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BETA CELL 4100 Q600 840 HF

497.113664kgCO₂e/unitGWP: AR5 (as published)

computed total: the publisher never printed this figure

Published by ÖKOBAUDAT (BBSR / BMWSB) in ÖKOBAUDAT (BBSR / BMWSB) OBD_2024_II (Any year); last verified 2026-08-28.

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About this factor

Publisher's description

This data set has been modeled according to the European Standard EN 15804+A2 for Sustainable Building. Results are depicted in modules that allow the structured expression of results over the entire life cycle. Transport modul: A Standard scenario with a truck with a transport distance of 700 km in Europe is considered. The weight of the transported unit includes product with packaging. Use-stage modul: During the use-stage, consumption of electricity is calculated, based on a for the declared product characteristical, standardardised scenario. All use-scenarios are defined in the [PCR part B] of IBU. Not only annual operating time, average product lifetime and power consumption is considered but also additional influences like stand-by circuits, dimming function and more. The following electricity grid mix is applied by default: EU Allocation of waste material: For the treatment of production residues the calculation considers the increased demand of materials' input resulting in production residues during manufacturing. These material flows are not connected to an EoL-scenario. Avoided burdens for secondary material in case of potential recycling are not included. End-of-life modul: As an EoL scenario the product as well as the replacement parts are assumed to be collected to 100% (legal requirements defined within WEEE directive). The product and replacement parts are fed to a generic shredding process with fixed demand on electrical energy per input mass (C3) of 1,2 MJ/kg, resulting in different waste fractions. For the amount of metal flows respective recycling processes are considered, including recycling losses. Environmental burdens of recycling processes, as well as avoided burdens for secondary materials are assigned as total value in module D. The plastic fraction is fed into a process for waste incineration (B4/C3). The calculation of emissions from the waste incineration plant follows a partial stream consideration for the combustion process, according to an average mix of plastics.

Included processes

A square ceiling recessed LED luminaire with excellent glare control and high efficacy for office and education. The 36 LED cells (arranged in a 6x6 pattern) each have a prismatic primary lens to allow for higher light output with low glare and user comfort. Fixed output LED driver. Class II electrical, IP20, Impact strength: IK04. Body: sheet steel, white. Diffuser: prism structure. Complete with 4000K LED. UGR < 19 and L65 < 3000 cd/m² as per EN 12464 Dimensions: 596 x 596 x 32 mm Luminaire input power: 34 W Luminaire luminous flux: 4392 lm Luminaire efficacy: 129 lm/W Weight: 2.1 kg The manufacturing process includes production technologies such as plastic injection moulding, plastics processing, metalworking and powder coating, as well as the operation of highly automated systems for assembling the products. All primary and secondary data are modelled to be specific to the technologies or technology mixes under study. Where technology-specific data are unavailable, proxy data are used. Technological representativeness is considered to be good.

Applicability

The declared product is a professional LED luminaire that is used for application 'Office'.

Values by year and methodology

Any year497.113664▣headline

By gas

co2_fossil497.11366499.9%
co2_biogenic0.3617380.1%
co2_luluc0.0491050.0%

Decomposition

Reported beside the value above, outside its boundary. Never added to it.

Cite this factor

open-climate.ai (n.d.). BETA CELL 4100 Q600 840 HF [emission factor]. ÖKOBAUDAT (BBSR / BMWSB), ÖKOBAUDAT (BBSR / BMWSB) OBD_2024_II. Dataset 2026-08-28. Retrieved 2026-09-25. https://open-climate.ai/factors/ef-okobaudat-beta_cell_4100_q600_840-eu27-unit-cradle_to_grave-e171a90c