Bamboo as a construction material: from plants to structures

Amid the global push for sustainable construction, bamboo has been widely studied as a rapidly renewable, high-performance building material. This paper reviews the published literature on bamboo’s journey from plant to structural component. The review first examines the fundamental botanical characteristics of bamboo, explaining the relationship between its hierarchical structure—from molecular to cellular levels—and its mechanical properties. It then transitions to an analysis of sustainable forestry, harvesting practices, the structural uses of round bamboo, and the manufacturing processes for engineered bamboo products, such as glued laminated bamboo and bamboo scrimber. Critical performance challenges are addressed by evaluating modern treatment methods that enhance durability, dimensional stability, and fire resistance. Structural applications are explored in detail, covering traditional building typologies, innovative connection systems, and the emerging potential for bamboo in mid- and high-rise as well as long-span structures. The life cycle perspective is completed by examining end-of-life scenarios, including reuse, recycling, and energy recovery. Ultimately, the review situates bamboo within the global context by examining resource distribution, trade, and the policy frameworks required to promote its widespread adoption. By consolidating research across multiple disciplines, this paper highlights the significant potential of bamboo to contribute to a low-carbon built environment. It concludes that a holistic, science-based approach is essential for overcoming remaining challenges and fully integrating this versatile material into modern construction practices.

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Publication Details

Journal
Renewable and Sustainable Energy Reviews
Published
2026-09-17
DOI
https://doi.org/10.1016/j.rser.2026.117484
Primary Topic
Bamboo properties and applications
Type
article
Field-Weighted Citation Impact
0.00
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Bamboo as a construction material: from plants to structures

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Bamboo as a construction material: from plants to structures

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article en

Abstract

Amid the global push for sustainable construction, bamboo has been widely studied as a rapidly renewable, high-performance building material. This paper reviews the published literature on bamboo’s journey from plant to structural component. The review first examines the fundamental botanical characteristics of bamboo, explaining the relationship between its hierarchical structure—from molecular to cellular levels—and its mechanical properties. It then transitions to an analysis of sustainable forestry, harvesting practices, the structural uses of round bamboo, and the manufacturing processes for engineered bamboo products, such as glued laminated bamboo and bamboo scrimber. Critical performance challenges are addressed by evaluating modern treatment methods that enhance durability, dimensional stability, and fire resistance. Structural applications are explored in detail, covering traditional building typologies, innovative connection systems, and the emerging potential for bamboo in mid- and high-rise as well as long-span structures. The life cycle perspective is completed by examining end-of-life scenarios, including reuse, recycling, and energy recovery. Ultimately, the review situates bamboo within the global context by examining resource distribution, trade, and the policy frameworks required to promote its widespread adoption. By consolidating research across multiple disciplines, this paper highlights the significant potential of bamboo to contribute to a low-carbon built environment. It concludes that a holistic, science-based approach is essential for overcoming remaining challenges and fully integrating this versatile material into modern construction practices.

Renewable and Sustainable Energy ReviewsVol. 244
Roma Tre University (IT), International Bamboo and Rattan Organization (CN), Universidad de Los Andes (CO), Shenzhen University (CN), Hong Kong University of Science and Technology (HK), Hainan University (CN), University of L'Aquila (IT), FHNW University of Applied Sciences and Arts Northwestern Switzerland (CH), Japan Foundation Manila (PH), Zhejiang University-University of Edinburgh Institute (CN), Polytechnic University of Bari (IT), Zhejiang University (CN), University of Hong Kong (HK), Tsinghua University (CN)
Sustainable cities and communities
Openalex Percentile: Top 13%
Bamboo properties and applications
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