Life-cycle GHG emissions of standard houses in Thailand

Viriyaroj, B; Kuittinen, M and Gheewala, S H (2024) Life-cycle GHG emissions of standard houses in Thailand. Buildings & Cities, 5(1), pp. 247-267. ISSN 2632-6655

Abstract

Greenhouse gas (GHG) emissions from building activities are one of the most prominent contributors to the problem of global warming. Life-cycle assessment (LCA) is a widely used tool to investigate GHG emissions from buildings. However, there appears to be a lack of LCA studies on buildings in tropical climates, and especially in Thailand. This study aims to improve the understanding of GHG emissions from standard Thai residential buildings. LCA was conducted on five typical house designs in Thailand in order to determine potential mitigation strategies for future design of these houses. The amount of GHG emissions over the entire life-cycle of these detached houses was estimated, and the results were analysed with different viewpoints. The results indicate that emissions from the operational energies of detached houses in Thailand have the highest share of GHG emissions. Significant emissions also came from construction materials. Improvements to the building envelope and air-conditioner usage have high GHG mitigation potential in the operational stage of the buildings, while replacing cementitious and metallic materials with low-emissions alternatives can considerably reduce embodied emissions.

Item Type: Article
Uncontrolled Keywords: buildings; embodied emissions; greenhouse gas emissions; housing; life-cycle assessment; low carbon; operational emissions; sustainability; Thailand
Index terms: mitigation, housing, global warming, house design, embodied emission, greenhouse gas, construction material, operational emission, strategy, residential building, low carbon, Thailand, building envelope, greenhouse gas emission
Subjects: architectural elements, environmental health, climate science, design process, building materials, construction type, Geography, environmental impact, sustainability assessment, financial risk, management
Topics: Geographical Context, Cost Management, Business Strategy, Sustainability, Design Practice, Engineering Principles, Construction Technology
Descriptive scope: 2 PC

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