建築物の炭素回収技術における藻類植物の応用の進展
Progress in the Application of Algae Plants in Building Carbon Capture Technology (原題)
Zhizhi Xue
🤖 gxceed AI 要約
日本語
本論文は、建築環境における新興のバイオ系炭素固定材料である微細藻類に着目し、その炭素固定原理、建築への応用形態、利点、課題を文献研究により包括的に分析している。藻類は他の生物より炭素回収効率が高く、フォトバイオリアクターカーテンウォールと人工樹木の二形態で建築に応用され、従来建築より省エネ・環境優位性が大きい。ただし高コストや規制不足などの課題が残る。
English
This review examines microalgae as an emerging bio-based carbon sequestration material for buildings, analyzing sequestration principles, application forms, advantages, and challenges. Algae show far higher carbon capture efficiency than other organisms and are applied as photobioreactor curtain walls (building-scale) and artificial trees (city-scale), offering significant energy and environmental advantages over conventional buildings. However, high costs and inadequate regulation remain barriers.
Unofficial AI-generated summary based on the public title and abstract. Not an official translation.
📝 gxceed 編集解説 — Why this matters
日本のGX文脈において
日本のGX文脈では、建築物の脱炭素化(ZEH・ZEB)やカーボンニュートラル都市設計に関連する。藻類建築はまだ実用段階ではないが、都市の炭素吸収源としての可能性は、国内の建築物省エネ法や自治体の脱炭素先行地域の議論に示唆を与える。
In the global GX context
Globally, this contributes to the built-environment decarbonization literature, complementing TCFD/ISSB disclosure on embodied and operational carbon in real estate. While algae architecture is pre-commercial, it expands the menu of negative-emission building technologies relevant to net-zero building standards and urban carbon accounting.
👥 読者別の含意
🔬研究者:建築物へのバイオ系炭素固定材料の応用可能性と研究ギャップを整理する基礎資料となる。
🏢実務担当者:将来的なカーボンネガティブ建築技術の選択肢として、研究開発動向の把握に役立つ。
🏛政策担当者:建築物の炭素固定技術に対する規制・インセンティブ設計の必要性を示唆する。
📄 Abstract(原文)
Growing concerns over climate change and environmental pollution have increased interest in carbon capture technologies for the built environment. However, previous studies have mainly focused on conventional carbon capture materials such as carbonated concrete and engineered carbon capture systems., with relatively low attention paid to bio based carbon sequestration materials. This article takes microalgae, an emerging bio based carbon sequestration building material, as the starting point and conducts a comprehensive study on algae architecture through literature research. The main research objective of this article is to analyze the carbon sequestration principle of algae, summarize the forms of algae architecture, analyze the advantages of algae carbon capture, and explain the challenges it faces. This study found that algae have a much higher carbon capture efficiency than other organisms and are also easy to cultivate, which gives algae great potential in building carbon sequestration. There are two main forms of algae application in architecture, namely photobioreactor curtain walls and artificial trees. Among them, photobioreactor curtain walls mainly serve individual buildings, while artificial trees mainly serve the entire city. In addition, algae buildings have significant energy and environmental advantages compared to traditional buildings. However, as an emerging technology, algal architecture still faces many economic, technological, and social issues, such as high costs of experimentation and application, and inadequate regulatory measures. Future technological advances may help overcome these challenges and promote the wider application of algae-based carbon capture systems.
🔗 Provenance — このレコードを発見したソース
- openalex https://doi.org/10.54254/2753-7064/2026.37409first seen 2026-09-30 04:57:25
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