EPD-IES-0031390:001

AGT Flooring

AGT Flooring is an engineered wood-based flooring product produced from HDF boards for indoor floor covering applications. The product is processed into flooring elements with the required dimensions and edge profiles. Depending on the final product specification, it may include decorative surfaces, profiled edges, painted or treated edges and installation-related profile details. AGT Flooring is intended to provide a finished indoor floor surface. It may be supplied in different dimensions, surface designs, textures and specifications according to customer and market requirements.

General information

EPD OwnerAGT Ağaç Sanayi ve Tic. A.Ş.
Registration numberEPD-IES-0031390:001
EPD typeEPD of multiple products based on a representative product
StatusValid
Version date2026-10-06
Validity date2031-10-05
Standards conformanceISO 14025:2006, EN 15804:2012+A2:2019/AC:2021
LicenseeEPD Türkiye
Geographical scopeGlobal, Republic of Türkiye
An EPD may be updated or depublished if conditions change. This is the latest version of the EPD.

Programme information

ProgrammeInternational EPD System
AddressEPD International AB Box 210 60 SE-100 31 Stockholm Sweden
Websitewww.environdec.com
E-mailsupport@environdec.com

Product category rules

CEN standard EN 15804 serves as the Core Product Category Rules (PCR)
Product Category Rules (PCR)2019:14 Construction products (EN 15804+A2) (version 2.0.1) 2.0.1
PCR review was conducted byThe Technical Committee of the International EPD System. See www.environdec.com for a list of members. Review chair: Rob Rouwette (chair), Noa Meron (co-chair). The review panel may be contacted via the Secretariat www.environdec.com/support.
Complementary Product Category Rules (c-PCR)2019:14-c-PCR-006 Wood and wood-based products for use in construction (EN 16485) (Version 1.0.1) 1.0.1 Version: 1.0.1
c-PCR review was conducted byThe Technical Committee of the International EPD System

Verification

Independent third-party verification of the declaration and data, according to ISO 14025:2006, via
Third-party verifierRajesh Singh (Sphera India)
Approved byThe International EPD® System
Procedure for follow-up of data during EPD validity involves third party verifier
*EPD Process Certification involves an accredited certification body certifying and periodically auditing the EPD process and conducting external and independent verification of EPDs that are regularly published. More information can be found in the General Programme Instructions on www.environdec.com.

Ownership and limitation on use of EPD

Limitations

EPDs within the same product category but published in different EPD programmes, may not be comparable. For two EPDs to be comparable, they shall be based on the same PCR (including the same first-digit version number) or be based on fully aligned PCRs or versions of PCRs; cover products with identical functions, technical performances and use (e.g. identical declared/functional units); have identical scope in terms of included life-cycle stages (unless the excluded life-cycle stage is demonstrated to be insignificant); apply identical impact assessment methods (including the same version of characterisation factors); and be valid at the time of comparison.

Ownership

The EPD Owner has the sole ownership, liability, and responsibility for the EPD.

Information about EPD Owner

EPD OwnerAGT Ağaç Sanayi ve Tic. A.Ş.
Contact person nameMerve Akkaya
Contact person e-mailmerve.akkaya@agt.com.tr
Organisation addressOrganize Sanayi Bölgesi 3. Kısım, 35 Cadde 07190 Antalya Organize Sanayi Bölgesi 3. Kısım, 35 Cadde 07190 Antalya 07190 Antalya Turkey
LCA Practitionerfurkancan.akalin@metsims.com, furkancan.akalin@metsims.com

Description of the organisation of the EPD Owner

AGT, Technology That Develops the Wood, started its activities in Antalya in 1984 with the vision of processing and developing wood specifically for individuals and institutions through developing technology. Today, AGT operates as one of the world’s leading companies in the furniture components industry. In its modern production facilities established in the Antalya Organized Industrial Zone on a total area of 450 thousand square meters, AGT provides services to the furniture and decoration sectors with MDF, MF MDF, panel and profile production, and also serves the construction sector with flooring and skirting board production. Ranked among Turkey’s Top 500 Industrial Enterprises, the company obtained approximately 50% of its turnover of over 1 billion TL from exports in 2019. With more than 1,000 employees, AGT is able to produce all wooden materials required for interiors within its own structure. Since the first day of its establishment, AGT has not compromised its ethical values and quality principles. For all customers, employees and business partners, regardless of scale, quality, trend and development remain the company’s main targets. Today, AGT adds color, elegance and sustainable vitality to the living spaces of millions of people who value quality and aesthetics, with more than 1,000 sales points on five continents. In addition to its widespread dealer network in Turkey, AGT has sales points on five continents and exports to approximately 90 countries, primarily Canada, Eastern Europe, the Balkans, MENA and Russia. Quality is not a final point to be reached, but a target that is continuously renewed and developed according to changing conditions. With a reliable, organized and institutionalized business approach in the furniture components industry, AGT’s quality policy is to increase production quality by closely following developing technology, to fully meet the expectations and requirements of its customers, to improve the efficiency of the quality management system, and to remain a preferred brand in national and international markets by ensuring the continuity of its position in the sector. Today, AGT continues to be the choice of those who care about quality, aesthetics and elegance, with its determination to be a leading player that guides the market not only in Turkey but also in the global arena. In line with its vision of “Technology That Develops the Wood”, AGT acts with a long-term and strategic perspective and prioritizes compliance with international standards. The company holds certifications for ISO 9001:2015 Quality Management System, ISO 14001:2015 Environmental Management System, ISO 45001:2018 Occupational Health and Safety Management System, ISO 10002:2018 Customer Satisfaction Management System, ISO/IEC 27001:2022 Information Security Management System, ISO 50001:2018 Energy Management System, the Programme for the Endorsement of Forest Certification (PEFC), and the Forest Stewardship Council (FSC).

