HÅG Capisco 8105 Product
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1 ENVIRONMENTAL PRODUCT DECLARATION in accordance with ISO Owner of the declaration Program holder Declaration number Issue date Valid to EPD Norge LOGO The Norwegian EPD Foundation NEPD00038E Rev HÅG Capisco 8105 Product Owner of the declaration: Firma LOGO Bilde 22 x 18 cm (BxH) NEPD00038E Rev. 1 HÅG Capisco
2 General information Product HÅG Capisco 8105 Program holder: The Norwegian EPD Foundation Post Box 5250 Majorstuen, 0303 Oslo Phone: Declaration number: Owner of the declaration: Contact person: Laura Fouilland Phone: Manufacturer Place of production: 7366 Røros, Norway This declaration is based on Product Category Rules: PCR for Seating Solution, NPCR 003 extended version 2013, in accordance with recommendations by the Norwegian EPD Foundation Management system: ISO 14001, Certificate No.2010-SKM-AR-1487 from the Accredited Unit: DNV Certification AB, Sweden. Declared unit: Org. No: No Declared unit with option: Issue date: Functional unit: Production of one seating solution provided and maintained for a period of 15 years. The EPD has been worked out by: Østfoldforskning AS, Mie Vold Valid to: Comparability: EPD from programmes other than the Norwegian EPD Foundation may not be comparable Firma LOGO Verification: Independent verification of data and other environmental information has been carried out in accordance with ISO14025, and externally internally Year of study: 2014 Approved Senior Research Scientist, Cecilia Askham (Independent verifier approved by EPD Norway) sign <Tittel Navn> Manager EPD-Norway Functional unit: Production of one seating solution provided and maintained for a period of 15 years. Unit Key environmental indicators (A1-A3) Cradle to gate A1 - A3 Global warming kg CO 2 eqv 45 Total energy use (CED) MJ 535 Substances from the REACH Candidate list Amount of recycled s * 50 * The product contains no substanses from the REACH Candidate list or the Norwegian priority list NEPD00038E Rev. 1 HÅG Capisco
3 Product Product description: HÅG Capisco is inspired by the horseman s saddle and sitting posture. No one sits as actively as a rider in the saddle. When you work sitting on a HÅG Capisco, you ll be inspired to greater freedom of movement, variation and new natural sitting positions. HÅG Capisco allows you to sit as high or low as you want. No other work chair is so well adapted to work stations of different heights. Sit down and adjust it from a normal table height to a semi-standing position. Its awardwinning design fits into creative meeting rooms and any other place where you want to work and move in a different way. It s also a great chair for dentists and surgeons who work in semistanding positions or when used back-to-front so that the back panel supports the chest. kg Materials Steel Steel Plast Textile Cardboard Various Total product Cardboard (packaging) Total product and packaging Technical data: Total weight: 12,9 kg ( 14,8 kg with packaging) More information: Market: Europe and USA Reference service life: 15 years 4,8 37 2,9 4,8 0,3 0,1 12,9 1,8 14, Energy recovery Furniture Manufacturing Non-recycled Landfill share for each amount Unit kg Steel Aluminium Polypropylene Polyurethane Other plastic Textile Varnish Not included Total product Cardboard (packaging) Total product and packaging Materials 1,4 2,6 2,2 0,3 6,5 1,4 7,8 share in product share for each amount share in product kg ,8 2,9 2,3 1,2 0,3 11,5 1,8 13, In manufacture, about 53 of the total mass of the chair and its packaging is recycled. At the end of the chair s life, about 9 of its total mass will consist of s that can be recycled. NEPD00038E Rev. 1 HÅG Capisco
