Facteur d'émission publié dans Kiwa-EE EPD, moyenne sectorielle
Cement-based mortars Group GMS G: GMS M10, GMS M10 F, GMS M15, GMS M15 F, GMS M20
Lettonie · Total EPD · Année de référence 2023
Chaque kilogramme de ce produit correspond à 0,317 kg CO₂e sur les modules que déclare son EPD : 0,304 pour sa fabrication (A1–A3) et 0,0126 en fin de vie.
Valeur par kilogramme, sur les modules que déclare l'EPD
0,317kgCO₂e/kg
Modules EN 15804 A1 à A3 · Total net : fossile, biogénique et usage des sols · PRG100 · AR5
Calculée par open-climate.ai : la somme des parties publiées par Kiwa-EE
Le seul scénario que déclare cette EPDAnnée de référence 2023
- Région
- Lettonie LV
- Périmètre
- Total EPD
- Qualité des données
- Moyenne
- Licence
- Ouverte · Conditions de Kiwa-EE
- Déclarant
- SIA SAKRET
- Unité déclarée
- Valeur exprimée par kilogramme ÷ 1 000
Le détail de 0,317
- A1-A3 Étape de productionScope 3, cat. 10,30496 %
- Fin de vieCalculée par open-climate.aiScope 3, cat. 50,01264 %
- Hors scopes−0,00423à côté
Σ 0,317 : les deux modules déclarés redonnent le total. D figure à côté, hors total.
Comptabiliser ce kilogramme selon le GHG Protocol
Sur cette période
Scope 3, catégorie 1 0,304
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 0,0126
Hors scopes, à déclarer à part
- D −0,00423
Les modules A4, A5, 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 › Minéraux et granulats · Lettonie · par kg · Moyenne
Total EPD · Total net · AR5
- PérimètreTotal EPDLa somme de tous les modules EN 15804 qu'une EPD déclare, lorsque cet ensemble n'est pas la grille A-C complète (MOD-0034). En savoir plus
- Total EPD
- Matières premières, transport amont, approvisionnement en combustible, combustion, fabrication, emballage, énergie achetée 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 Kiwa-EE · 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
- Total net
- Pas de détail par gaz ; CO₂e seulement
- Cycle de vie
- Amont : couverture complèteProduction : couverture complèteAval : aucune couvertureFin de vie : couverture partielle
Qualité moyenne · 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 kilogramme | Par t, tel que déclaré | Cumul | Statut |
|---|---|---|---|---|---|
| A1 | Approvisionnement en matières premières | 0,267378 | 267,378 | 0,267378 | Déclaré |
| A2 | Transport jusqu'à l'usine | 0,0199454 | 19,9454 | 0,287324 | Déclaré |
| A3 | Fabrication | 0,0165871 | 16,5871 | 0,303911 | Déclaré |
| A4 | Transport jusqu'au chantier | non déclaré | 0,303911 | Non déclaré | |
| A5 | Pose | non déclaré | 0,303911 | Non déclaré | |
| B1 | Utilisation | non déclaré | 0,303911 | Non déclaré | |
| B2 | Entretien | non déclaré | 0,303911 | Non déclaré | |
| B3 | Réparation | non déclaré | 0,303911 | Non déclaré | |
| B4 | Remplacement | non déclaré | 0,303911 | Non déclaré | |
| B5 | Rénovation | non déclaré | 0,303911 | Non déclaré | |
| B6 | Énergie en service | non déclaré | 0,303911 | Non déclaré | |
| B7 | Eau en service | non déclaré | 0,303911 | Non déclaré | |
| C1 | Démolition | 0,00358523 | 3,58523 | 0,307496 | Déclaré |
| C2 | Transport des déchets | 0,00752462 | 7,52462 | 0,315021 | Déclaré |
| C3 | Traitement des déchets | 0,00147418 | 1,47418 | 0,316495 | Déclaré |
| C4 | Élimination | 0,0000608276 | 0,0608276 | 0,316556 | Déclaré |
| Total | Total de la déclaration, modules déclarés | 0,316556 | 316,556 | Somme des modules déclarés | |
| D | Au-delà du périmètre du système | −0,00422696 | −4,22696 | non ajouté | À côté du total, pas dedans |
Scénarios et unités
Certaines déclarations environnementales chiffrent un module selon plusieurs scénarios, par exemple différentes filières de fin de vie. Chacun a son onglet, et le scénario par défaut de chaque module est signalé.
Un seul scénario, tel que déclaré
Chaque module a une seule valeur : il n'y a rien à choisir.
- Par t, tel que déclaré316,556
- Par kilogramme, tel que servi0,316556
Ce que couvre ce chiffre
Le parcours d'un kilogramme 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
Inclus0,304A4-A5Mise en œuvre
La livraison sur le chantier et la pose
Non déclaréB1-B7Utilisation
Le produit en service : entretien, réparation, remplacement, ainsi que l'énergie et l'eau qu'il consomme
Non déclaréC1-C4Fin de vie
De la démolition à l'élimination
Inclus0,0126DAu-delà du périmètre
La valorisation après la fin de vie
Hors du total−0,00423
Hors de ce périmètre
- Installation
- Maintenance
- Transport aval
- 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
Kiwa-EE publie ce facteur en CO₂e uniquement, sans détail par gaz. Le CO₂e compte ensemble le carbone fossile, biogénique et lié à l'usage des sols.