Organisation images

Organisation logo

Product information

Product nameAGT Flooring
Product identificationAGT Flooring is an HDF-based flooring product manufactured by AGT Ağaç Sanayi ve Tic. A.Ş. The product is included within the scope of this EPD study as part of AGT’s flooring product range. It is manufactured using HDF boards with a nominal density of 800 kg/m³ and a moisture content of 4–7% as the substrate. AGT Flooring is produced in thicknesses between 7.5 mm and 12 mm. For this EPD study, the 8 mm product thickness was selected as the representative thickness for the product group. The product is intended for use as an indoor floor covering material and is manufactured from HDF boards through cutting, profiling, edge finishing and packaging operations.
Product descriptionAGT Flooring is an engineered wood-based flooring product produced from HDF boards for indoor floor covering applications. The product is processed into flooring elements with the required dimensions and edge profiles. Depending on the final product specification, it may include decorative surfaces, profiled edges, painted or treated edges and installation-related profile details. AGT Flooring is intended to provide a finished indoor floor surface. It may be supplied in different dimensions, surface designs, textures and specifications according to customer and market requirements.
Technical purpose of productThe technical purpose of AGT Flooring is to provide a stable, decorative and functional indoor floor covering solution. The product is intended to be used as a finished flooring surface in interior spaces. It provides the visible floor layer and contributes to the functional and aesthetic performance of the indoor floor system. Typical applications include residential buildings, offices, commercial interiors, retail spaces and other indoor areas where a wood-based flooring solution is required.
Manufacturing or service provision descriptionAGT Flooring is manufactured from HDF boards through cutting, profiling, edge finishing, quality control and packaging operations. The manufacturing process generally includes board feeding, longitudinal slitting, cross cutting, longitudinal milling and painting, transverse milling and painting, quality control, boxing, shrink wrapping and final packaging. These operations convert HDF boards into finished flooring elements with the required dimensions, edge profiles and installation-related features. The final product is packaged and prepared for distribution as an indoor flooring product.
Material propertiesArea density: 7.36 kg/m2 Thickness: 0.008 m
Area density:
7.36 kg/m2
Thickness:
0.008 m
Manufacturing siteAGT Ağaç Sanayi ve Tic. A.Ş. Döşemealtı Organize Sanayi Bölgesi 3. Kısım 35. Cadde No:7 07190 Döşemealtı ANTALYA 07190 Antalya Turkey
UN CPC code3144. Fibreboard of wood or other ligneous materials
Geographical scopeGlobal, Republic of Türkiye

Product images

Technical characteristics and performance

c-PCR-006: Wood and wood-based products for use in construction

Product nameDensityMoisture contentType categoryType categoryType categoryType categoryType categoryType categoryType categoryType categoryType category
Flooring800 kg/m³4-7%

Technical performance

Product nameSpecificationUnitTest StandardAC3AC4AC5Type categoryType categoryType categoryType categoryType category
Thickness Difference Between Elements, TmmTS EN 13329Average t < 0.50 mm; tmax − tmin < 0.50 mmAverage t < 0.50 mm; tmax − tmin < 0.50 mmAverage t < 0.50 mm; tmax − tmin < 0.50 mm
Resistance To AbrasionCyclesTS EN 438-7≥ 2,000≥ 4,000≥ 6,000
Squareness of The Element, QmmTS EN 13329qmax ≤ 0.20 mmqmax ≤ 0.20 mmqmax ≤ 0.20 mm
Length of Surface Panel, LmmTS EN 13329l ≤ 1,500 mm: length difference ≤ 0.50 mm; l > 1,500 mm: length difference ≤ 0.30 mml ≤ 1,500 mm: length difference ≤ 0.50 mm; l > 1,500 mm: length difference ≤ 0.30 mml ≤ 1,500 mm: length difference ≤ 0.50 mm; l > 1,500 mm: length difference ≤ 0.30 mm
Width of Surface Panel, WmmTS EN 13329Average width deviation ≤ 0.10 mm; wmax − wmin ≤ 0.20 mmAverage width deviation ≤ 0.10 mm; wmax − wmin ≤ 0.20 mmAverage width deviation ≤ 0.10 mm; wmax − wmin ≤ 0.20 mm
Straightness Deviation, SmmTS EN 13329smax ≤ 0.30 mmsmax ≤ 0.30 mmsmax ≤ 0.30 mm
Element Flatness%TS EN 13329fw concave ≤ 0.15%; fw convex ≤ 0.20%; fl concave ≤ 0.50%; fl convex ≤ 1.00%fw concave ≤ 0.15%; fw convex ≤ 0.20%; fl concave ≤ 0.50%; fl convex ≤ 1.00%fw concave ≤ 0.15%; fw convex ≤ 0.20%; fl concave ≤ 0.50%; fl convex ≤ 1.00%
Gap Between The Elements, OmmTS EN 13329oaverage ≤ 0.15 mm; omax ≤ 0.20 mmoaverage ≤ 0.15 mm; omax ≤ 0.20 mmoaverage ≤ 0.15 mm; omax ≤ 0.20 mm
Height Difference Between The Elements, HmmTS EN 13329haverage ≤ 0.10 mm; hmax ≤ 0.15 mmhaverage ≤ 0.10 mm; hmax ≤ 0.15 mmhaverage ≤ 0.10 mm; hmax ≤ 0.15 mm
Surface SoundnessN/mm²TS EN 13329≥ 1.00≥ 1.25≥ 1.25
Resistance to ScratchingNTS EN 438-7> 3.5> 3.5> 3.5
Micro-Scratch ResistanceLevelTS EN 16094Level 1Level 1Level 1
Castor Chair TestCyclesTS EN 42525,000 cycles; no change25,000 cycles; no change25,000 cycles; no change
Furniture Leg TestVisualTS EN ISO 16581No visible damageNo visible damageNo visible damage
Resistance to Hot ObjectsClassTS EN 13329Class 4Class 4Class 4
Resistance to Water VapourClassTS EN 13329Class 4Class 4Class 4
Resistance to StainingClassTS EN 13329Class 5Class 5Class 5
Impact Resistance – Small Ball TestmmTS EN 13329≥ 10≥ 35≥ 70
Impact Resistance – Large Ball TestmmTS EN 13329≥ 500≥ 750≥ 1000
Thickness Swelling after 24 h Water Immersion%TS EN 13329< 18< 18< 15

Content declaration

Content declaration of multiple productsThe content declaration is based on the representative product selected for this EPD, AGT Flooring with a nominal thickness of 8 mm.
Hazardous and toxic substancesThe product does not contain any substances from the SVHC candidate list in concentrations exceeding 0.1% of its weight.
Product content
Content nameMass, kgPost-consumer recycled material, mass-% of productBiogenic material, mass-% of productBiogenic material1, kg C/declared unit
High density fiberboard7.22037.22.74
Other0.14000
Total7.36037.22.74
Note 11 kg biogenic carbon is equivalent to 44/12 kg of CO2
Packaging materials
Material nameMass, kgMass-% (versus the product)Biogenic material1, kg C/declared unit
Corrugated board box0.1091.50.046
Paper0.00660.10.0026
Euro Pallet0.005730.10.0022
Packaging Film0.0210.30
Total0.1423320.0508
Note 11 kg biogenic carbon is equivalent to 44/12 kg of CO2