4 LCA: Calculation rules Functional unit: Production of one seating solution provided and maintained for a period of 15 years. System boundary: Life cycle stages included are described in figure and through the corresponding letter and number designations in the declaration (see figure below). The seating solution components are assembled at SBSeating's facility in Røros. Data quality: Specific data from suppliers and manufacturer 2011/2012 are used in the EPD analysis. Database data from Ecoinvent 3 is used as the basis for raw and energy carrier production. Cut-off criteria: All major raw s and all the essential energy is included. The production processes for raw s and energy flows that are included with very small amounts (<1) are not included. This cut-off rule does not apply for hazardous s and substances Allocation: Where virgin s are used, emissions and energy consumption connected with extraction and production are included. Where recycled s are used in the product, emissions and energy consumption related to the recycling process are included. Emissions from incineration of waste are allocated to the product system that uses the recovered energy. This is a deviation from the PCR for Ecoinvent processes, where emissions from incineration are allocated to the product system in which the waste arises. Emissions from incineration of waste without energy recovery are allocated to the production system where the waste arises. Additional information According to the PCR the output should include both impact and the largest emissions (by mass) to air and water. Because of the format of the EPD the largest emissions are not presented. The methods for calculating the environmental impact are IPCC 2007 for global warming and CML 2001 for other impact categories. Material recycling at end of life (D) is not within the system boundaries, but as a scenario. The avoided emissions from replaced virgin are included in D. LCA: Scenarios and additional technical information Transportation to an average customer in Copenhagen is 1000 km (A4). The use stage is represented by a scenario and includes vacuum cleaning of textiles once a month. The PCR does not provide detailed guidelines for what should be included in the use stage. In the end of life stage, the transport distance for waste to waste processing is 72 km (C1). The reuse, recovery and recycling stage is beyond the system boundaries (D). It is assumed that the chair is dismantled and the s recycled or combusted according to the general Norwegian treatment of industrial waste. This calculation includes CO2 emissions and energy only (C1-D). Disassembly is a manual process with no impacts on the results of the LCA and is therefore not included. The transport distance to reuse, recovery or recycling varies for each, but the average distance is 373 km. NEPD00038E Rev. 1 HÅG Capisco
5 LCA: Results The following information describes the scenarios in the different modules of the EPD. System boundaries (X=included, MND=modul not declared, MNR=modul not relevant) Product stage Construction stage Use stage End of life Beyond the system boundaries Raw s Transport Manufacturing Transport Construction Maintenance Repair Reuserecoveryrecycling potential A1 A2 A3 A4 A5 B1 B2 B3 B4 C1 C2 C3 D x x x x MNR x MNR MNR MNR x x x x Replacement Operational energy use Transport Waste Processing Disposal Environmental impact Parameter A1 A2 A3 A1-A3 A4 B1 C1 GWP 42 1,3 2,4 45 2,0 ODP 2,0E-05 8,4E-08 1,8E-07 2,1E-05 1,3E-07 POCP 1,3E-02 1,3E-04 5,8E-04 1,3E-02 1,4E-04 C2 C3 C1-C3 D 6,1E-03 1,2 11, ,9E ,51E-05 1,2E ,18E-03 AP 7,2E-02 1,0E-03 5,3E-03 7,9E-02 1,5E-03 5,0E ,53E-02 EP 0,19 5,4E-03 8,8E-03 2,0E-01 6,7E-03 3,4E ,44E-02 ADPM* 3,5E-04 5,8E-09 7,1E-06 3,6E-04 9,2E-09 2,0E ,92E-04 ADPE ,2E *Some processes included are based on data from EcoInvent which is lacking data for renewable resources. The correct number of ADPM in the table above and RPEE, RPEM and TPE in the table below may be higher. See referance [5] for details. The lack of data will be adressed in a new version of Ecoinvent 3, which not was available when this declaration was carried out. GWP Global warming potential (kg CO2-eqv.); ODP Depletion potential of the stratospheric ozone layer (kg CFC11-eqv.); POCP Formation