住まいの炭素フットプリント削減に効果的な生活様式とは(Living differently will help reduce your home’s carbon footprint)

2025-09-11 スイス連邦工科大学ローザンヌ校(EPFL)

EPFLの研究は、ヴォー州の住宅約2万棟を対象に、建設時の埋込炭素と運用時の排出を分析し、住人一人あたりの年間CO₂排出量を算定した。都市部では古い建物が多く、暖房効率の低さから1,500〜1,900kgCO₂/人/年と高めで、農村部は住居面積が大きいため1,200〜2,200kgと幅広い結果となった。都市部は住居面積あたりの埋込炭素が農村より低い傾向も示された。研究は、全体的な削減策だけでなく、所有形態や世帯規模など個別事情に応じた対策が効果的と強調する。例として、大型住宅を単身世帯が占有する状況に対し、学生のシェア利用など居住配置の工夫を提案。断熱強化や低炭素暖房導入とともに、人口動態や生活様式を考慮した政策設計が必要であると結論づけている。

<関連情報>

ボトムアップ型建築ストック分析による世帯・所有形態別運用排出量・内在排出量のマッピング:スイス・ヴォー州の事例 Mapping operational and embodied emissions in relation to household and ownership profiles with bottom-up building stock analysis: The case of Vaud, Switzerland

Ankita Singhvi, Mikhail Sirenko, Aristide Athanassiadis, Claudia R. Binder
Resources, Conservation and Recycling  Available online: 3 June 2025
DOI:https://doi.org/10.1016/j.resconrec.2025.108431

Graphical abstract

住まいの炭素フットプリント削減に効果的な生活様式とは(Living differently will help reduce your home’s carbon footprint)

Abstract

We conducted a bottom-up, spatially explicit building stock analysis to examine the social and spatial heterogeneity of operational and embodied emissions of residential buildings in Canton Vaud, Switzerland. Variations emerged between locations, household profiles and ownership types. Urban households exhibited lower embodied emissions per resident, but higher annual operational emissions (1500–1900 kg CO₂/resident), compared to rural households, which showed greater overall variation (1200–2200 kg CO₂/resident). Ownership patterns were less geographically distinct but stratified by type: mixed-ownership buildings exhibited the highest embodied energy, largest material stock and the most modern buildings, whereas community-owned buildings showed the widest variation in annual operational emissions (1500–2300 kg CO₂/resident). Our findings suggest that tailoring emission-reduction interventions to specific social and physical housing contexts would enhance the materials-energy nexus in the built environment. We discuss avenues for reducing energy losses, closing material loops, and incorporating sufficiency into building stock management.

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