LCA information

EPD based on declared or functional unitDeclared unit
Declared unit and reference flowAGT Flooring Area: 1 m2
Conversion factor to mass0.13587
Are infrastructure or capital goods included in any upstream, core or downstream processes?
Datasources used for this EPDecoinvent database (general) ecoinvent 3.11 database
LCA SoftwareSimaPro 10.2
Version of the EN 15804 reference packageEF Reference Package 3.1
Characterisation methodsCharacterisation factors according to EN 15804:2012+A2:2019 and the Environmental Footprint (EF 3.1) method, based on ISO 14040 and ISO 14044.
Technology description including background systemAGT Ağaç flooring products are manufactured at the Antalya/Döşemealtı Plant as multi-layer laminate flooring products based on HDF boards. The product structure mainly consists of an HDF core board together with surface, decorative and balancing layers. The HDF used as the main substrate for AGT Flooring products is produced internally by AGT Ağaç at the same production site and is therefore representative of the company’s flooring product system. The flooring production process starts with board feeding and continues with sizing and cutting operations, including length sizing and cross cutting. The boards are then processed through longitudinal milling and edge painting, followed by end milling and edge painting, to obtain the required plank geometry and edge/profile properties. After quality control, conforming products are boxed, shrink wrapped and finally packaged for storage and shipment. The background system includes the production of the HDF substrate, surface and decorative layers, auxiliary materials, electricity consumption, packaging materials and waste management processes considered in the LCA model.
Scrap (recycled material) inputs contribution levelLess than 10% of the GWP-GHG results in modules A1-A3 come from scrap inputs

Data quality assessment

Description of data quality assessment and reference yearsThe EPD is based on data collected by AGT Ağaç from one production site over a one-year period starting from January 2024. The EPD type is a single product EPD for flooring products produced at AGT Ağaç’s Antalya/Döşemealtı Plant. The end-of-life stage of the EPD was modelled using a weighted average approach based on the product’s sales destinations and Eurostat data. AGT Ağaç uses the same production technology for all flooring products covered by this EPD. HDF material constitutes the main material input for flooring production. The HDF used in AGT Flooring products is also produced by AGT Ağaç at the same Antalya/Döşemealtı production site, which improves the technological and geographical representativeness of the primary data. The relevant production processes are representative of AGT Ağaç’s flooring product range. The EPD uses background data from the Ecoinvent 3.11 database, 2024, together with EPD data for the specific primary input materials used. The quality of the relevant data used for the EPD, in terms of time, geographical, and technological representativeness, was assessed in accordance with EN 15804:2012+A2:2019, Annex E, Table E.2. The data quality was found to be mostly good and very good. No poor or very poor data were identified among the relevant data assessed.
Data quality assessment
Process nameSource typeSourceReference yearData categoryShare of primary data, of GWP-GHG results for A1-A3
Manufacturing of the productCollected dataEPD owner2024Primary data5.3%
Transport of raw materials to manufacturing siteCollected dataEPD owner2024Primary data11.1%
Production of raw material Collected data & Database EPD owner & Ecoinvent v3.11 2019-2024Primary data & Secondary data80%
Other processesDatabaseEcoinvent v3.11 2019-2024Secondary data0%
Total share of primary data, of GWP-GHG results for A1-A396.4%
The share of primary data is calculated based on GWP-GHG results. It is a simplified indicator for data quality that supports the use of more primary data to increase the representativeness of and comparability between EPDs. Note that the indicator does not capture all relevant aspects of data quality and is not comparable across product categories.
Electricity data
Electricity used in the manufacturing process in A3 (A5 for services)
Type of electricity mixResidual electricity mix on the market
Energy sourcesHydro0%
Wind0%
Solar0%
Biomass0%
Geothermal0%
Waste0%
Nuclear0%
Natural gas35%
Coal65%
Oil0%
Peat0%
Other0%
GWP-GHG intensity (kg CO2 eq./kWh)0.91 kg CO2 eq./kWh

System boundary

Description of the system boundaryb) Cradle to gate with options, modules C1-C4, module D and with optional modules (A1-A3 + C + D and additional modules).
Excluded modulesYes, there is an excluded module, or there are excluded modules
Justification for the omission of modulesThe use stage modules B1–B7 are not included, as they are not applicable to the assessed product.

Declared modules

Product stageConstruction process stageUse stageEnd of life stageBeyond product life cycle
Raw material supplyTransportManufacturingTransport to siteConstruction installationUseMaintenanceRepairReplacementRefurbishmentOperational energy useOperational water useDe-construction demolitionTransportWaste processingDisposalReuse-Recovery-Recycling-potential
ModuleA1A2A3A4A5B1B2B3B4B5B6B7C1C2C3C4D
Modules declaredXXXXXNDNDNDNDNDNDNDXXXXX
GeographyGlobalGlobalRepublic of TürkiyeGlobalGlobalN/AN/AN/AN/AN/AN/AN/AGlobalGlobalGlobalGlobalGlobal
Share of specific data96.4%--------------
Variation - products91%--------------
Variation - sites0%--------------
DisclaimerThe share of specific/primary data and both variations (products and sites) refer to GWP-GHG results only.

Process flow diagram(s) related images

Default scenario

Name of the default scenarioDefault Scenario
Description of the default scenarioIn this scenario, the distribution of waste treatment methods was calculated using weighted averages based on the products’ actual sales locations and the corresponding Eurostat waste treatment data for each location.

Module A4: Transport to the building site

Explanatory name of the default scenario in module A4Default Module A4
Brief description of the default scenario in module A4Road and sea transport of the product to actual sales destinations.
Description of the default scenario in module A4In Module A4, the transportation of AGT Ağaç Sanayi flooring products from the production site to the relevant sales destinations/building sites is assessed. The products are distributed to various locations, including Türkiye, Europe, America and Africa, using road and sea transportation. The environmental impacts associated with these transportation processes are calculated within this module.
Module A4 informationValueUnit
Distance
2050
km
Capacity utilization (including empty returns)
1
N/A
Bulk density of transported products
920
kg/m3
Volume capacity utilization factor
(factor: =1 or <1 or ≥1 for compressed or
nested packaged products)
1
N/A

Module A5: Installation in the building

Explanatory name of the default scenario in module A5Default Module A5
Brief description of the default scenario in module A5Packaging end-of-life only; no installation impact is considered.
Description of the default scenario in module A5Module A5 covers only the end-of-life treatment of packaging materials associated with the delivered products. No additional installation processes or installation-related environmental impacts are considered in this scenario.

