Facteur d'émission publié dans MRPI EPD, spécifique au produit
Walraven Bifix® 300 Clamp Stainless M8 25-28mm
Monde · Du berceau à la tombe, intrinsèque · Année de référence 2025
Valeur par unité, sur les modules que déclare l'EPD
0,622kgCO₂e/unité
Modules EN 15804 A1 à A5 · Fossile uniquement · PRG100 · AR5
Calculée par open-climate.ai : la somme des parties publiées par MRPI
Le seul scénario que déclare cette EPDAnnée de référence 2025
- Région
- Monde GLOBAL
- Périmètre
- Du berceau à la tombe, intrinsèque
- Qualité des données
- ÉlevéeNoté par nous, pas par la source
- Licence
- Ouverte · Conditions de MRPI
- Déclarant
- J. van Walraven Holding B.V.
Le détail de 0,622
- A1-A3 Étape de productionScope 3, cat. 10,5994,9 %
- Scope 3, cat. 40,0007490,1 %
- A5 PoseScope 3, cat. 10,02824,5 %
- Fin de vieCalculée par open-climate.aiScope 3, cat. 50,002960,5 %
- Hors scopes−0,0293à côté
Σ 0,622 : les quatre modules déclarés redonnent le total. D figure à côté, hors total.
Comptabiliser cet article selon le GHG Protocol
Sur cette période
Scope 3, catégorie 1 0,618 Scope 3, catégorie 4 0,000749
Vous achetez le produit pour un bâtiment qui n'est pas le vôtre. Le produit et sa mise en œuvre relèvent de la catégorie 1, la livraison de la catégorie 4. L'étape d'utilisation revient au propriétaire du bâtiment ; les déchets de démolition que vous prenez en charge relèvent de la catégorie 5.
Plus tard, le moment venu
En fin de vie, l'année de la démolition
- Fin de vie Scope 3, catégorie 5 0,00296
Hors scopes, à déclarer à part
- D −0,0293
Les modules B1 à B7 et C1 à C4 ne sont pas déclarés : rien à comptabiliser.
Le facteur, standardisé
Sur open-climate.ai, chaque facteur répond aux mêmes questions, dans les mêmes termes, quel que soit l'éditeur. Ouvrez un ⓘ pour lire la définition.
Matériaux › Métaux · Monde · par pièce · Spécifique au fournisseur
Du berceau à la tombe, intrinsèque · Fossile uniquement · AR5
- PérimètreDu berceau à la tombe, intrinsèqueL'ensemble du cycle de vie SAUF l'étape d'utilisation : cradle_to_gate plus la distribution jusqu'au chantier, l'installation et la fin de vie (EN 15804 A1-A3 + A4 + A5 + C1-C4). En savoir plus
- Du berceau à la tombe, intrinsèque
- Matières premières, transport amont, approvisionnement en combustible, combustion, fabrication, emballage, énergie achetée, installation, transport aval et fin de vie
- Méthode PRGLe rapport d'évaluation du GIEC dont les potentiels de réchauffement convertissent chaque gaz en CO₂e, et la durée sur laquelle le réchauffement est compté (PRG100 : 100 ans). En savoir plus
- GIEC AR5, horizon de 100 ans
- Absente de la fiche ; fixée d'après les notes de méthode publiées par MRPI · méthode d'impact EF 3.0
- Base CO₂eLe carbone que compte le CO₂e. Fossile uniquement exclut le CO₂ biogénique et l'usage des sols ; total net compte tous les réservoirs, déduction faite des absorptions. Une même activité sur deux bases, ce sont deux nombres différents. En savoir plus
- Fossile uniquement
- Détail par origine du carbone, pas par gaz
- Cycle de vie
- Amont : couverture complèteProduction : couverture complèteAval : couverture partielleFin de vie : couverture complète
Qualité élevée · Licence ouverte · Quelle que soit l'année
Module par module, jusqu'au total
Dix-sept modules de la norme EN 15804, toujours dans le même ordre. Chaque module déclaré fait bouger le cumul. D se place sous zéro, après le total, car il est déclaré à côté de lui.