De la fiche publiée par Kiwa-EE à un facteur comparable
Kiwa-EE publie cette EPD sous la forme d'une seule valeur déclarée. 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 Kiwa-EE
Description
En anglaisSAKRET is one of the leading manufacturers of building materials in the Baltic States, offering a comprehensive range of products for various construction applications. The company specializes in cement-based dry construction mixes, including thermal insulation adhesives, concrete, masonry and repair compounds, plaster mortars, tile adhesives, decorative plasters, and other related materials. This EPD covers multiple products from the Group GMS G product family, based on a weighted average product, with the deviation within the product group being less than 10% for the total Global Warming Potential (GWP-total, kg CO2 eq.) Group GMS G includes the masonry mortars GMS M10, GMS M10 F, GMS M15, GMS M15 F, and GMS M20. These products are distributed globally. Masonry mortar is a dry mix that, when combined with water, is used in construction to bond building materials such as bricks, stones, or concrete blocks. It typically contains a binder (such as cement and lime), fine aggregates (like sand), and may also include additions and/or admixtures. UN CPC code: 37510 Articles of concrete, cement and plaster Declaration of the main product components and/or materials The table below summarizes the relative composition of the mortars. The specified composition ranges apply to all masonry mortars in the Group GMS G product family. MaterialsWeight (kg), value range (%)Cement35-38%Sand62-63%Additives<1%Packaging Information All masonry mortars in the Group GMS G product family are supplied in moisture-resistant bags, typically available in 25 kg units. Bulk delivery options, such as big bags or silo systems, may also be available upon request, depending on the project requirements and delivery logistics. Packaging materialsWeight versus the product (%)Industrial paper bag0.33%Cardboard0.02%Low-density polyethylene film0.06%Wood pallet1.42%Note: Packaging materials are not modeled in Modules C–D, as they are assumed to be disposed of in Module A5, which is not declared. Wooden pallets, in particular, contribute to biogenic carbon uptake; however, since Module A5 is excluded, their inclusion would distort the results. As a conservative approach, wooden pallets are excluded from the system boundaries. This modeling strategy has been adopted to ensure transparency and prevent any potential misinterpretation by users. Main physical and applicative properties CharacteristicGMS M10GMS M10FGMS M15GMS M15FGMS M20BasecementcementcementcementcementColorgreygreygreygreygreyCompressive strength, N/mm²1010151520Application temperature+5°C to +25°C-10°C to +25°C+5°C to +25°C-10°C to +25°C+5°C to +25°CMore detailed technical information about the mortars, including product specifications, performance characteristics, and recommended applications, can be found in the Technical Data Sheets (TDS) available on SAKRET's website. These documents offer detailed information on mixing ratios, curing times, and material properties to ensure the product is used optimally in construction or Do It Yourself (DIY) projects. All relevant process data was collected in the operational data survey. The data relating to the production stage of the product was determined by SIA SAKRET and refers to the production site in "Ritvari", Rumbula, Stopiņu pagasts, Ropažu novads, LV-2121, Latvia. Data for processes beyond the manufacturer's control were assigned from available EPD or generic data from databases (since suppliers' EPDs were not available for every material or were not developed according to EN 15804+A2). To ensure the comparability of the results, only consistent background data from the Ecoinvent database version 3.9.1, released in 2022, was used in the LCA (e.g. data records on energy, transport, auxiliary and operating materials). The database is regularly checked and thus complies with the requirements of ISO 14040/44 (background data not older than 10 years). The background data meets the requirements of EN 15804. The quantities of raw materials, consumables and supplies used as well as the energy consumption have been recorded and averaged over the entire year of manufacturing operation. The cut-off on the background is according to the background processes documentation (information on cut-off within the background data can be found in the Ecoinvent database version 3.9.1 (2022) document). The general rule – that specific data from specific production processes or average data derived from specific processes must be given priority when calculating an EPD or Life Cycle Assessment – has been followed. Data for processes that the manufacturer cannot influence or choose, were backed up with generic data. The data used in this EPD demonstrates good overall quality, supported by solid geographical coverage, appropriate technical detail, and relevant temporal alignment with the reference period. The geographical representativeness of the data is assessed as very good, while both technical and temporal representativeness are considered good. Data quality was calculated using the Data Quality level and criteria according to the PEF approach (Annex E.2 of EN 15804+A2). The DQRs range from 1,67 to 2,67 for the most abundant inputs in terms of mass. Therefore, overall the data quality is consistent and robust across all categories and is deemed to be good. Product stage (A1-A3) The production stage includes materials, energy and waste flows only related to the production processes (e.g. energy and water use related to company management and sales activities are excluded where technically possible; production, manufacture, and construction of manufacturing capital goods and infrastructure, other processes which are not directly related to the production of dry mixes). All installed raw materials of the products are analyzed, and the masses are determined following the allocation and cut-off requirements. Production-specific energy consumption were measured and provided by SAKRET. Supplier information regarding mode of transport and