Module C: End-of-life

Explanatory name of the default scenario in module CDefault C Module
Brief description of the default scenario in module C57% Incineration 25% Recycling 18% Landfill
Description of the default scenario in module CAccording to the default values in Table 4 of PCR 2019:14 v2.0.1, it is assumed: Demolition/construction of wood, 1.1 kWh diesel/tonne. According to the default values in Table 4 of PCR 2019:14 v2.0.1, it is assumed: Transport 80 km for not to be incinerated products and 130 km for incinerated products. 16-32 tonne lorry (EURO 5), 50% load factor. Based on Eurostat country specific data 57% of the product waste is incinerated, 25% of the product waste is recycled and, 18% of the product waste is landfilled. According to the default values in Table 4 of PCR 2019:14 v2.0.1, it is assumed: Chopping of wood, 6 kWh diesel/tonne has been modeled.
Module C informationValueUnit
Demolition/deconstruction of wood, diesel0.0081
kWh
Transport (for products/materials not to be incinerated), 80 km, 16-32 tonne lorry (EURO 5), 50% load factor160
km
Transport (for products/materials to be incinerated), 130 km, 16-32 tonne lorry (EURO 5), 50% load factor260
km
Chipping of wood, diesel0.0106
kWh

Reference service life

Description of the default scenario in reference service lifeReference service life (RSL) is 20 years provided that it complies with the conditions of use. RSL depends on application area and usage.
Reference service life informationValueUnit
Reference service life
20
year(s)

Module D: Beyond product life cycle

Explanatory name of the default scenario in module DDefault module D
Brief description of the default scenario in module DBenefit beyond system boundary
Description of the default scenario in module DFor the share of product waste directed to incineration, credits from energy recovery were included in the model. Energy recovery was assumed to occur with an efficiency of 60%, considering the generation of electricity and heat. For the share directed to recycling, material recovery credits were modelled accordingly.

Additional scenario 1

Name of the additional scenario100% recycling
Description of the additional scenario100% recycling without landfill

Module A4: Transport to the building site

Description of the additional scenario in module A4Same as Default Module A4

Module A5: Installation in the building

Description of the additional scenario in module A5Same as Default Module A5

Module C: End-of-life

Description of the additional scenario in module CThe scenario was modelled assuming that 100% of the product is recycled at the end-of-life stage.
Module C informationValueUnit
Demolition/deconstruction of wood, diesel0.0081
kWh
Transport (for products/materials not to be incinerated), 80 km, 16-32 tonne lorry (EURO 5), 50% load factor160
km
Chipping of wood, diesel0.044
kWh

Reference service life

Description of the additional scenario in reference service lifeReference service life (RSL) is 20 years provided that it complies with the conditions of use. RSL depends on application area and usage.
Reference service life informationValueUnit
Reference service life
20
year(s)

Module D: Beyond product life cycle

Description of the additional scenario in module DAs 100% of the product is assumed to be recycled at the end-of-life stage, the potential benefits reported in Module D were calculated based on the total product mass directed to recycling.

Additional scenario 2

Name of the additional scenario100% landfill
Description of the additional scenario100% landfill without recycling or recovering

Module A4: Transport to the building site

Description of the additional scenario in module A4Same as Default Module A4

Module A5: Installation in the building

Description of the additional scenario in module A5Default Module A5

Module C: End-of-life

Description of the additional scenario in module CThe scenario was modelled assuming that 100% of the product is landfilled at the end-of-life stage.
Module C informationValueUnit
Demolition/deconstruction of wood, diesel0.0081
kWh
Transport (for products/materials not to be incinerated), 80 km, 16-32 tonne lorry (EURO 5), 50% load factor160
km

Reference service life

Description of the additional scenario in reference service lifeReference service life (RSL) is 20 years provided that it complies with the conditions of use. RSL depends on application area and usage.
Reference service life informationValueUnit
Reference service life
20
year(s)

Module D: Beyond product life cycle

Description of the additional scenario in module DSince all waste is assumed to be landfilled, no benefit is considered.

Environmental performance

The estimated impact results are only relative statements, which do not indicate the endpoints of the impact categories, exceeding threshold values, safety margins and/or risks.

Mandatory environmental performance indicators according to EN 15804

Impact categoryIndicatorUnitA1-A3A4A5B1B2B3B4B5B6B7C1C2C3C4D
Climate change - totalGWP-totalkg CO2 eq.-3.78E+05.59E-13.57E-1NDNDNDNDNDNDND2.76E-32.59E-19.10E+04.43E+1-1.82E-1
Climate change - fossilGWP-fossilkg CO2 eq.6.41E+05.59E-14.38E-3NDNDNDNDNDNDND2.76E-32.59E-18.25E-27.03E-2-1.81E-1
Climate change - biogenicGWP-biogenickg CO2 eq.-1.02E+13.41E-53.53E-1NDNDNDNDNDNDND1.38E-71.70E-59.01E+04.42E+1-2.76E-4
Climate change - land use and land-use changeGWP-luluckg CO2 eq.2.74E-22.66E-51.81E-6NDNDNDNDNDNDND1.14E-71.32E-59.43E-63.48E-5-9.58E-4
Ozone depletionODPkg CFC-11 eq.1.07E-76.76E-94.23E-11NDNDNDNDNDNDND4.20E-113.06E-91.04E-91.89E-9-1.93E-9
AcidificationAPmol H+ eq.3.26E-24.11E-32.66E-5NDNDNDNDNDNDND2.55E-57.31E-41.09E-35.08E-4-7.94E-4
Eutrophication aquatic freshwaterEP-freshwaterkg P eq.3.48E-43.29E-63.46E-8NDNDNDNDNDNDND2.60E-91.80E-66.11E-71.02E-6-1.65E-5
Eutrophication aquatic marineEP-marinekg N eq.7.22E-31.14E-36.06E-5NDNDNDNDNDNDND1.20E-52.53E-45.52E-42.63E-4-9.03E-5
Eutrophication terrestrialEP-terrestrialmol N eq.8.12E-21.27E-26.24E-5NDNDNDNDNDNDND1.32E-42.79E-35.86E-32.21E-3-1.00E-3
Photochemical ozone formationPOCPkg NMVOC eq.2.81E-23.92E-37.56E-5NDNDNDNDNDNDND3.93E-51.04E-31.44E-39.19E-4-3.86E-4
Depletion of abiotic resources - minerals and metalsADP-minerals&metals1kg Sb eq.1.44E-63.85E-83.53E-9NDNDNDNDNDNDND9.67E-112.12E-82.60E-81.55E-8-4.54E-9
Depletion of abiotic resources - fossil fuelsADP-fossil1MJ, net calorific value1.06E+27.15E+03.95E-2NDNDNDNDNDNDND3.61E-23.38E+06.94E-11.66E+0-2.31E+0
Water useWDP1m3 world eq. deprived4.02E+01.21E-2-2.19E-2NDNDNDNDNDNDND4.54E-56.31E-35.04E-2-1.17E+0-3.70E-2
AcronymsGWP-fossil = Global Warming Potential fossil fuels; GWP-biogenic = Global Warming Potential biogenic; GWP-luluc = Global Warming Potential land use and land use change; ODP = Depletion potential of the stratospheric ozone layer; AP = Acidification potential, Accumulated Exceedance; EP-freshwater = Eutrophication potential, fraction of nutrients reaching freshwater end compartment; EP-marine = Eutrophication potential, fraction of nutrients reaching marine end compartment; EP-terrestrial = Eutrophication potential, Accumulated Exceedance; POCP = Formation potential of tropospheric ozone; ADP-minerals&metals = Abiotic depletion potential for non-fossil resources; ADP-fossil = Abiotic depletion for fossil resources potential; WDP = Water (user) deprivation potential, deprivation-weighted water consumption
General disclaimerThe results of the end-of-life stage (modules C1-C4) should be considered when using the results of the product stage (modules A1-A3/A1-A5 for services).
Disclaimer 1The results of this environmental impact indicator shall be used with care as the uncertainties of these results are high or as there is limited experience with the indicator

