Carbon Footprint of Helmet Accessories

Explore the carbon footprint data and insights for helmet accessories, a key product category in the fashion industry. Gain valuable analytical perspectives to benchmark emissions, identify hotspots, and drive sustainable improvements.

4.03 kg CO2e The Carbon Footprint of Helmet Accessories Helmet Accessories Carbon Footprint
What's the Carbon Footprint of Helmet Accessories?

What's the Carbon Footprint of Helmet Accessories?

The average carbon footprint of a helmet accessory is 4.69 kg CO₂e, with emissions ranging from 1.77 to 10.40 kg CO₂e. This footprint encompasses the emissions from manufacturing stages like raw materials, preparation, coloration, and assembly. With 1,927 products and an average mass of 108.07 g, helmet accessories contribute significantly to the fashion industry's environmental impact.
  • Minimum footprint: 1.77 kg CO2e
  • Median footprint: 4.03 kg CO2e
  • Maximum footprint: 10.4 kg CO2e

Carbon Emissions by Process Step in Helmet Accessories Production

Each Helmet Accessories's footprint includes emissions from multiple manufacturing stages. The following process steps were identified as carbon hotspots for Helmet Accessories:
  • Finishing 0.41 kg CO₂e
  • Coloration 0.33 kg CO₂e
  • Preparation 0.18 kg CO₂e
Carbon Emissions by Process Step in Helmet Accessories Production

Key Insights from the Environmental Data on Helmet Accessories

Finishing Dominates Emissions

The finishing stage accounts for the highest emissions at 0.41 kg CO₂e per helmet accessory on average. Reducing the environmental impact of this process step presents a key opportunity for improvement.

Coloration Impact

Coloration is another major emissions hotspot at 0.33 kg CO₂e, indicating the need for more sustainable dyeing and treatment methods.

Preparation Relevance

With emissions of 0.18 kg CO₂e, the preparation stage also contributes significantly to the overall helmet accessory footprint and warrants further analysis.

Product Complexity Relationship

Helmet accessories consist of only 2 components on average, suggesting a potential link between lower product complexity and reduced emissions that could guide design decisions.

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References

Data sourced from Carbonfact’s proprietary database, powered by over 50 million LCAs run on textile, fashion, and footwear products. The methodology is aligned with the EU Product Environmental Footprint (PEF) and adapted for product category specificity.

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