à côté du total, pas dedans
| Module | Nom | Par unité | Cumul | Statut |
|---|---|---|---|---|
| A1 | Approvisionnement en matières premières | 0,164907 | 0,164907 | Déclaré |
| A2 | Transport jusqu'à l'usine | 0,00831058 | 0,173217 | Déclaré |
| A3 | Fabrication | 0,416824 | 0,590041 | Déclaré |
| A4 | Transport jusqu'au chantier | 0,000748994 | 0,59079 | Déclaré |
| A5 | Pose | 0,0282222 | 0,619012 | Déclaré |
| B1 | Utilisation | non déclaré | 0,619012 | Non déclaré |
| B2 | Entretien | non déclaré | 0,619012 | Non déclaré |
| B3 | Réparation | non déclaré | 0,619012 | Non déclaré |
| B4 | Remplacement | non déclaré | 0,619012 | Non déclaré |
| B5 | Rénovation | non déclaré | 0,619012 | Non déclaré |
| B6 | Énergie en service | non déclaré | 0,619012 | Non déclaré |
| B7 | Eau en service | non déclaré | 0,619012 | Non déclaré |
| C1 | Démolition | non déclaré | 0,619012 | Non déclaré |
| C2 | Transport des déchets | 0,00124832 | 0,620261 | Déclaré |
| C3 | Traitement des déchets | 0,0017014 | 0,621962 | Déclaré |
| C4 | Élimination | 0,0000104152 | 0,621972 | Déclaré |
| Total | Total de la déclaration, modules déclarés | 0,621972 | Somme des modules déclarés | |
| D | Au-delà du périmètre du système | −0,0293072 | non ajouté | À côté du total, pas dedans |
Ce que couvre ce chiffre
Le parcours de 1 unité de ce produit à travers les étapes de la norme EN 15804. Le total compte ce que la déclaration environnementale déclare ; ce qu'elle laisse de côté reste visible.
A1-A3Production
Les matières et la fabrication du produit
Inclus0,59A4-A5Mise en œuvre
La livraison sur le chantier et la pose
Inclus0,029B1-B7Utilisation
Le produit en service : entretien, réparation, remplacement, ainsi que l'énergie et l'eau qu'il consomme
Non déclaréC1-C4Fin de vie
Transport, traitement des déchets et élimination ; non déclarés : C1
C2 à C40,00296DAu-delà du périmètre
La valorisation après la fin de vie
Hors du total−0,0293
Hors de ce périmètre
- Maintenance
- Vente au détail
- Phase d'utilisation
- Crédit de recyclage
L'entretien est exclu, car le module B2 n'est pas déclaré. Le crédit de recyclage correspond au module D, affiché à côté du total.
Gaz
- CO₂e fossile0,622
- CO₂e biogénique−0,0000000000000000061
- CO₂e lié à l'usage des sols0,00089
Le total compte le CO₂e fossile. MRPI publie à part le CO₂e biogénique et celui lié à l'usage des sols ; ils sont affichés à côté, sans être additionnés.
De la fiche publiée par MRPI à un facteur comparable
MRPI publie cette EPD avec une valeur par module. Chaque champ tel que publié, et ce qu'open-climate.ai en a fait.
Le total et ses modules
Prenez un module seul si vous le déclarez sur une autre année ou dans un autre scope ; ne l'ajoutez jamais au total.
