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LanzaTech Global, Inc. (NASDAQ: LNZA) and Technip Energies, a leading French engineering company focused on clean energy, recently secured funding of $200 million from the U.S. Department of Energy (DOE) Office of Clean Energy Demonstrations (OCED). This funding will support their joint project, known as Project SECURE (Sustainable Ethylene from CO2 Utilization with Renewable Energy).

Arnaud Pieton, CEO at Technip Energies noted,

We are pleased to receive the Phase 1 award from the OCED and begin the engineering design work to progress the development of this innovative technology. The global population is expected to continue to rise by 2050, bringing with it a greater demand for consumer goods that rely on ethylene. While addressing this growing demand, we absolutely need to decarbonize ethylene production. We not only need to do something about carbon but very importantly with carbon. That is what our partnership with LanzaTech on this technology is all about. Leveraging our long-lasting leadership in ethylene, we are committed, together with LanzaTech, to develop this technology at scale and continue to explore ways to decarbonize ethylene production.”

Turning Carbon into Ethylene: A Game-Changing Solution

Project SECURE, led by Technip Energies and LanzaTech, introduces a revolutionary way to produce sustainable ethylene for commercial use.

As defined in the press statement,

  • The process takes captured carbon dioxide from ethylene production and recycles it with low-carbon intensity hydrogen to create sustainable ethanol and ethylene.

This scalable solution could transform ethylene production globally by replacing fossil fuels. It further highlights the companies’ commitment to lower emissions while advancing clean energy goals.

Technip Energies and LanzaTech plan to launch the project in the U.S. Gulf Coast region, integrating directly into an existing ethylene cracker. There are over 370 ethylene steam crackers worldwide. Eight of these in the U.S. use Technip Energies’ technology. Thus, it creates huge potential for replicating the process globally.

Dr. Jennifer Holmgren, Chair and CEO of LanzaTech stated,

We are thrilled to reach this milestone and commence work on this important project. Ethylene is a key building block for thousands of chemicals and materials, and is often referred to as the world’s most important chemical. Our project not only increases the efficiency and value of existing ethylene production infrastructure, but also creates high-quality jobs and supports local communities. Circularizing our global carbon economy requires combining ambition with action, and we are grateful for the shared vision and support of the OCED to advance this replicable technology, strengthening our domestic manufacturing base for valuable commodities.”

OCED’s Phased Approach for Oversight and Funding

The Office of Clean Energy Demonstrations (OCED) is driving clean energy innovation by partnering with private companies to deliver large-scale demonstration projects. Their goal is to speed up the adoption of clean energy solutions and ensure a fair transition to a decarbonized future.

OCED has pledged up to $200 million for Project SECURE, covering design, engineering, construction, and equipment for a commercial-scale integrated technology unit. The first phase has received nearly $20 million.

During this phase, Technip Energies and LanzaTech will complete a Front-End Engineering Design (FEED) study. They will prepare detailed project plans, fulfill requirements for the National Environmental Policy Act (NEPA) review, and collaborate with local communities and labor groups.

The oversight will extend to monitoring Project SECURE’s progress at each stage. OCED will evaluate the project’s implementation quality, community benefits, and overall advancement before approving further funding. This phased approach ensures accountability of both companies and aligns with their mission to support impactful projects.

Beyond Ethylene: LanzaTech’s Carbon Recycling for All Industries

LanzaTech has been operating at a commercial scale since 2018, leading the way in carbon recycling technology. Supported by past DOE funding, the company goes beyond ethylene production to capture waste carbon from energy-intensive industries. Instead of releasing or sequestering emissions, they transform them into valuable ethanol and raw materials.

For example: LanzaTech results in taking carbon sources from steel mills

LanzaTechSource: LanzaTech

Innovative Biorecycling Process

The company’s process mimics a brewery but with an interesting twist. Instead of using yeast to convert sugar into alcohol, its proprietary microbes consume carbon emissions to produce ethanol and other building blocks. These materials can then be turned into fuels, chemicals, and consumer goods.

This is how LanzaTech works with industries to turn waste carbon into valuable products instead of letting it go to landfills or the atmosphere. They call it a “CarbonSmart” initiative. This innovative technology not only lowers emissions but also demonstrates how waste can power a cleaner, smarter world.

Notably, every year, approximately 500 million tonnes of carbon are embedded into materials and chemicals, with 88% coming from virgin fossil sources.

Technip Energies: Pioneering Clean Energy Solutions Worldwide

Technip Energies is a global leader in technology and engineering. They are driving innovation in key areas like LNG, hydrogen, ethylene, sustainable chemistry, and CO2 management. The company plays a vital role in advancing energy, decarbonization, and circular economy markets.

Through its two core business segments—Technology, Products, and Services (TPS) and Project Delivery—Technip Energies turns innovative ideas into scalable industrial solutions.

In 2023, the company generated €6 billion in revenue and is listed on Euronext Paris. Its American Depositary Receipts also trade over the counter.

Reducing Greenhouse Gas Emissions

Revealed in the latest sustainability report, the company’s direct (scope 1) and indirect (scope 2) emissions come from office operations, industrial sites, and data centers. Their goal is to reduce scope 1 and 2 emissions by 30% by 2025 and achieve net zero by 2030.

Technip EnergiesSource: Technip Energies

In 2023, Technip Energies reported total scope 1 and 2 greenhouse gas emissions of 18,845 tonnes CO2eq (location-based) and 14,743 tonnes CO2eq (market-based)

  • The company achieved a 28% reduction in market-based emissions compared to the 2021 baseline. This reflects significant progress toward its sustainability goals.

Overall, this funding is a great backup for LanzaTech and Technip Energies to advance carbon recycling for a low-carbon future.

The post LanzaTech and Technip Energies Win $200 Million DOE Funding for Innovative CO2-to-Ethylene Project appeared first on Carbon Credits.

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Carbon Footprint

Where should an SME start with a carbon action plan?

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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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Carbon Footprint

Insetting vs Offsetting: Which Actually Counts Toward Your Scope 3 Targets

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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.

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Carbon Footprint

Net zero needs nature: a carbon credit guide

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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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