concept
The Material Circularity Indicator
MCI scores a product between fully linear and fully circular. How the calculation works, what it captures well, and the three things it deliberately ignores.
The Material Circularity Indicator scores a product from 0 for fully linear to 1 for fully circular, combining recycled and reused input, the fate of material at end of life, and a utility factor for lifetime and intensity of use relative to an industry average.
What this gives you
How the MCI is calculated, what it captures and what it misses, and whether it is the right metric to report for your product group.
Key takeaways
- MCI is a material flow measure, not an environmental impact measure.
- The utility factor is what stops a durable product scoring the same as a disposable one.
- It says nothing about carbon, toxicity or whether recycling capacity actually exists.
- ISO 59020 now provides a formal framework for circularity measurement alongside it.
Circularity is easy to assert and hard to compare. The Material Circularity Indicator was developed to make it a number, and understanding what that number does and does not contain is the difference between using it well and misusing it.
What MCI measures
MCI is a material flow measure. It asks where the material in a product came from, where it goes afterwards, and how hard the product worked while it existed.
| Component | What it asks | How it moves the score |
|---|---|---|
| Feedstock | Virgin, recycled or reused input? | Recycled and reused input raise it |
| End of life | Recycled, reused, landfilled or burned? | Recovery raises it, disposal lowers it |
| Utility | Lifetime and intensity versus average | Longer and harder use raises it |
A product made entirely from virgin material, used for an average life and then landfilled, scores at the linear end. A product made from recovered material, used longer than average and fully recovered afterwards, approaches the circular end.
The utility factor does the interesting work
Without a utility term, a metric based only on feedstock and end of life would reward a disposable product made from recycled material over a durable one made from virgin material. That is the wrong answer and the utility factor is what prevents it.
Utility compares the product’s lifetime, and its intensity of use, against an industry average for that product type. A product lasting twice as long as the average is doing twice the work per unit of material, and the score reflects that.
What MCI deliberately excludes
Three exclusions matter, and each has produced a misinterpretation common enough to be worth naming.
- Environmental impact — MCI does not measure carbon, water or toxicity. A highly circular product can carry a large footprint, and frequently does.
- Whether recovery actually happens — the end-of-life term reflects what is technically recoverable and intended, not what waste infrastructure in a given market delivers.
- Material scarcity — a kilogram of recovered aluminium and a kilogram of recovered plastic count identically, despite very different supply situations.
The first exclusion is the one that causes real harm when ignored. A product designed for disassembly out of an energy-intensive material may score well on MCI and poorly on any lifecycle impact assessment, and treating MCI as an environmental score licenses exactly that trade.
The second exclusion matters for honest reporting. Assuming a recovery rate that the collection system in a market does not achieve produces a score describing a hypothetical world rather than the one the product is sold into.
Where the passport supplies the inputs
MCI has historically been difficult to calculate at scale because its inputs are exactly the data that manufacturers did not systematically hold.
- Step 1Recycled content attributeSupplies the feedstock term directly.
- Step 2Composition and separabilityDetermines what is realistically recoverable.
- Step 3Durability and reparabilityEvidence for the lifetime assumption in utility.
- Step 4Recorded end-of-life eventsReplaces assumed recovery with observed recovery.
The last node is the significant one. A passport that records what actually happened to units at end of life turns the end-of-life term from an assumption into a measurement, which is the single largest improvement available to the metric.
MCI alongside ISO 59020
MCI predates formal standardisation of circularity measurement. ISO 59020 now provides a framework for measuring circularity performance, and ISO 59004 establishes the vocabulary and principles that sit beneath it.
These are complementary rather than competing. MCI remains a specific, well-defined calculation; the ISO framework describes how circularity measurement should be scoped, bounded and reported, which is what a metric on its own does not tell you.
For a company choosing what to report, the defensible combination is a named metric calculated to a stated scope, disclosed alongside a lifecycle impact figure so that the material flow story and the environmental story are both visible.
Using it without misleading anybody
MCI is genuinely useful for comparing design options within a category, which is where it was intended to be used. It is weaker as a headline claim, and weakest as a substitute for impact data.
Directive (EU) 2024/825 is relevant here. A circularity score presented as an environmental claim, without stating what it measures and excludes, is the kind of assertion that directive was written to constrain.
Frequently asked questions
What does the Material Circularity Indicator measure?
Material flow. It combines the share of recycled and reused input, the fate of the material at end of life, and a utility factor comparing the product’s lifetime and intensity of use against an industry average, producing a score between fully linear and fully circular.
Does a high MCI mean low environmental impact?
No, and treating it that way is the most damaging misreading. MCI does not measure carbon, water use or toxicity. A product designed for disassembly from an energy-intensive material can score well on MCI and poorly on any lifecycle impact assessment of the same product.
Why is a utility factor included?
Without it, a metric based only on feedstock and end of life would rate a disposable product made from recycled material above a durable one made from virgin material. Utility captures how much work the product does per unit of material, which is the point.
Does MCI reflect whether recycling actually happens?
No. The end-of-life term reflects what is technically recoverable and intended rather than what waste infrastructure in a given market delivers. Assuming a recovery rate the collection system does not achieve produces a score describing a hypothetical rather than the real market.
How does a passport improve the calculation?
It supplies the inputs per product rather than per estimate, and it can record what actually happened at end of life. Turning the end-of-life term from an assumption into an observation is the single largest improvement available to the metric as it is currently used.
How does MCI relate to ISO 59020?
They are complementary. MCI is a specific, well-defined calculation, while ISO 59020 provides a framework for how circularity measurement should be scoped, bounded and reported. A metric on its own does not tell you how to scope it, which is what the standard addresses.
Can we use MCI in marketing?
Carefully. Directive (EU) 2024/825 constrains environmental claims, and a circularity score presented as an environmental claim without stating what it measures and excludes is exactly the kind of assertion it was written to address. Disclose the metric, its scope and its exclusions.
Sources
- ISO 59020: Circular economy — Measuring and assessing circularity performance — International Organization for Standardization, 2024-05
- Directive (EU) 2024/825 on empowering consumers for the green transition — EUR-Lex, European Union, 2024-02
Continue reading
- The circular economy: a practical guideThe wider framework circularity metrics attempt to quantify.
- Life cycle assessment explainedThe impact measure MCI is not a substitute for.
- Substantiating green claimsWhat Directive (EU) 2024/825 requires behind a circularity claim.
- Designing a take-back programme that worksHow recovery becomes an observation rather than an assumption.