À propos de ce facteur
Texte publié par MRPI
Description
En anglaisStainless steel two-screw clamp with quick locking system, made from high grade AISI 316L (1.4404). Ideal for secure and corrosion resistant pipe fastening.Scope and type: This study involves conducting a comprehensive Life Cycle Assessment (LCA) for the Walraven Clamps, aiming to analyze all life cycle phases from Cradle to Grave (A1–D) using the best available data. The assessment follows the full scope of LCA, meaning the product is evaluated not as a standalone item, but as part of a broader system aggregated with other materials and processed into other products. Consequently, the clamp becomes an integral component of a Declared Unit. The LCA is performed using the Ecochain Helix software, leveraging background data from authoritative sources such as the Dutch Nationale Milieu Database v3.8 (based on Ecoinvent 3.6) and adhering to the NMD Bepalingsmethode 1.2 (2025) standard. This rigorous methodology ensures a detailed and transparent examination of the environmental impact of the Walraven Clamps across their entire life cycle from the extraction of raw materials (Cradle) through production, installation, and use, to final disposal or recycling (Grave). The system boundary includes all relevant stages, up to and including Module D (benefits and loads beyond the system boundary). It excludes operational energy use (B6) and water consumption (B7) during the use phase. The environmental impact is declared per one piece of Walraven Clamp, inclusive of ancillary materials, installation, internal transport, and waste processing. The reference service life is assumed to be 50 years, based on internal product owner data and supported by the European Technical Assessment (ETA) for Walraven Clamps, which confirms a minimum working life of 50 years under appropriate usage and maintenance conditions. All significant inputs and outputs such as emissions, energy consumption, and material flows are accounted for. Materials representing less than 1% of the product's total weight may be excluded unless they are expected to contribute more than 5% to any environmental impact category. The cumulative environmental impact of excluded materials shall not exceed 5% for any given category. This comprehensive approach ensures a scientifically sound and holistic understanding of the Walraven Clamp’s environmental footprint throughout its full life cycle.Representativeness: The aggregation was done by choosing the reference product as Walraven Bifix® 300 Clamp Stainless M8 25-28mm. The remaining products which are aggregated in the same group by following the 20% allocation and worst case scenario as per the EN 15804+A2 & NMD Bepalingsmethode v1.2 (2025) are listed below: Walraven 2S Clamp set zinc plated M8/10 75-81mm Walraven Bifix® 300 Clamp Stainless M10 62-68mm Walraven Nail-in Clamp pre-galvanized ST P80 1/2" Walraven Bifix® 300 Clamp Stainless M8 31-35mm Walraven Nail-in Clamp pre-galvanized ST P80 3/4" Walraven Bifix® 300 Clamp Stainless M8 25-28mm Walraven Bifix® 300 Clamp Stainless M8 20-22mm Walraven Bifix® 300 Clamp Stainless M8 54-60mm Walraven Pipe Saddle hot dip galvanized 33.7mm 1" Walraven Bifix® 300 Clamp Stainless M8 15-19mm Walraven Pipe Saddle hot dip galvanized 26.9mm 3/4" Walraven Pipe Saddle hot dip galvanized 21.5mm 1/2"Calculation rules: Data Quality Data flows were modelled to reflect actual production processes as accurately as possible. The assessment prioritizes primary data collected directly from Walraven’s Czech Republic production facility. In cases where primary data was unavailable, representative background datasets were selected from validated sources, including the Dutch Nationale Milieudatabase v3.8, based on Ecoinvent 3.6. For Module A1, material composition data was provided by the manufacturer. Module A2 includes actual transport distances for all raw materials to the production site. Module A3 incorporates measured energy consumption, waste generation, and emissions for the 2022 production year. All secondary data and background processes comply with recognized LCA standards. Data Collection Period The dataset represents the production processes carried out in 2023/2024. Methodology and Reproducibility The LCA was conducted in accordance with EN15804+A2:2019, ISO 14040, ISO 14044, ISO 14025, and the NMD Bepalingsmethode v1.2 (2025). All modelling and environmental impact calculations were performed using Ecochain Helix software (version 4.3.1). The study covers life cycle modules A1–A3 (raw material supply, transport, and manufacturing), A4–A5 (transport to site and installation), C1–C4 (end-of-life processing), and D (benefits from recycling and energy recovery). Inventory and Allocation System boundaries and allocation follow the modular approach outlined in EN15804 and NMD Bepalingsmethode v1.2 (2025). All relevant material and energy flows, emissions, and waste streams were included. Mass-based allocation was applied to distribute shared