Additional mandatory environmental performance indicators

Impact categoryIndicatorUnitA1-A3A4A5B1B2B3B4B5B6B7C1C2C3C4D
Climate change - GWP-GHGGWP-GHG1kg CO2 eq.6.46E+05.59E-11.69E-1NDNDNDNDNDNDND2.76E-32.59E-19.61E-24.23E+1-1.82E-1
AcronymsGWP-GHG = Global warming potential greenhouse gas.
General disclaimerThe results of the end-of-life stage (modules C1-C4) should be considered when using the results of the product stage (modules A1-A3/A1-A5 for services).
Disclaimer 1The GWP-GHG indicator is termed GWP-IOBC/GHG in the ILCD+EPD+ data format. The indicator accounts for all greenhouse gases except biogenic carbon dioxide uptake and emissions and biogenic carbon stored in the product. As such, the indicator is identical to GWP-total except that the CF for biogenic CO2 is set to zero.

Additional voluntary environmental performance indicators according to EN 15804

Impact categoryIndicatorUnitA1-A3A4A5B1B2B3B4B5B6B7C1C2C3C4D
Particulate matter emissionsPMDisease incidence4.12E-73.89E-82.91E-10NDNDNDNDNDNDND7.34E-101.65E-81.12E-81.19E-8-1.73E-9
Ionizing radiation - human healthIRP1kBq U235 eq.2.42E-25.53E-42.68E-5NDNDNDNDNDNDND7.00E-66.12E-41.62E-43.80E-43.23E-3
Eco-toxicity - freshwaterETP-fw2CTUe1.31E+16.69E-14.82E+0NDNDNDNDNDNDND1.03E-33.41E-17.60E-17.59E-1-2.56E-1
Human toxicity - cancer effectsHTP-c2CTUh1.58E-94.73E-112.27E-12NDNDNDNDNDNDND1.48E-131.85E-116.67E-11.23E-11-1.51E-11
Human toxicity - non-cancer effectsHTP-nc2CTUh3.87E-83.91E-95.07E-10NDNDNDNDNDNDND2.72E-121.66E-91.65E-101.33E-9-8.42E-10
Land-use related impacts/soil qualitySQP2Dimensionless1.03E+36.49E-28.02E-2NDNDNDNDNDNDND6.13E-53.56E-28.02E-54.00E+04.73E+1
AcronymsPM = Potential incidence of disease due to particulate matter emissions; IRP = Potential human exposure efficiency relative to U235; ETP-fw = Potential comparative toxic unit for ecosystems; HTP-c = Potential comparative toxic unit for humans; HTP-nc = Potential comparative toxic unit for humans; SQP = Potential soil quality index.
General disclaimerThe results of the end-of-life stage (modules C1-C4) should be considered when using the results of the product stage (modules A1-A3/A1-A5 for services).
Disclaimer 1This impact category deals mainly with the eventual impact of low dose ionizing radiation on human health of the nuclear fuel cycle. It does not consider effects due to possible nuclear accidents, occupational exposure nor due to radioactive waste disposal in underground facilities. Potential ionizing radiation from the soil, from radon and from some construction materials is also not measured by this indicator.
Disclaimer 2The results of this environmental impact indicator shall be used with care as the uncertainties of these results are high or as there is limited experience with the indicator.

Resource use indicators according to EN 15804

IndicatorUnitA1-A3A4A5B1B2B3B4B5B6B7C1C2C3C4D
PEREMJ, net calorific value1.51E+21.43E-21.56E+0NDNDNDNDNDNDND7.86E-56.85E-34.44E+11.00E+17.33E+0
PERMMJ, net calorific value3.34E+10.00E+0-1.56E+0NDNDNDNDNDNDND0.00E+00.00E+0-4.44E+1-9.99E+00.00E+0
PERTMJ, net calorific value1.84E+21.43E-21.01E-3NDNDNDNDNDNDND7.86E-56.85E-37.74E-31.39E-27.33E+0
PENREMJ, net calorific value8.94E+17.15E+09.48E-1NDNDNDNDNDNDND3.61E-23.38E+04.91E+11.25E+1-2.30E+0
PENRMMJ, net calorific value1.68E+10.00E+0-9.08E-1NDNDNDNDNDNDND0.00E+00.00E+0-4.84E+1-1.09E+10.00E+0
PENRTMJ, net calorific value1.06E+27.15E+03.95E-2NDNDNDNDNDNDND3.61E-23.38E+06.94E-11.66E+0-2.30E+0
SMkg0.00E+00.00E+00.00E+0NDNDNDNDNDNDND0.00E+00.00E+00.00E+00.00E+00.00E+0
RSFMJ, net calorific value4.29E+10.00E+00.00E+0NDNDNDNDNDNDND0.00E+00.00E+00.00E+00.00E+00.00E+0
NRSFMJ, net calorific value0.00E+00.00E+00.00E+0NDNDNDNDNDNDND0.00E+00.00E+00.00E+00.00E+00.00E+0
FWm39.68E-22.88E-4-5.10E-4NDNDNDNDNDNDND1.09E-61.50E-41.43E-6-2.73E-2-1.03E-3
AcronymsPERE = Use of renewable primary energy excluding renewable primary energy resources used as raw materials; PERM = Use of renewable primary energy resources used as raw materials; PERT = Total use of renewable primary energy resources; PENRE = Use of non-renewable primary energy excluding non-renewable primary energy resources used as raw materials; PENRM = Use of non-renewable primary energy resources used as raw materials; PENRT = Total use of non-renewable primary energy re-sources; SM = Use of secondary material; RSF = Use of renewable secondary fuels; NRSF = Use of non-renewable secondary fuels; FW = Use of net fresh water.
General disclaimerThe results of the end-of-life stage (modules C1-C4) should be considered when using the results of the product stage (modules A1-A3/A1-A5 for services).

