Environmental Product Declaration Explained
An Environmental Product Declaration (EPD) is a Type III environmental declaration that quantifies environmental information about the life cycle of a product. This can enable comparisons between products fulfilling the same function.[1] The methodology to produce an EPD is based on product life cycle assessment (LCA),[2] following the ISO 14040 series of standards.[3] [4] [5]
Companies may produce EPDs in order to understand the environmental impact of their products or services, differentiate their products on the market and demonstrate a commitment to limiting environmental impacts. EPDs are a transparency tool and do not certify whether a product can be considered environmentally friendly or not. They are primarily intended to facilitate business-to-business transactions, although may also benefit environmentally motivated retail consumers when choosing goods or services.[6]
Content
The content of an EPD will vary according to the product category and methodology used. Most EPDs summarize environmental information on the product alongside information about the company and production methods. The text and illustrations are designed to be easily understood and the environmental impact information desired by most EPD users can be found in one or two tables. Some manufacturers choose to include information about innovative production processes, using the EPD as a marketing tool. For example, a 38 page EPD for a pasta product contains sections on the brand and product, environmental performance calculations, information on sustainable wheat cultivation, milling, packaging production, pasta production, distribution, cooking, packaging end-of-life, and summary tables for environmental results in different markets.[7]
The input data and LCA calculations are included in a background report, which are not typically published.
Access
EPDs are available directly from manufacturers or hosted on EPD databases, which are typically owned by the programme operators through which EPDs are produced, verified and published. The usefulness of data stored within an EPD is proportional to how easily it can be accessed and analysed, however, database owners have been slow to modernise platforms and most require users to download individual PDFs in order to view and compare the data.[8]
Progress has been made to improve the design of EPDs for machine-readability and indexing purposes through the ILCD+EPD[9] and openEPD[10] formats. openEPD has been designed in a way that EPD data can be accessed via an API, promoting the integration of product-specific data into industrial design and stock inventory software.[11]
Framework for creating an EPD
The first step in creating an EPD is defining the product, using the appropriate Product Category Rules (PCR). A Life Cycle Inventory (LCI) for the LCA must be verified and from reliable sources (for example, from a manufacturing facility). A Life Cycle Environmental Impact Analysis (LCIA) is performed by an LCA expert using software and a variety of assessment tools.[12] The EPD is delivered as a document or report following a series of verification reviews; it is then ready for registration and publication.[13] [14]
Product category rules
PCRs are specific rules and requirements that set out how the LCA of a product should be carried out and the results disclosed. They provide guidance that, in theory, enables fair comparison among products of the same category.[15]
Criteria contained in a PCR includes: a description of the product category, the goal of the LCA, functional units, system boundaries, cut-off criteria, allocation rules, environmental impact categories, information on the product's use phase, required units, LCA calculation procedures, requirements for data quality assessment, and other relevant information.[16] The goal of PCRs is to help develop EPDs for products that are comparable to others within a product category. ISO 14025 establishes the procedure for developing PCRs and the required content of a PCR, as well as requirements for comparability.
Challenges
LCA studies can vary in terms of assumptions and methodological choices made during the LCA and consequently, the results for products that fulfil the same function may not be consistent with one another.[17] [18] [19]
- Duplication of PCRs for similar product categories in different regions.[20] PCRs developed in under the European Committee for Standardization framework may differ from PCRs developed under ISO framework, reducing the comparability of EPDs for like-products from different regions. This may also increase administrative burden for manufacturers operating in multiple regions, which may be required to produce EPDs using different PCRs to align with heterogenous reporting requirements.
- Interpretation of the rules and requirements in PCRs can lead to variances in methodological choices and data reporting within an LCA, even where the same PCR is used. If the choices made are justifiable, this may not be flagged during the verification process.
- Secondary databases can offer significantly different emission values for the same process, activity or input (e.g., the embodied emissions of 1 metric tonne of coking coal). PCRs permit the use of secondary data for emission flows out of the control of the manufacturer creating the EPD (e.g., emissions from the upstream supply chain), and LCA practitioners have the choice of several, commercially operated databases. This variance decreases comparability of data in EPDs.
- Lack of rigorous third-party review: Inconsistency in the interpretation of the PCRs means that various accounting practices can be reasonably justified within in EPDs for similar products,[21] leading to different outcomes that are not comparable.
- Financial Constraints: Carrying out a detailed LCA and publishing an EPD can be cost-intensive.[22] [23]
Construction sector
EN 15804 |
Long Name: | Sustainability of construction works - Environmental product declarations - Core rules for the product category of construction products |
Organization: | CEN |
Committee: | CEN/TC 350 - Sustainability of construction works |
Domain: | Core product category rules (PCR) for Type III environmental declarations for any construction product and construction service. |
Website: | https://standards.cencenelec.eu/dyn/www/f?p=205:110:0::::FSP_PROJECT:74037&cs=1DB6B38866B73011ED991761FF1B811AC |
The European Committee for Standardization (CEN) standard, EN 15804:2012+A2:2019/AC:2021,[24] is a common PCR for construction materials. Other complementary standards, for example for environmental building assessment (EN 15978) are also published by the same Technical Committee.
