Thermo-voltage and strength performance of catalysed biomass concrete with Phosphomolybdic Acid and Ferric Chloride as renewable energy source.

Catalyzed biomass concrete (CBC) is a cutting-edge technology that produces its own voltages when exposed to temperature changes. It is achieved by mixing catalyst and biomass in conventional concrete during fresh state, and the product generates electricity by oxidation. It helps in reducing cement...

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Main Authors: Lee, H. P., Gan, Z. S., Tan, K. S., Yong, Y. K., Abdul Rahman, N., Low, W. P., Awang, A. Z.
Format: Conference or Workshop Item
Language:English
Published: 2023
Subjects:
Online Access:http://eprints.utm.my/108353/1/AZAwang2023_ThermoVoltageandStrengthPerformanceofCatalysedBiomass.pdf
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author Lee, H. P.
Gan, Z. S.
Tan, K. S.
Yong, Y. K.
Abdul Rahman, N.
Low, W. P.
Awang, A. Z.
author_facet Lee, H. P.
Gan, Z. S.
Tan, K. S.
Yong, Y. K.
Abdul Rahman, N.
Low, W. P.
Awang, A. Z.
author_sort Lee, H. P.
collection ePrints
description Catalyzed biomass concrete (CBC) is a cutting-edge technology that produces its own voltages when exposed to temperature changes. It is achieved by mixing catalyst and biomass in conventional concrete during fresh state, and the product generates electricity by oxidation. It helps in reducing cement consumption and minimizing environmental effect, yet to produce new renewable energy from concrete itself. Existing studies has proven the voltage effectiveness of CBC but still low in compressive strength, making it not suitable to serve as load carrying component. Hence in this study, a new chemical combination of catalyst in CBC is examined and reported in its voltage and compressive strength performance. Cubes and specimens with catalyst percentage ranging from 5% to 40% were prepared and tested its compressive strength up to 56 days and its voltage performance under three different exposing condition from 0°C to 100°C. The findings show that CBC specimens with such catalyst combination able to produce voltages, where specimens with 40% of catalyst had the highest voltage measurement of 0.443V. While for compressive strength, CBC cubes with 10% of catalyst performed higher than 40%, but the strength captured with new catalyst combination is better that existing study. It is evident that CBC with such catalyst suitable to serve as load bearing component, and at the same time, generating electricity with complete circuit, under temperature different.
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spelling utm.eprints-1083532024-11-01T02:38:17Z http://eprints.utm.my/108353/ Thermo-voltage and strength performance of catalysed biomass concrete with Phosphomolybdic Acid and Ferric Chloride as renewable energy source. Lee, H. P. Gan, Z. S. Tan, K. S. Yong, Y. K. Abdul Rahman, N. Low, W. P. Awang, A. Z. TA Engineering (General). Civil engineering (General) Catalyzed biomass concrete (CBC) is a cutting-edge technology that produces its own voltages when exposed to temperature changes. It is achieved by mixing catalyst and biomass in conventional concrete during fresh state, and the product generates electricity by oxidation. It helps in reducing cement consumption and minimizing environmental effect, yet to produce new renewable energy from concrete itself. Existing studies has proven the voltage effectiveness of CBC but still low in compressive strength, making it not suitable to serve as load carrying component. Hence in this study, a new chemical combination of catalyst in CBC is examined and reported in its voltage and compressive strength performance. Cubes and specimens with catalyst percentage ranging from 5% to 40% were prepared and tested its compressive strength up to 56 days and its voltage performance under three different exposing condition from 0°C to 100°C. The findings show that CBC specimens with such catalyst combination able to produce voltages, where specimens with 40% of catalyst had the highest voltage measurement of 0.443V. While for compressive strength, CBC cubes with 10% of catalyst performed higher than 40%, but the strength captured with new catalyst combination is better that existing study. It is evident that CBC with such catalyst suitable to serve as load bearing component, and at the same time, generating electricity with complete circuit, under temperature different. 2023 Conference or Workshop Item PeerReviewed application/pdf en http://eprints.utm.my/108353/1/AZAwang2023_ThermoVoltageandStrengthPerformanceofCatalysedBiomass.pdf Lee, H. P. and Gan, Z. S. and Tan, K. S. and Yong, Y. K. and Abdul Rahman, N. and Low, W. P. and Awang, A. Z. (2023) Thermo-voltage and strength performance of catalysed biomass concrete with Phosphomolybdic Acid and Ferric Chloride as renewable energy source. In: 4th International Symposium on Civil and Environmental Engineering, ISCEE 2022, 3 October 2022 - 4 October 2022, Johor Bahru, Johor, Malaysia - Virtual, Online. http://dx.doi.org/10.1088/1755-1315/1205/1/012040
spellingShingle TA Engineering (General). Civil engineering (General)
Lee, H. P.
Gan, Z. S.
Tan, K. S.
Yong, Y. K.
Abdul Rahman, N.
Low, W. P.
Awang, A. Z.
Thermo-voltage and strength performance of catalysed biomass concrete with Phosphomolybdic Acid and Ferric Chloride as renewable energy source.
title Thermo-voltage and strength performance of catalysed biomass concrete with Phosphomolybdic Acid and Ferric Chloride as renewable energy source.
title_full Thermo-voltage and strength performance of catalysed biomass concrete with Phosphomolybdic Acid and Ferric Chloride as renewable energy source.
title_fullStr Thermo-voltage and strength performance of catalysed biomass concrete with Phosphomolybdic Acid and Ferric Chloride as renewable energy source.
title_full_unstemmed Thermo-voltage and strength performance of catalysed biomass concrete with Phosphomolybdic Acid and Ferric Chloride as renewable energy source.
title_short Thermo-voltage and strength performance of catalysed biomass concrete with Phosphomolybdic Acid and Ferric Chloride as renewable energy source.
title_sort thermo voltage and strength performance of catalysed biomass concrete with phosphomolybdic acid and ferric chloride as renewable energy source
topic TA Engineering (General). Civil engineering (General)
url http://eprints.utm.my/108353/1/AZAwang2023_ThermoVoltageandStrengthPerformanceofCatalysedBiomass.pdf
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