Waste indicators according to EN 15804

IndicatorUnitA1-A3A4A5B1B2B3B4B5B6B7C1C2C3C4D
HWDkg1.60E-20.00E+00.00E+0NDNDNDNDNDNDND0.00E+00.00E+00.00E+00.00E+00.00E+0
NHWDkg0.00E+00.00E+01.37E-1NDNDNDNDNDNDND0.00E+00.00E+00.00E+01.32E+00.00E+0
RWDkg0.00E+00.00E+00.00E+0NDNDNDNDNDNDND0.00E+00.00E+00.00E+00.00E+00.00E+0
AcronymsHWD = Hazardous waste disposed; NHWD = Non-hazardous waste disposed; RWD = Radioactive waste disposed.
General disclaimerThe results of the end-of-life stage (modules C1-C4) should be considered when using the results of the product stage (modules A1-A3/A1-A5 for services).

Output flow indicators according to EN 15804

IndicatorUnitA1-A3A4A5B1B2B3B4B5B6B7C1C2C3C4D
CRUkg0.00E+00.00E+00.00E+0NDNDNDNDNDNDND0.00E+00.00E+00.00E+00.00E+00.00E+0
MFRkg0.00E+00.00E+00.00E+0NDNDNDNDNDNDND0.00E+00.00E+01.84E+00.00E+00.00E+0
MERkg0.00E+00.00E+00.00E+0NDNDNDNDNDNDND0.00E+00.00E+00.00E+00.00E+00.00E+0
EEEMJ, net calorific value6.99E-10.00E+02.00E-2NDNDNDNDNDNDND0.00E+00.00E+08.71E+10.00E+00.00E+0
EETMJ, net calorific value2.58E+10.00E+03.00E-2NDNDNDNDNDNDND0.00E+00.00E+01.31E+20.00E+00.00E+0
AcronymsCRU = Components for re-use; MFR = Materials for recycling; MER = Materials for energy recovery; EEE = Exported electrical energy; EET = Exported thermal energy.
General disclaimerThe results of the end-of-life stage (modules C1-C4) should be considered when using the results of the product stage (modules A1-A3/A1-A5 for services).

GWP-GHG results of the “best-case product”

Best-case productAGT Flooring 7.5 mm
Description of the scenario/methodThe best-case scenario was defined based on the lowest thickness value in AGT’s Flooring product range, corresponding to 7.5 mm.
GWP-GHG results of the “best-case product”
Impact categoryIndicatorUnitA1-A3A4A5B1B2B3B4B5B6B7C1C2C3C4D
Climate change - GWP-GHGGWP-GHG1kg CO2 eq.5.83E+04.88E-11.69E-1NDNDNDNDNDNDND2.41E-32.26E-18.38E-23.69E+1-1.59E-1
AcronymsGWP-GHG = Global warming potential greenhouse gas.
General disclaimerThe results of the end-of-life stage (modules C1-C4) should be considered when using the results of the product stage (modules A1-A3/A1-A5 for services).
Disclaimer 1The GWP-GHG indicator is termed GWP-IOBC/GHG in the ILCD+EPD+ data format. The indicator accounts for all greenhouse gases except biogenic carbon dioxide uptake and emissions and biogenic carbon stored in the product. As such, the indicator is identical to GWP-total except that the CF for biogenic CO2 is set to zero.

GWP-GHG results of the “worst-case product”

Worst-case productAGT Flooring 12 mm
Description of the scenario/methodThe best-case scenario was defined based on the highest thickness value in AGT’s Flooring product range, corresponding to 12 mm.
GWP-GHG results of the “worst-case product”
Impact categoryIndicatorUnitA1-A3A4A5B1B2B3B4B5B6B7C1C2C3C4D
Climate change - GWP-GHGGWP-GHG1kg CO2 eq.9.45E+08.31E-11.69E-1NDNDNDNDNDNDND4.10E-33.85E-11.43E-16.28E+1-2.71E-1
AcronymsGWP-GHG = Global warming potential greenhouse gas.
General disclaimerThe results of the end-of-life stage (modules C1-C4) should be considered when using the results of the product stage (modules A1-A3/A1-A5 for services).
Disclaimer 1The GWP-GHG indicator is termed GWP-IOBC/GHG in the ILCD+EPD+ data format. The indicator accounts for all greenhouse gases except biogenic carbon dioxide uptake and emissions and biogenic carbon stored in the product. As such, the indicator is identical to GWP-total except that the CF for biogenic CO2 is set to zero.