In order to enhance harmonization, the main Programme Operators for EPD verification in the construction sector created ECO Platform, with members from various European countries. The Programme Operators approved to issue EPDs with the ECO Platform verified logo[25] are:
- Asociación Española de Normalización y Certificación (AENOR) - GlobalEPD Program (Spain)
- Bau EPD GmbH (Austria)
- EPD International AB - International EPD System (Sweden)
- Institut Bauen und Umwelt e.V. (IBU) (Germany)
- Building Research Establishment Limited (BRE) (United Kingdom)
- EPD Danmark (Danmark)
- Instytut Techniki Budowlanej (Poland)
- Association HQE tio - FDES INIES (France)
- ICMQ S.p.a. - EPDItaly (Italy)
- DAPHabitat - DAPHabitat System (Portugal)
- EPD Ireland (The Irish Green Building Council)
The ECO Platform also includes the following trade associations:
- Construction Products Europe
- Ceramie Unie ASBL
- Eurima AiSBL
Some Programme Operators are under bilateral mutual recognition agreements, including[26] IBU (Germany), EPD International (Sweden) and AENOR GlobalEPD (Spain).
The following programme operators are based in North America and Asia,[27] and typically develop PCRs based on ISO 21930:2017.[28]
ISO 21930 |
Long Name: | Sustainability in buildings and civil engineering works — Core rules for environmental product declarations of construction products and services |
Status: | Published |
Organization: | ISO |
Committee: | ISO/TC 59/SC 17 |
Base Standards: | ISO 14025, ISO 14040, ISO 14044 |
Domain: | Environmental impact of construction works |
Website: | https://www.iso.org/standard/61694.html |
North America
- SmartEPD (U.S. and Global)[29]
- FP Innovations - EPD Program on Wood Products (Canada)[30]
- NSF International (U.S.)[31]
- The Sustainability Consortium (U.S.)[32]
- UL Environment (U.S.)[33]
- ASTM International (U.S.)[34]
- ICC Evaluation Services (U.S.)[35]
- National Ready Mixed Concrete Association (U.S.)[36]
- SCS Global Services (U.S.)[37]
Asia
- Japan Environmental Management Association for Industry (Japan)[38]
- Korean Environmental Industry & Technology Institute (Korea)[39]
- Environment and Development Foundation (Taiwan)[40]
See also
External links
Notes and References
- Web site: Environmental labels and declarations - Type III environmental declarations - Principles and procedures. 15 April 2019.
- Book: Life Cycle Assessment: quantitative approaches for Decisions that Matter. Matthews. H. Scott. Hendrickson. Chris T.. Deanna H.. Matthews. Creative Commons Attribution-ShareAlike. 2015. 88–95. 4.
- Del Borghi. Adriana. 2012-10-10. LCA and communication: Environmental Product Declaration. The International Journal of Life Cycle Assessment. 18. 2. 293–295. 10.1007/s11367-012-0513-9. 0948-3349. free.
- Manzini. Raffaella. Noci. Giuliano. Ostinelli. Massimiliano. Pizzurno. Emanuele. 2006. Assessing environmental product declaration opportunities: a reference framework. Business Strategy and the Environment. 15. 2. 118–134. 10.1002/bse.453. 0964-4733.
- Minkov. Nikolay. Schneider. Laura. Lehmann. Annekatrin. Finkbeiner. Matthias. May 2015. Type III Environmental Declaration Programmes and harmonisation of product category rules: status quo and practical challenges. Journal of Cleaner Production. 94. 235–246. 10.1016/j.jclepro.2015.02.012. 2015JCPro..94..235M . 0959-6526.
- Allander. A. July 2001. Successful Certification of an Environmental Product Declaration for an ABB Product. Corporate Environmental Strategy. 8. 2. 133–141. 10.1016/s1066-7938(01)00094-x. 2001CorES...8..133A. 1066-7938.
- Barilla. 26 Sep 2013. Durum wheat semolina pasta in paperboard box: Environmental Product Declaration. Revision 8 of 7 November 2019.
- Web site: International EPD System .
- Web site: About EPD - Eco Platform en . 2024-05-23 . www.eco-platform.org.
- Web site: openEPD: Home - An Open Format for the world's Digital EPDs . 2024-05-23 . openEPD . en-US.
- Web site: openEPD: Home - An Open Format for the world's Digital EPDs . 2024-05-23 . openEPD . en-US.
