain you have; offsetting is what you do with the supply chain you do not have.
What the GHG Protocol Land Sector Standard actually says
The GHG Protocol Land Sector and Removals Standard, finalised in 2024 after a multi-year pilot, sets the rules for how land-based emission reductions and removals enter corporate inventories. The Standard distinguishes between inventory accounting (Scope 1, 2, and 3) and project or intervention accounting (a separate methodology for crediting).
For insetting, the practical implication is that supplier-level interventions, when properly measured and attributed, can reduce your Scope 3 category 1 (purchased goods and services) emissions in your inventory. The reduction is not a credit retired against the inventory; it is a lower inventory number, period.
For offsetting, the credit is retired separately. It can be reported as a contribution toward a net-zero claim under the SBTi Beyond Value Chain Mitigation framework or as part of a VCMI Carbon Integrity claim, but it does not lower the inventory number.
A practical consequence: if your Science Based Target requires a 50% absolute reduction in Scope 3 emissions by 2030, insetting moves you toward the target. Offsetting does not. This single point of difference reshapes the procurement decision.
When insetting counts toward Scope 3 (and when it does not)
Insetting counts toward Scope 3 only when several conditions are met:
- The intervention must occur with an entity in your value chain.
- The emissions reduction or removal must be measured against a defensible baseline.
- The reduction must be attributed to your share of that supplier’s output, not double-counted with other buyers.
- It must follow the inventory accounting rules in the GHG Protocol Land Sector Standard, not the project accounting rules used to generate credits.
The most common failure mode is double counting. If your supplier sells the same reduction as a credit on the voluntary market and also reports it to you as a Scope 3 reduction, the math breaks. The Standard requires you to address this risk, typically by purchasing and retiring the supplier-issued credit as part of your inventory or by contractual provisions that prevent the supplier from selling the reduction twice.
When insetting does not count toward Scope 3: when the intervention sits with a supplier you do not buy from, when the baseline is not defensible, when the attribution is unclear, or when the documentation does not survive audit. Those cases default to Beyond Value Chain Mitigation, which is still useful but operates on a different ledger.
The procurement and supplier engagement question
Insetting is harder than offsetting. That is the unfashionable truth most buyers eventually confront. Offsetting is a transaction; insetting is a relationship.
To run an insetting program, you need supplier mapping precise enough to know which farms or facilities sit at which Scope 3 boundary. You need an engagement model that gets suppliers to participate, which usually requires multi-year commitments and shared economics. You need an MRV architecture that measures the right things and produces audit-ready documentation. And you need a contractual structure that prevents double counting and protects both sides.
The trade-off you receive in return is significant. Reductions count against your inventory rather than your residual. Supplier relationships deepen, which protects sourcing continuity. Yield and quality improvements often follow regenerative interventions, which reduces your input cost over time. And the regulatory file, under CSRD, CSDDD, EUDR, and the SBTi FLAG Guidance, is materially stronger.
Choosing the right tool for the right target
A practical decision rule. If your target is a science-based Scope 3 reduction and you operate in a FLAG sector or source FLAG commodities, insetting is the structurally correct tool. If your target is a net-zero claim that includes neutralising hard-to-abate residual emissions outside your value chain, BVCM via high-integrity offsets is the structurally correct tool. Most companies with material Scope 3 exposure need both, in different proportions, sequenced over time.
The sequencing matters. Insetting takes longer to stand up but produces a permanent reduction in the inventory. Offsetting can be transacted faster but does not change the inventory and now sits under tighter claim restrictions. Treat them as complementary tools with different jobs, not as substitutes. The Accountability Framework Initiative and the IUCN Global Standard for Nature-based Solutions both provide useful guardrails for the insetting side, with biodiversity, human rights, and benefit-sharing requirements that go beyond carbon math.
If you are mapping a Scope 3 reduction roadmap and need to scope which interventions count toward your inventory versus which sit in Beyond Value Chain Mitigation, the carbon and sustainability experts at Carbon Credit Capital can help you structure a nature-based supply chain investment program that fits your FLAG exposure, your target architecture, and your audit horizon. Schedule a consultation.
Carbon Footprint
Net zero needs nature: a carbon credit guide
Net zero is often described as a balancing act: cut what you can, account for the rest, and reach zero on the ledger. That framing is useful, but it leaves something out. It treats every tonne of carbon as interchangeable and every route to zero as equally sound, while the science tells a more specific story.
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Carbon Footprint
Deforestation in Malawi: causes and solutions
Malawi has lost a striking share of its forests over the past three decades. Woodlands that once covered well over a third of the country now cover less than a quarter, and the pressure on what remains is increasing. Behind those figures sit two practical questions: what is driving the loss, and what reverses it?
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