distances also are provided by SAKRET. Production data is recorded with a high degree of accuracy and precision. Given the consistency of the production process across all products manufactured at the site, energy consumption, ancillary materials, and production waste are allocated to the declared unit based on production and consumption volumes over a 12-month period. Waste generated during plant operations is properly managed – stored in suitable containers and routinely transported for further processing or disposal. As a result, no significant negative impact on the environment is expected. Production waste typically consists of off-specification products (mortar that does not meet quality standards and cannot be reintegrated into the production process), dust (fine particles generated during the grinding or mixing process) and cleaning waste (waste generated from cleaning equipment, mixers or storage areas that may contain small amounts of product or raw materials). The waste is collected separately, stored and disposed of in accordance with environmental and regulatory standards. Production waste is classified as construction waste and sent for recycling. In line with waste management practices in Latvia, it is estimated that approximately 99% of production waste is recycled, while the remaining 1% is sent to landfill. Water use is not declared, as it is not utilized in any technological processes. Masonry mortar products must be protected from moisture during storage and transportation. They are packaged in 25 kg industrial paper bags, stacked on wooden pallets with cardboard layers in between, and wrapped with plastic film for protection. All packaging materials are suitable for external recovery or appropriate disposal. Packaging materials are not modeled in Modules C–D, as they are assumed to be disposed of in Module A5, which is not declared. Wooden pallets, in particular, contribute to biogenic carbon uptake, however, since Module A5 is excluded, their inclusion would distort the results. As a conservative approach, wooden pallets are excluded from the system boundaries. This modeling strategy has been adopted to ensure transparency and prevent any potential misinterpretation by users. Construction process stage (A4-A5): not declared. Use stage (B1-B7): not declared. End of life stage (C1-C4) and Module D Since the products are marketed internationally, no country-specific waste scenario was considered. As a result, the waste scenarios from NMD (2022) have been adopted. Module C1: This module covers the demolition of cement-based mortars as part of the overall demolition of the entire building or structure. The demolition process (C1) consumes energy in the form of diesel fuel used by building machines (e.g. lifting cranes, mobile rough terrain crane, forklift). According to Erlandsson, M. and Pettersson D. (2015) energy consumption of a demolition process is on average 10 kWh/t. At the end-of-life, in the demolition phase 100% of the waste is assumed to be collected as separate construction waste. It is assumed that all embedded mortar is collected as separated construction waste during the demolition phase at the end of its service life. Modules C2 to C4 and D: A waste scenario for construction waste based on the Dutch National Environmental Database (NMD) is used: concrete (i.a. elements, brickwork, reinforced concrete): 99% of material is recycled and 1% landfilled. All of end-of-life product is assumed to be sent to the closest facilities (C2). In general, the inputs and outputs were attributed to the process/module in which they occur. That means: Environmental impacts caused by manufacturing or production waste (transport, incineration, waste processing, landfill and benefits through material and energy recovery) are assigned to module A3. Environmental impacts caused in the end-of-life stage are assigned to module C2 (transport), C3 (waste processing), C4 (disposal) and D (benefits through material and energy recovery). Carbonation During and after the lifetime of cement- and lime-containing products, the hydrated cement and lime within these products react with CO₂ from the air. This process, known as carbonation (or cement/lime carbonation), allows part of the CO₂ emitted during cement or lime production to be reabsorbed. The amount of CO₂ uptake depends on the type of application and its treatment at the end of its life cycle. Since SAKRET produces dry-mixed products and has no control or information regarding their specific application, carbonation during the use phase (Modules B) is not considered. The same applies to the end-of-life phase (Modules C and D) due to the lack of precise data. Overall, carbonation reduces the global warming potential (GWP) of cement and lime-based products throughout their life cycle, meaning that, theoretically, the GWP results for the end-of-life stage could be lower.Ce qui est inclus
En anglaisModule not declaredDomaine d'application
En anglaisGroup GMS G comprises masonry mortars suitable for various applications. SAKRET produces designed mortars that are specifically formulated and manufactured to meet defined performance criteria, with both composition and production processes tailored to achieve the required properties. Depending on the application, the mortars may include additives or admixtures to enhance characteristics such as workability, durability, and setting time. All masonry mortars are manufactured in accordance with EN 998-2 standard and are CE marked. Declarations of Performance (DoP) for the products are available at www.sakret.lv.Source et licence
- Valeur
- Additionnée par open-climate.ai à partir de ses parties
- Éditeur
- Kiwa-Ecobility Experts EPD programme (Kiwa GmbH)
- Bibliothèque
- Kiwa-EE KIWA_EE_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
Kiwa-Ecobility Experts EPD programme (Kiwa GmbH), EPD data from https://kiwa.lca-data.com. Normalised by open-climate.ai, https://open-climate.ai/factors/libraries/kiwa_ee/ (CC BY 4.0). https://open-climate.ai/factors/fr/ef-kiwaee-cementbased_mortars-lv-kg-epd_total-ce805c6c/?v=efv1-26034d88bcdbf83fa6fc057a593233f4
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