potential of tropospheric photochemical oxidants (kg C2H4-eqv.); AP Acidification potential of land and water (kg SO2-eqv.); EP Eutrophication potential (kg PO4-3- eqv.); ADPM Abiotic depletion potential for non fossil resources (kg Sb -eqv.); ADPE Abiotic depletion potential for fossil resources (MJ) Resource use** Parameter A1 A2 A3 A1-A3 A4 B1 C1 C2 C3 C1-C3 D RPEE* 9 0 2,6E-03 8,9 0 9,26E RPEM* 3 2,2E-03 14,7 18,1 3,3E TPE* 12 2,2E-03 14,7 26,9 3,3E-03 9,26E NRPE , ,86E , NRPM TRPE ,76E , SM , RSF NRSF -3, ,0 0 3,96E W 1,69 3,5E ,78 5,4E ,4 * See above. ** Energy is given in MJ in accordance with recommandations in the Norwegian EPD progam. RPEE Renewable primary energy resources used as energy carrier (MJ); RPEM Renwable primary energy resources used as raw s (MJ); TPE Total use of renewable primary energy resources (MJ); NRPE Non renewable primary energy resources used as energy carrier (MJ); NRPM Non renewable primary energy resources used as s (MJ); TRPE Total use of non renewable primary energy resources (MJ); SM Use of secondary s (kg); RSF Use of renewable secondary fuels (MJ); NRSF Use of non renewable secondary fuels (MJ); W Use of net fresh water (m3) End of life - Waste and Output flow Parameter A1 A2 A3 A1-A3 A4 B1 C1 C2 C3 C1-C3 D HW 1 1,3E-05 6,4E-05 1,3E-02 2,0E-05 5,8E-06 0 NHW 16 1,0E-02 4,3E ,6E-02 7,6E-04 2,3 2,3-2,5 RW CR MR , ,9 9,9 0 MER , EEE ETE HW Hazardous waste disposed (kg); NHW Non hazardous waste disposed (kg), RW Radioactive waste disposed (kg); CR Components for reuse (kg); MR Materials for recycling (kg); MER Materials for energy recovery (kg); EEE Exported electric energy (MJ); ETE Exported thermal energy ( MJ) NEPD00038E Rev. 1 HÅG Capisco
6 Specific Norwegian requirements Electricity The following data from ecoinvent v3 (June 2012) for Norwegian production mix included import, low voltage is used; Energy/Electricity country mix/low voltage/market: Electricity, low voltage {NO} market for Alloc Def, U. Production of transmission lines, in addition to direct emissions and loss in grid are included. Characterisation factors stated in EN 15804:2012+A1:2013 are used. This gives following greenhouse gas emissions: 24 g CO2-eqv/kWh. Dangerous substances None of the following substances have been added to the product: Substances on the REACH Candidate list of substances of very high concern (of ' ) substances on the Norwegian Priority list (pr ) and substances that lead to the product being classified as hazardous waste. The chemical content of the product complies with regulatory levels as given in the Norwegian Product Regulations. Indoor environment Climate declaration Not relevant Bibliography [1] NS-EN ISO 14025:2006, Environmental labels and declarations-type III environmental declarations-principles and procedures. [2] NS-EN ISO 14044:2006, Environmental management - Life cycle assessment - Requirements and guidelines [3] EN 15804: A1:2013 Sustainability of construction works - Environmental product declaration - Core rules for the product category of construction products [4] PCR for seating solution: PRODUCT-CATEGORY RULES(PCR) for preparing an environmental product declaration (EPD) for Product Group Seating solution, PCR 2008:NPCR 003, extended version [5] Vold, M; Livsløpsdata for 6 sitteløsninger fra Håg. Bakgrunnsdata for miljødeklarasjon (EPD), Østfoldforskning AS, OR Fredrikstad. [6] Raadal, H. L., Modahl, I. S., Lyng, K. A. (2009). Klimaregnskap for avfallshåndtering, Fase I og II. OR ISBN : , [7] EPD Norge LOGO Firma LOGO Program holder The Norwegian EPD Foundation Post Box 5250 Majorstuen, 0303 Oslo Norge Owner of the declaration P.O Box 5055 majorstua, No 3001 Oslo Contact person: Laura Fouilland Author of the Life Cycle Assessment Østfoldforskning AS Stadion 4, 1671 Kråkerøy Contact person: Mie Vold NEPD00038E Rev. 1 HÅG Capisco 8105 Phone: web Phone: Fax web Phone: Fax web [email protected] [email protected] [email protected] 6
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