Miljøaftryk

Hos Ejendals har vores mission altid været at beskytte hænder og fødder – og at gøre det på en ansvarlig måde. Måling af vores produkters miljøaftryk indgår som en naturlig del af dette ansvar over for vores planet.

Livscyklusvurdering som grundlag for vores miljøberegninger

Vores produkters miljøaftryk beregnes ved hjælp af LCA-metoden (Life Cycle Assessment), som viser, hvordan hvert enkelt produkt påvirker miljøet i hele sin livscyklus.

Ved at anvende LCA-principper i vores produktudvikling og forstå, hvor udledningerne opstår, kan vi indføre praksisser for miljøvenligt design, træffe smartere designvalg, bruge mere bæredygtige materialer og anvende energieffektive processer. Dette er med til at reducere udledningen i vores egen drift og forsyningskæde, hvilket understøtter vores klimaambitioner og gør det muligt for vores kunder at nå deres bæredygtighedsmål.

Det er et naturligt skridt i vores bestræbelser på at skabe en mere sikker og bæredygtig fremtid, hvor beskyttelsen rækker ud over arbejdspladsen til hele planeten.

Ejendals Product Environmental Footprint

Download our whitepaper

It explains how we calculate product environmental impact, including what a Life Cycle Assessment is, how Product Environmental Footprints and Product Carbon Footprints are defined, and the methodology we use to assess environmental impact — transparent, precise, and continuously evolving.

COMBINED PRODUCT ENVIRONMENTAL REPORT

download our combined report

The Ejendals Combined Product Environmental Report presents life cycle–based carbon footprint calculations for selected products. Using recognised methodologies, the report provides transparent environmental data to support informed and responsible choices.

How we calculate environmental footprints

What is the carbon footprint?

A product’s carbon footprint represents the total greenhouse gas (GHG) emissions generated throughout its life cycle, measured as carbon dioxide equivalents (CO₂e).

How do you conduct carbon footprint calculations?

We use the Life Cycle Assessment (LCA) method, an internationally standardised methodology used to assess the environmental impacts of products, including the carbon footprint.

What is the scope of your carbon footprint calculations?

We use a cradle-to-grave LCA approach, covering all stages from raw material extraction and production to transport, use, and end-of-life treatment.

Which standards do you follow?

ISO 14040/14044 and Product Category Rules (PCR) guidelines for LCA, and ISO 14067 for product carbon footprints.

Do you include packaging and transportation?

Yes, both are included in our life cycle assessments.

Can results be compared with other brands?

Direct comparisons can be misleading due to differences in scope, data sources, and methodologies. To ensure transparency, we always disclose the calculation scope, and provide both cradle-to-gate and cradle-to-grave results.

Where can I find available results for Ejendals products?

The carbon footprints of our products are continuously being calculated. All available results are published in our Combined Product Environmental Report.

Example of environmental impact calculation

The image shows the carbon footprint per pair and contribution breakdown for two TEGERA glove models (size 10).

For comparison, the approximate carbon footprint of common everyday products is shown below, expressed as kilograms of carbon dioxide equivalents (kg CO₂e).

Example Product Approximate carbon footprint
33 cl PET bottle Carbon footprint:0.08 kg CO₂e
Electric car Carbon footprint: 60,000 kg CO₂e
Smartphone Carbon footprint: 70 kg CO₂e

*LCA scope: cradle-to-grave, assumed to be distributed to an average regional customer in Sweden. Calculation method: IPCC 2021 (GWP100) following ISO 14067. Calculation date: 10/2025.

Ejendals - Sustainable Safety

Product Sustainability

At Ejendals, we design TEGERA safety gloves and JALAS safety footwear that protect not only the people who wear them, but also the world they work in. Product sustainability is our commitment to developing PPE with a smaller environmental footprint throughout its entire lifecycle—from material selection and manufacturing to durability, reuse, and end-of-life management.