- Web site: Life Cycle Metrics for Chemical Products. WBSCD. 29 September 2014. 14 April 2019.
- Stahel. Walter R.. 24 March 2016. Circular Economy. Nature. 531. 2016. 435–8. 10.1038/531435a. 27008952. 2016Natur.531..435S. . free.
- Web site: 2021-04-19 . How to get an EPD . 2022-07-06 . Building Transparency . en.
- Ingwersen . Wesley W. . Stevenson . Martha J. . 2012 . Can we compare the environmental performance of this product to that one? An update on the development of product category rules and future challenges toward alignment . Journal of Cleaner Production . 24 . 102–108 . 10.1016/j.jclepro.2011.10.040 . 2012JCPro..24..102I . 0959-6526.
- Almeida. Marisa Isabel. Dias. Ana Cláudia. Demertzi. Martha. Arroja. Luís. 2015. Contribution to the Development of Product Category Rules for Ceramic Bricks. Journal of Cleaner Production. 92. 206–215. 10.1016/j.jclepro.2014.12.073. 2015JCPro..92..206A . Elsevier ScienceDirect. 10773/16706. free.
- Teehan . Paul . Kandlikar . Milind . 2012-03-20 . Sources of Variation in Life Cycle Assessments of Desktop Computers . Journal of Industrial Ecology . 16 . S182–S194 . 10.1111/j.1530-9290.2011.00431.x . 1088-1980 . free.
- Säynäjoki . Antti . Heinonen . Jukka . Junnila . Seppo . Horvath . Arpad . 2017-01-05 . Can life-cycle assessment produce reliable policy guidelines in the building sector? . Environmental Research Letters . 12 . 1 . 013001 . 2017ERL....12a3001S . 10.1088/1748-9326/aa54ee . 1748-9326 . free.
- Web site: Industrial Deep Decarbonisation Initiative . 5 December 2023 . Driving consistency in the greenhouse gas accounting system: A pathway to harmonized standards for steel, cement, and concrete . 2024-05-23 . Industrial Decarbonization Accelerator . en-US.
- Subramanian . Vairavan . Ingwersen . Wesley . Hensler . Connie . Collie . Heather . 2012-04-20 . Comparing product category rules from different programs: learned outcomes towards global alignment . The International Journal of Life Cycle Assessment . 17 . 7 . 892–903 . 10.1007/s11367-012-0419-6 . 2012IJLCA..17..892S . 0948-3349.
- Sébastien Lasvaux, Yann Leroy, Capucine Briquet, Jacques Chevalier. International Survey on Critical Review and Verification Practices in LCA with a Focus in the Construction Sector. 6th International Conference on Life Cycle Management - LCM 2013, Aug 2013, Gothenburg, Sweden. hal-01790869
- Fet, A. M., & Skaar, C. (2006). Eco-labelling, Product Category Rules and Certification Procedures Based on ISO 14025 Requirements (6 pp). The International Journal of Life Cycle Assessment, 11(1), 49–54. doi:10.1065/lca2006.01.237
- Tasaki, T., Shobatake, K., Nakajima, K., & Dalhammar, C. (2017). International Survey of the Costs of Assessment for Environmental Product Declarations. Procedia CIRP, 61, 727– 731.doi:10.1016/j.procir.2016.11.158
- Web site: CEN . EN 15804:2012+A2:2019/AC:2021 . 2024-05-24 . standards.cencenelec.eu.
- Web site: Programme Operators in ECO Platform. ECO Platform.
- Web site: Bilateral agreements and international recognitions . . https://web.archive.org/web/20160304064656/http://www.en.aenor.es/aenor/certificacion/mambiente/globalepd_reconocimientos.asp . 4 March 2016.
- Hunsager. Einar Aalen. Bach. Martin. Breuer. Lutz. 2014. An institutional analysis of EPD programs and a globaal PCR registry. The International Journal of Life Cycle Assessment. 19. 4. 786–795. 10.1007/s11367-014-0711-8. 2014IJLCA..19..786H . 1614-7502.
- Web site: ISO 21930:2017 . subscription . 2024-05-23 . International Organization for Standardization . en.
- Web site: Smart EPD.
- Web site: FP Innovations EPD Programs. 21 April 2019. https://web.archive.org/web/20190327190734/https://fpinnovations.ca/ResearchProgram/environment-sustainability/epd-program/Pages/default.aspx. 27 March 2019.
- Web site: NSF International EPD Programs.
- Web site: The Sustainability Consortium.
- Web site: UL Environment EPD.
- Web site: ASTM Internation EPD.
- Web site: ICC Evaluation Services EPD.
- Web site: NRMCA EPD Program.
- Web site: SGS Global Services EPD.
- Web site: JEMAI CPF Program.
- Web site: Korean Environmental Industry & Technology Institute.
- Web site: Environment and Development Foundation.