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BIM & takeoff

Get 6D carbon from a BIM model

Turn a converted BIM model into an embodied carbon footprint. Auto-enrich reads quantities off the geometry and pairs each material with an emission factor, then you set a reduction target and issue the report. Five steps.

5 steps12 minDesigner / engineerBIM / digital consultantOwner / operator (FM)

How it works, step by step

5 steps across the platform - what you do at each one, and why it matters.

1

Import a BIM model

BIM

Open BIM and import the converted model for this job. Once conversion finishes, every wall, slab and column carries both its material tag and the quantity measured from the solid geometry.

Why: The whole footprint is read from the model, so garbage in means garbage out. A converted model hands the carbon match a clean material and a real quantity instead of a figure somebody typed by hand.

InConverted model fileProject recordOutElements with materialsQuantities from geometry
2

Open Carbon and start an inventory

Carbon

Move to Carbon and open a fresh inventory for the project. Fix the system boundary up front, cradle to gate for the shell or cradle to grave when you also need the in-use and end of life stages.

Why: Boundary choice drives the whole result, so pin it down before any entry lands. Two footprints only compare when they cover the same stages, and the inventory is the one place every material line adds up.

InImported BIM modelProject recordOutEmpty carbon inventorySystem boundary set
3

Auto-enrich embodied carbon from BIM

Carbon

Run Auto-enrich from BIM inside the inventory. Choose the model, look over the proposed lines in the preview, then confirm. Each element material is matched to an emission factor and the quantity is pulled straight off the geometry. Nothing is saved until you accept it.

Why: This is where 6D earns its keep. Rather than keying concrete, steel and insulation one line at a time, you get a full embodied list from the model in seconds, and every row shows how sure the match is.

InOpen inventoryElement materialsEmission factor libraryOutPreview of matched linesConfirmed carbon entries
4

Review the linked entries and confidence

Carbon

Work down the added lines. Every entry points back to the BIM element that produced it and shows a match confidence, so open the amber and red rows first and correct the factor or the quantity where the pairing looks wrong.

Why: The tool suggests, the estimator signs off. A generic factor on a specialist product can swing the total by tonnes, so the confidence flag tells you exactly which rows deserve a second look.

InEnriched carbon entriesMatch confidence flagsOutVerified carbon linesSigned-off footprint
5

Set a target and report

Carbon

Set a reduction target, either as an absolute total or per square metre of floor area, then generate the report for the period in the framework your client asks for. The target tracks live as the inventory changes.

Why: A raw carbon figure convinces no one on its own. A target draws the line you are trying to beat, and the exported report turns the footprint into a dated record you can put in front of an assessor or a planning officer.

InVerified footprintFloor areaOutReduction targetCarbon report

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