Exploring microalgae applications in building facades: a bibliometric perspective
Microalgae are microorganisms that offer promising potential for application in sustainable environmental technologies due to their ability to photosynthesize, produce biomass, absorb carbon dioxide, and treat wastewater. These versatile properties allow microalgae to be integrated into archite...
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Main Authors: | , |
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Format: | Article |
Language: | English |
Published: |
Universidad del Bío Bío
2025-06-01
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Series: | Revista Hábitat Sustentable |
Subjects: | |
Online Access: | https://revistas.ubiobio.cl/index.php/RHS/article/view/7161 |
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Summary: |
Microalgae are microorganisms that offer promising potential for application in sustainable environmental technologies due to their ability to photosynthesize, produce biomass, absorb carbon dioxide, and treat wastewater. These versatile properties allow microalgae to be integrated into architectural façade systems. Photobioreactors that can be integrated into architectural facades can be used for energy generation, air quality improvement, shading, and wastewater treatment. In this context, although there are many bibliometric studies in the literature on the use of microalgae in environmental and industrial applications, no comprehensive bibliometric study focuses on the use of microalgae in architectural facade designs. This study aims to systematically reveal the research trends in this field by examining the literature on the use of microalgae in building facades and cladding systems through bibliometric analysis. According to the research findings, the scientific literature on the use of microalgae in building facades has been increasing rapidly in recent years, with interdisciplinary collaborations focusing on the themes of sustainability, energy efficiency, and biological interaction. The studies published between 2012 and 2024, with leading contributions from countries such as Germany, the USA, China, and the Netherlands, are shaped around keywords such as microalgae, bioreactor, green facade, bio-integration, with a focus on energy efficiency, sustainability, and building biotechnology. As a result, this research makes the current position of microalgae technologies visible and provides strategic recommendations to guide future academic work.
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ISSN: | 0719-0700 |