Results for additional scenarios for modules A4-C4

Additional scenario100% recycling
Description of the scenario/methodAll other parameters were kept constant, and the scenario was assessed by considering that 100% of the product waste is directed to recycling.
Results for additional scenarios for modules A4-C4
Impact categoryIndicatorUnitA1-A3A4A5B1B2B3B4B5B6B7C1C2C3C4D
Climate change - totalGWP-totalkg CO2 eq.-3.78E+05.59E-13.57E-1NDNDNDNDNDNDND2.76E-31.91E-11.99E+10.00E+0-2.20E-1
Climate change - fossilGWP-fossilkg CO2 eq.6.41E+05.59E-14.38E-3NDNDNDNDNDNDND2.76E-31.91E-19.39E-20.00E+0-2.18E-1
Climate change - biogenicGWP-biogenickg CO2 eq.-1.02E+13.41E-53.53E-1NDNDNDNDNDNDND1.38E-71.25E-51.98E+10.00E+0-3.15E-4
Climate change - land use and land-use changeGWP-luluckg CO2 eq.2.74E-22.66E-51.81E-6NDNDNDNDNDNDND1.14E-79.73E-69.90E-60.00E+0-1.05E-3
Ozone depletionODPkg CFC-11 eq.1.07E-76.76E-94.23E-11NDNDNDNDNDNDND4.20E-112.26E-91.22E-90.00E+0-1.54E-9
AcidificationAPmol H+ eq.3.26E-24.11E-32.66E-5NDNDNDNDNDNDND2.55E-55.39E-41.20E-30.00E+0-1.15E-3
Eutrophication aquatic freshwaterEP-freshwaterkg P eq.3.48E-42.73E-53.46E-8NDNDNDNDNDNDND2.30E-81.33E-66.21E-70.00E+0-8.90E-6
Eutrophication aquatic marineEP-marinekg N eq.7.22E-31.15E-36.06E-5NDNDNDNDNDNDND1.20E-51.86E-46.02E-40.00E+0-2.94E-4
Eutrophication terrestrialEP-terrestrialmol N eq.8.12E-21.27E-26.24E-5NDNDNDNDNDNDND1.32E-42.05E-36.41E-30.00E+0-3.18E-3
Photochemical ozone formationPOCPkg NMVOC eq.2.81E-23.92E-37.56E-5NDNDNDNDNDNDND3.93E-57.67E-41.61E-30.00E+0-1.07E-3
Depletion of abiotic resources - minerals and metalsADP-minerals&metalskg Sb eq.1.44E-63.85E-83.53E-9NDNDNDNDNDNDND9.67E-111.56E-82.64E-80.00E+0-9.60E-9
Depletion of abiotic resources - fossil fuelsADP-fossil1MJ, net calorific value1.06E+27.15E+03.95E-2NDNDNDNDNDNDND3.61E-22.49E+08.44E-10.00E+0-2.79E+0
Water useWDP1m3 world eq. deprived4.02E+01.21E-2-2.19E-2NDNDNDNDNDNDND4.54E-54.65E-35.06E-20.00E+0-3.36E-2
Climate change - GWP-GHGGWP-GHGkg CO2 eq.6.46E+05.59E-11.69E-1NDNDNDNDNDNDND2.76E-31.91E-11.08E-10.00E+0-2.20E-1
Particulate matter emissionsPMDisease incidence4.12E-73.89E-82.91E-10NDNDNDNDNDNDND7.34E-101.22E-81.42E-80.00E+0-1.25E-8
Ionizing radiation - human healthIRP1kBq U235 eq.2.42E-21.29E-32.68E-5NDNDNDNDNDNDND7.00E-61.94E-41.69E-40.00E+0-6.90E-3
Eco-toxicity - freshwaterETP-fwCTUe1.31E+16.69E-14.82E+0NDNDNDNDNDNDND1.03E-32.51E-15.64E-30.00E+0-4.18E-1
Human toxicity - cancer effectsHTP-cCTUh1.58E-94.73E-112.27E-12NDNDNDNDNDNDND1.48E-131.36E-116.67E-10.00E+0-3.03E-11
Human toxicity - non-cancer effectsHTP-ncCTUh3.87E-83.91E-95.07E-10NDNDNDNDNDNDND2.72E-121.22E-91.76E-100.00E+0-9.65E-10
Land-use related impacts/soil qualitySQPDimensionless1.03E+36.49E-28.02E-2NDNDNDNDNDNDND6.13E-52.63E-23.34E-40.00E+0-1.98E+2
Acronyms
Disclaimers
General disclaimerThe results of the end-of-life stage (modules C1-C4) should be considered when using the results of the product stage (modules A1-A3/A1-A5 for services).

Results for additional scenarios for modules A4-C4

Additional scenario100% landfill
Description of the scenario/methodAll other parameters were kept constant, and the scenario was assessed by considering that 100% of the product waste is directed to landfill.
Results for additional scenarios for modules A4-C4
Impact categoryIndicatorUnitA1-A3A4A5B1B2B3B4B5B6B7C1C2C3C4D
Climate change - totalGWP-totalkg CO2 eq.-3.78E+05.59E-13.57E-1NDNDNDNDNDNDND2.76E-31.91E-10.00E+02.03E+10.00E+0
Climate change - fossilGWP-fossilkg CO2 eq.6.41E+05.59E-14.38E-3NDNDNDNDNDNDND2.76E-31.91E-10.00E+07.03E-20.00E+0
Climate change - biogenicGWP-biogenickg CO2 eq.-1.02E+13.41E-53.53E-1NDNDNDNDNDNDND1.38E-71.25E-50.00E+02.02E+10.00E+0
Climate change - land use and land-use changeGWP-luluckg CO2 eq.2.74E-22.66E-51.81E-6NDNDNDNDNDNDND1.14E-79.73E-60.00E+03.48E-50.00E+0
Ozone depletionODPkg CFC-11 eq.1.07E-76.76E-94.23E-11NDNDNDNDNDNDND4.20E-112.26E-90.00E+01.89E-90.00E+0
AcidificationAPmol H+ eq.3.26E-24.11E-32.66E-5NDNDNDNDNDNDND2.55E-55.39E-40.00E+05.08E-40.00E+0
Eutrophication aquatic freshwaterEP-freshwaterkg P eq.3.48E-42.73E-53.46E-8NDNDNDNDNDNDND2.30E-81.33E-60.00E+01.02E-60.00E+0
Eutrophication aquatic marineEP-marinekg N eq.7.22E-31.15E-36.06E-5NDNDNDNDNDNDND1.20E-51.86E-40.00E+02.63E-40.00E+0
Eutrophication terrestrialEP-terrestrialmol N eq.8.12E-21.27E-26.24E-5NDNDNDNDNDNDND1.32E-42.05E-30.00E+02.21E-30.00E+0
Photochemical ozone formationPOCPkg NMVOC eq.2.81E-23.92E-37.56E-5NDNDNDNDNDNDND3.93E-57.67E-40.00E+09.19E-40.00E+0
Depletion of abiotic resources - minerals and metalsADP-minerals&metalskg Sb eq.1.44E-63.85E-83.53E-9NDNDNDNDNDNDND9.67E-111.56E-80.00E+01.55E-80.00E+0
Depletion of abiotic resources - fossil fuelsADP-fossil1MJ, net calorific value1.06E+27.15E+03.95E-2NDNDNDNDNDNDND3.61E-22.49E+00.00E+01.66E+00.00E+0
Water useWDP1m3 world eq. deprived4.02E+01.21E-2-2.19E-2NDNDNDNDNDNDND4.54E-54.65E-30.00E+0-1.17E+00.00E+0
Climate change - GWP-GHGGWP-GHGkg CO2 eq.6.46E+05.59E-11.69E-1NDNDNDNDNDNDND2.76E-31.91E-10.00E+05.20E-10.00E+0
Particulate matter emissionsPMDisease incidence4.12E-73.89E-82.91E-10NDNDNDNDNDNDND7.34E-101.22E-80.00E+01.19E-80.00E+0
Ionizing radiation - human healthIRP1kBq U235 eq.2.42E-21.29E-32.68E-5NDNDNDNDNDNDND7.00E-61.94E-40.00E+03.80E-40.00E+0
Eco-toxicity - freshwaterETP-fwCTUe1.31E+16.69E-14.82E+0NDNDNDNDNDNDND1.03E-32.51E-17.59E-17.59E-10.00E+0
Human toxicity - cancer effectsHTP-cCTUh1.58E-94.73E-112.27E-12NDNDNDNDNDNDND1.48E-131.36E-110.00E+01.23E-110.00E+0
Human toxicity - non-cancer effectsHTP-ncCTUh3.87E-83.91E-95.07E-10NDNDNDNDNDNDND2.72E-121.22E-90.00E+01.33E-90.00E+0
Land-use related impacts/soil qualitySQPDimensionless1.03E+36.49E-28.02E-2NDNDNDNDNDNDND6.13E-52.63E-20.00E+04.00E+00.00E+0
Acronyms
Disclaimers
General disclaimerThe results of the end-of-life stage (modules C1-C4) should be considered when using the results of the product stage (modules A1-A3/A1-A5 for services).
Justification for why this is representativeThe product was selected as a representative for the EPD study due to its density being both commonly used within the product range and closely aligned with the average density of the overall product portfolio. This ensures that the results of the assessment accurately reflect typical product performance across the range.