site-level inputs, such as electricity and auxiliary materials, across individual products. No secondary materials were used during production, and cut-off criteria were applied to ensure that any excluded flows account for less than 5% of total mass or energy per module. Data Sources Primary data was collected from Walraven’s Czech facility, covering material composition, energy consumption, and transport distances. Where primary data was incomplete or unavailable, verified secondary datasets from Ecoinvent 3.6 and the Nationale Milieudatabase v3.8 were used, including references for steel, zinc coating, and transport emissions. Upstream and downstream processes such as coating, shipping, and waste treatment were also modeled using these verified datasets to ensure comprehensive and reliable results.Scenarios and additional technical information Modules A1 to A3 cover the life cycle stages beginning with raw material acquisition and upstream processes. Module A1 models the sourcing and processing of all raw and auxiliary materials used in manufacturing the Walraven Bifix® 300 Clamp Stainless M8 25-28mm. The primary materials in this clamp include various grades of stainless steel and zinc coating. The material inventory is based on the 2023/2024 production year, using bills of materials and environmental data from the Nationale Milieudatabase (NMD) v3.8 and Ecoinvent v3.6. Where necessary, generic datasets were used. Steel content is modeled with 57% primary and 43% secondary (recycled) composition, aligning with standard market assumptions in the Dutch LCA framework. Module A2 addresses the inbound transport of materials to the Walraven production site in the Czech Republic. Transport was modeled using EN 15804+A2 guidelines with a 50% load factor assumption (fully loaded inbound, empty outbound). Emissions were calculated using NMD v3.8 and Ecoinvent v3.6 references for unspecified freight lorries (0001-tra&Transport, vrachtwagen). Individual distances per material were recorded but are generalized in the model. Module A3 evaluates the manufacturing phase. This includes electricity and auxiliary material use, packaging, and waste generation based on 2023/2024 operational data. Inputs consist of grid electricity (for both clamp production and zinc treatment), fuels, and lubricating oil. Packaging and steel production waste (scrap) are included, with recycled fractions modeled based on proportional allocation. Capital goods are excluded in accordance with the cutoff rule under EN 15804+A2, as their contribution to total environmental impact is less than 5%. Module A4 covers distribution of the finished clamp from the production site to the customer. A standardized distance of 150 km was assumed in accordance with the Bepalingsmethode v1.2, using a 50% truck load factor. Transport emissions were modeled with unspecified lorry datasets from NMD v3.8 / Ecoinvent v3.6. Module A5 includes installation activities and associated losses. Installation is performed manually and requires no additional energy. A 5% material loss is assumed due to handling inefficiencies. Installation waste is categorized and routed to waste processing: steel waste is transported 100 km to landfill or recycling, and rubber or plastic packaging (if present) is transported 100 km to AVI incineration. These assumptions follow default values in the Bepalingsmethode v1.2 (2025). End-of-Life Scenario Fixed Values used:Declaration of SVHC: No substances that are listed in the latest “Candidate List of Substances of Very High Concern for authorisation” are included in the product that exceeds the limit for registrationMore information: https://www.walraven.com/int/products/standard-clamps/Ce qui est inclus
En anglaisProduct Description The Walraven Bifix® 300 Clamp Stainless M8 (25–28 mm) is a high-quality, corrosion-resistant two-screw pipe clamp manufactured from AISI 316L (1.4404) stainless steel. Designed for reliable mechanical support, it provides excellent durability in indoor and semi-sheltered environments. The clamp is lightweight, pre-assembled, and suitable for small- to medium-diameter pipe installations. Manufacturing Location The clamp is produced at Walraven’s certified manufacturing facility in the Horka, Czech Republic, adhering to strict environmental and quality management standards. Manufacturing Process Overview The clamp body is formed from high-grade stainless steel AISI 316L (1.4404), ensuring inherent corrosion resistance and mechanical strength. Assembly involves a quick-locking system with stainless steel screws. No additional coatings are required due to the material’s durability. The clamp is delivered fully assembled, facilitating fast and safe on-site installation. Electricity usage references: Reference: 0569-pro & Elektriciteit, Nederlandse mix, bij consument, per kWh (73% grijs, 27% hernieuwbaar), Database: Ecoinvent v3.6 (Cut-off, NMD), GWP : 0.389 kg CO2eq/kWh Reference: market for electricity, low voltage | electricity, low voltage | Czech