ファストファッションのライフサイクル全体で炭素排出量を削減可能、新研究が示す(Fast fashion’s carbon footprint can be reduced across its life cycle, new Concordia study suggests)

2026-08-28 カナダ・コンコルディア大学

カナダのコンコルディア大学主導の研究チームは、ポリエステルと綿のTシャツについて、原料生産から製造、輸送、消費者による使用、廃棄までのライフサイクル全体を評価し、ファストファッションの環境負荷を低減する方法を分析した。基準シナリオでは、合成繊維の製造に多くのエネルギーと化石燃料を必要とするため、ポリエステルTシャツの温室効果ガス排出量が綿より大きかった。一方、綿は栽培に伴う土地・水資源の負荷が大きかった。素材の違い以上に、輸送方法と衣服の使用期間が排出量を左右し、航空輸送を海上輸送に切り替えると炭素フットプリントを約30~60%削減でき、衣服の寿命を2倍にすると排出量を約半減できると推定された。生産量を抑え、長寿命設計を進め、航空輸送を削減することが重要だと結論づけている。

<関連情報>

生産から廃棄まで:ファストファッションのポリエステルおよび綿Tシャツのライフサイクルアセスメント From production to waste disposal: A life cycle assessment of fast fashion polyester and cotton T-shirts

Xinyu Xu, Linxiang Lyu, Zhi Chen, Chunjiang An
Cleaner Waste Systems  Available online: 2 June 2026
DOI:https://doi.org/10.1016/j.clwas.2026.100541

ファストファッションのライフサイクル全体で炭素排出量を削減可能、新研究が示す(Fast fashion’s carbon footprint can be reduced across its life cycle, new Concordia study suggests)

Highlights

  • The life-cycle impacts of polyester and cotton fast fashion T-shirts were assessed.
  • Polyester has higher impacts in most categories, while cotton dominates water and land use.
  • Air freight distance is the most sensitive driver of CO₂-eq emissions for both materials.
  • Changes in waste disposal methods have a limited effect on total greenhouse gas emissions.
  • Extending garment lifespan can reduce CO₂-eq emissions by about 50% for both T-shirts.

Abstract

Fast fashion apparel causes significant environmental impacts due to its high production frequency, short lifespan, and global supply chains. However, existing life cycle assessment (LCA) studies of clothing have not yet fully considered the specific conditions of fast fashion. This study employed an LCA methodology to systematically compare the environmental impacts of polyester and cotton T-shirts from production to end-of-life disposal throughout their entire life cycles within the fast fashion context, using one T-shirt under a 20-wash use scenario as the functional unit. By combining transport-related sensitivity analyses with fast fashion scenario analyses focusing on transport modes and clothing lifespan, this study aims to address these limitations and conduct a more targeted assessment of key environmental issues within the fast fashion system. The environmental impacts across multiple categories were evaluated, followed by the estimation of greenhouse gas (GHG) emissions for each stage. Results indicated significant differences in environmental performance between cotton and polyester T-shirts across various impact categories. Polyester T-shirts exhibited considerably higher emissions, reaching 9.62 kg CO2 eq per functional unit, compared to 6.1 kg CO2 eq for cotton T-shirts. Sensitivity analysis showed that polyester and cotton T-shirts’ carbon emissions were both more sensitive to transportation-related parameters, particularly air freight distances. Scenario analysis indicated that altering transportation modes and extending product lifespans could significantly reduce the environmental impact of fast fashion. The results suggest that improving the environmental performance of fast fashion garments should prioritize reducing air transport and extending product lifespan, as both significantly reduce environmental impacts.

0604繊維二次製品の製造及び評価
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