Abbreviations

ADP Abiotic Depletion Potential

ADP-fossil Abiotic depletion potential for fossil resources (MJ)

ADP-minerals&metals Abiotic depletion potential for non-fossil resources (kg Sb eq.)

AP Acidification Potential (mol H eq.)

CAS No. Chemical Abstracts Service Number

CEN European Committee for Standardization

CFC-11 eq. Chlorofluorocarbon-11 Equivalents

CFR Components for Reuse (kg)

CLC Co-location centre

CO eq. Carbon Dioxide Equivalents

CPC Central product classification

EC No. European Community Number

EEE Exported Energy, Electricity (MJ)

EET Exported Energy, Thermal (MJ)

EF Environmental Footprint

EN European Norm (Standard)

EP Eutrophication Potential

EP-freshwater Freshwater eutrophication potential (kg P eq.)

EP-marine Marine eutrophication potential (kg N eq.)

EP-terrestrial Terrestrial eutrophication potential (mol N eq.)

FW Use of net fresh water (m³)

GHG Greenhouse gas

GHS Globally harmonized system of classification and labelling of chemicals

GLO Global

GPI General Programme Instructions

GRI Global Reporting Initiative

GWP Global Warming Potential (kg CO eq.)

GWP-biogenic Global Warming Potential from biogenic sources (kg CO eq.)

GWP-fossil Global Warming Potential from fossil sources (kg CO eq.)

GWP-GHG Global Warming Potential for greenhouse gases (kg CO eq.)

GWP-luluc Global Warming Potential from land use and land use change (kg CO eq.)

GWP-total Total Global Warming Potential (kg CO eq.)

HDF High density fiberboard

HW Hazardous Waste (disposed) (kg)

ISO International Organization for Standardization

kg Kilogram

kg C Kilograms of Carbon

kg CO eq. Kilograms of Carbon Dioxide Equivalent

m³ Cubic Meter

MDF Medium Density Fiberboard

MER Materials for Energy Recovery (kg)

MJ Megajoule

MR Material for Recycling (kg)

N eq. Nitrogen Equivalents

ND Not Declared

NHW Non-Hazardous Waste (disposed) (kg)

NMVOC Non-Methane Volatile Organic Compounds

NRSF Use of non-renewable secondary fuels (MJ)

ODP Ozone Depletion Potential (kg CFC-11 eq.)

P eq. Phosphorus Equivalents

PENRE Use of non-renewable primary energy excluding non-renewable primary energy resources used as raw materials (MJ)

PENRM Use of non-renewable primary energy resources used as raw materials (MJ)

PENRT Total use of non-renewable primary energy resources (MJ)

PERE Use of renewable primary energy excluding renewable primary energy resources used as raw materials (MJ)

PERM Use of renewable primary energy resources used as raw materials (MJ)

PERT Total use of renewable primary energy resources (MJ)

POCP Photochemical Ozone Creation Potential (kg NMVOC eq.)

RSF Use of renewable secondary fuels (MJ)

RW Radioactive Waste (disposed) (kg)

Sb eq. Antimony Equivalents

SM Use of secondary material (kg)

SVHC Substances of Very High Concern

TR Türkiye

WDP Water Deprivation Potential (m³)

References

Ecoinvent 3.11 / Ecoinvent Centre, www.ecoinvent.org

EN 15804:2012+A2:2019 / AC:2021 / Sustainability of construction works - Environmental Product Declarations - Core rules for the product category of construction products

EN 16485:2014 / Round and sawn timber - Environmental Product Declarations - Product category rules for wood and wood-based products for use in construction

GPI / General Programme Instructions for the International EPD® System. Version 5.0.1. www.environdec.com

ISO 14020:2000 / Environmental labels and declarations - General principles

ISO 14040/44 / DIN EN ISO 14040:2006-10 / Environmental management - Life cycle assessment - Principles and framework (ISO 14040:2006) and requirements and guidelines (ISO 14044:2006)

ISO 14025 / DIN EN ISO 14025:2009-11 / Environmental labels and declarations - Type III environmental declarations - Principles and procedures

ISO 50001:2018 / Energy management systems - Requirements with guidance for use

ISO 9001:2015 / Quality management systems - Requirements

PCR for Construction Products and Construction Services / PCR 2019:14 Construction products (EN 15804:A2). Version 2.0.1. www.environdec.com

c-PCR for Wood and Wood-Based Products / PCR 2019:14-c-PCR-006 Being updated - Wood and wood-based products for use in construction (EN 16485). Version 1.0.0. www.environdec.com

The International EPD® System / The International EPD® System is a programme for Type III environmental declarations, maintaining a system to verify and register EPDs as well as keeping a library of EPDs and PCRs in accordance with ISO 14025. www.environdec.com

SimaPro 10.2 / SimaPro LCA Software, PRé Sustainability, the Netherlands, www.pre-sustainability.com

AGT Ağaç / www.agtwood.com

Metsims / www.metsims.com

Version history

Version 001, 2026-08-10

Original version of the EPD