Republic, Database: Ecoinvent v3.6 (Cut-off, NMD), GWP : 0.936 kg CO2-eq/kWh Environmental Performance The product demonstrates excellent corrosion resistance, with optimized stainless steel use for material efficiency. The life cycle modeling was conducted using Ecochain Helix software and Ecoinvent v3.6 data. The clamp has a long reference service life of 50 years and is free of substances of very high concern (SVHCs). Installation and Use Phase The pre-assembled design enables rapid installation, making it suitable for various mechanical and utility pipe support applications. The product is VOC-free and safe for use in clean indoor environments. The necessary internal transport of Czech Republic to Netherlands has been accounted in the production process of A1-A3. End-of-Life Considerations At the end of its service life, the clamp can be manually disassembled, and all stainless steel components are recyclable. Module D benefits are accounted for, including positive environmental credits from stainless steel recycling. Packaging and Transport The clamp is packaged in recyclable, eco-friendly cardboard and transported using Euro 5/6 standard trucks. Packaging is designed for low-volume storage and stacking efficiency. The product meets EN 15804 + A2 and ISO 14025 standards for environmental product declarations. The stainless steel material ensures long-term durability and corrosion resistance, with a reference service life of up to 50 years in indoor or semi-sheltered installations.Domaine d'application
En anglaisProduct Description The Walraven Bifix® 300 Clamp Stainless M8 (25–28 mm) is a high-quality, corrosion-resistant two-screw pipe clamp manufactured from AISI 316L (1.4404) stainless steel. Designed for reliable mechanical support, it provides excellent durability in indoor and semi-sheltered environments. The clamp is lightweight, pre-assembled, and suitable for small- to medium-diameter pipe installations. Manufacturing Location The clamp is produced at Walraven’s certified manufacturing facility in the Horka, Czech Republic, adhering to strict environmental and quality management standards. Manufacturing Process Overview The clamp body is formed from high-grade stainless steel AISI 316L (1.4404), ensuring inherent corrosion resistance and mechanical strength. Assembly involves a quick-locking system with stainless steel screws. No additional coatings are required due to the material’s durability. The clamp is delivered fully assembled, facilitating fast and safe on-site installation. Electricity usage references: Reference: 0569-pro & Elektriciteit, Nederlandse mix, bij consument, per kWh (73% grijs, 27% hernieuwbaar), Database: Ecoinvent v3.6 (Cut-off, NMD), GWP : 0.389 kg CO2eq/kWh Reference: market for electricity, low voltage | electricity, low voltage | Czech Republic, Database: Ecoinvent v3.6 (Cut-off, NMD), GWP : 0.936 kg CO2-eq/kWh Environmental Performance The product demonstrates excellent corrosion resistance, with optimized stainless steel use for material efficiency. The life cycle modeling was conducted using Ecochain Helix software and Ecoinvent v3.6 data. The clamp has a long reference service life of 50 years and is free of substances of very high concern (SVHCs). Installation and Use Phase The pre-assembled design enables rapid installation, making it suitable for various mechanical and utility pipe support applications. The product is VOC-free and safe for use in clean indoor environments. The necessary internal transport of Czech Republic to Netherlands has been accounted in the production process of A1-A3. End-of-Life Considerations At the end of its service life, the clamp can be manually disassembled, and all stainless steel components are recyclable. Module D benefits are accounted for, including positive environmental credits from stainless steel recycling. Packaging and Transport The clamp is packaged in recyclable, eco-friendly cardboard and transported using Euro 5/6 standard trucks. Packaging is designed for low-volume storage and stacking efficiency. The product meets EN 15804 + A2 and ISO 14025 standards for environmental product declarations. The stainless steel material ensures long-term durability and corrosion resistance, with a reference service life of up to 50 years in indoor or semi-sheltered installations.Source et licence
- Valeur
- Additionnée par open-climate.ai à partir de ses parties
- Éditeur
- MRPI (Stichting MRPI)
- Bibliothèque
- MRPI MRPI_2026-10-02
- Publié le
- 2 octobre 2026
- Fin de validité
- 31 décembre 2030
Les valeurs et leurs métadonnées sont diffusées en entier et réutilisables en citant l'éditeur.
Citer ce facteur
MRPI (Stichting MRPI), EPD data from https://data.mrpi.nl. Normalised by open-climate.ai, https://open-climate.ai/factors/libraries/mrpi/ (CC BY 4.0). https://open-climate.ai/factors/fr/ef-mrpi-walraven_bifix_300_clamp-global-unit-cradle_to_grave_embodied-e921457e/?v=efv1-cfed8c6a41496b1d750f2a5f7a22e582
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