Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

<b>Bio-Based Insulation Panel from Rice Husk Residues for Thermal Resilience in Sustainable Buildings</b>

View through CrossRef
 As buildings face growing exposure to climate-induced stressors such as heatwaves, energy demand spikes, and humidity fluctuations, rethinking insulation strategies become crucial to achieving thermal resilience and energy efficiency. Conventional insulation materials often rely on non-renewable resources and exhibit poor environmental performance, highlighting the urgent need for sustainable alternatives in building applications. This study aims to develop an eco-efficient thermal insulation material derived from agricultural residues to support climate-adaptive and low-carbon building practices. A bio-based thermal insulation panel composed of rice husk fiber was fabricated using polyvinyl alcohol (PVOH) as a binder, with formulations containing 0%, 5%, 10%, and 15% PVOH by weight. The prepared panels were evaluated for their mechanical strength, dimensional stability, and thermal conductivity. Experimental results indicate that the thermal insulation panel formulation containing 10% PVOH is optimal, exhibiting superior mechanical properties with a flexural strength of 9.822 MPa, a tensile strength of 4.369 MPa, and an internal bond strength of 0.038 MPa. Water absorption and thickness swelling were recorded at 92.13% and 33.61%, respectively, confirming good moisture stability. The best-performing sample achieved the lowest thermal conductivity of 0.245 W/m·K, indicating strong insulation potential. The findings highlight the viability of agricultural waste as a raw material for bio-insulation panels, offering both environmental and performance benefits. By reducing dependency on synthetic materials and enhancing indoor thermal comfort, this bio-based thermal insulation panel contributes to the design of resilient, low-carbon buildings capable of adapting to future climate conditions.
Title: <b>Bio-Based Insulation Panel from Rice Husk Residues for Thermal Resilience in Sustainable Buildings</b>
Description:
 As buildings face growing exposure to climate-induced stressors such as heatwaves, energy demand spikes, and humidity fluctuations, rethinking insulation strategies become crucial to achieving thermal resilience and energy efficiency.
Conventional insulation materials often rely on non-renewable resources and exhibit poor environmental performance, highlighting the urgent need for sustainable alternatives in building applications.
This study aims to develop an eco-efficient thermal insulation material derived from agricultural residues to support climate-adaptive and low-carbon building practices.
A bio-based thermal insulation panel composed of rice husk fiber was fabricated using polyvinyl alcohol (PVOH) as a binder, with formulations containing 0%, 5%, 10%, and 15% PVOH by weight.
The prepared panels were evaluated for their mechanical strength, dimensional stability, and thermal conductivity.
Experimental results indicate that the thermal insulation panel formulation containing 10% PVOH is optimal, exhibiting superior mechanical properties with a flexural strength of 9.
822 MPa, a tensile strength of 4.
369 MPa, and an internal bond strength of 0.
038 MPa.
Water absorption and thickness swelling were recorded at 92.
13% and 33.
61%, respectively, confirming good moisture stability.
The best-performing sample achieved the lowest thermal conductivity of 0.
245 W/m·K, indicating strong insulation potential.
The findings highlight the viability of agricultural waste as a raw material for bio-insulation panels, offering both environmental and performance benefits.
By reducing dependency on synthetic materials and enhancing indoor thermal comfort, this bio-based thermal insulation panel contributes to the design of resilient, low-carbon buildings capable of adapting to future climate conditions.

Related Results

Responsibilised Resilience? Reworking Neoliberal Social Policy Texts
Responsibilised Resilience? Reworking Neoliberal Social Policy Texts
Introduction This essay begins with the premise that resilience, broadly defined as positive adaptation despite adversity (Garmezy and Rutter), and resilience building are importa...
Upgrading rice husk biochar characteristics through microwave‐assisted phosphoric acid pretreatment followed by co‐pyrolysis with LDPE
Upgrading rice husk biochar characteristics through microwave‐assisted phosphoric acid pretreatment followed by co‐pyrolysis with LDPE
AbstractIn the present study, an attempt was made to upgrade the characteristics of rice husk biochar through a combination of two strategies: (i) microwave‐assisted phosphoric aci...
Upgrading the Rice Husk Biochar Characteristics Through Microwave Assisted Phosphoric Acid Pretreatment Followed by Copyrolysis with Ldpe
Upgrading the Rice Husk Biochar Characteristics Through Microwave Assisted Phosphoric Acid Pretreatment Followed by Copyrolysis with Ldpe
In the present study, an attempt was made to upgrade the characteristics of rice husk biochar through a combination of two strategies: i) microwave assisted phosphoric acid pretrea...
Thermal Performance and Building Energy Simulation of Precast Insulation Walls in Two Climate Zones
Thermal Performance and Building Energy Simulation of Precast Insulation Walls in Two Climate Zones
Traditional concrete buildings exhibit low energy consumption and high heat loss, which results in a larger environmental problem. Precast insulation walls are proposed for strengt...
Evaluation and Modeling the Performance of Rice Husk Gasifier Cook Stove for Household Energy Use
Evaluation and Modeling the Performance of Rice Husk Gasifier Cook Stove for Household Energy Use
This research paper aims to evaluate and model the performance of rice husk gasifier cook stoves for household energy use, a byproduct of rice milling. The study aims to address en...
Evaluation and Modeling the Performance of Rice Husk Gasifier Cook Stove for Household Energy Use
Evaluation and Modeling the Performance of Rice Husk Gasifier Cook Stove for Household Energy Use
This research paper aims to evaluate and model the performance of rice husk gasifier cook stoves for household energy use, a byproduct of rice milling. The study aims to address en...

Back to Top