Eco-friendly fibre reinforced geopolymer concrete: A critical review on the microstructure and long-term durability properties

The environmental impact caused by the production process of ordinary Portland cement (OPC) concrete is a major challenge that requires demanding solutions in the construction sector. In the process of substituting OPC concrete production, the development of geopolymer concrete (GPC) is considered a...

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Main Authors: Weiwen Li, Eskinder Desta Shumuye, Tang Shiying, Zike Wang, Kefiyalew Zerfu
Format: Article
Language:English
Published: Elsevier 2022-06-01
Series:Case Studies in Construction Materials
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2214509522000262
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author Weiwen Li
Eskinder Desta Shumuye
Tang Shiying
Zike Wang
Kefiyalew Zerfu
author_facet Weiwen Li
Eskinder Desta Shumuye
Tang Shiying
Zike Wang
Kefiyalew Zerfu
author_sort Weiwen Li
collection DOAJ
description The environmental impact caused by the production process of ordinary Portland cement (OPC) concrete is a major challenge that requires demanding solutions in the construction sector. In the process of substituting OPC concrete production, the development of geopolymer concrete (GPC) is considered as the major breakthrough. However, research works related to durability of fibre reinforced geopolymer in several corrosive environments, i.e., sewage conveyer concrete pipeline, wastewater treatment, and offshore structures is limited compared to other types of concrete structures, and which is essential to estimate the long-term performance of concrete structure in extensive engineering applications. This review paper analyzes and discusses the mechanical and durability related properties of GPC containing various supplementary binding materials together with organic or synthetic fibres exposed to chloride salt, acid, and sulfate solution. Significant findings have concluded that the better long-term performance of geopolymer concrete is explained than OPC concrete, the durability mechanism is greatly affected by the calcium content. The fly ash/slag based geopolymer concrete geopolymer concrete specimens immersed in MgSO4 didn’t indicate a certain dimensional change in the first 120 d exposure, except that of salt deposition. Whereas, the conventional ordinary Portland cement, showed a 0.0184% expansion. Further, alkali activated slag mortar shows an approximate of 12 mm chloride penetration compared to the 10 mm depth of concrete specimens with a 25 w.t % fly ash replacement. Increasing the cement content from 10% to 20% had no significant effect on the properties of fly-ash based geopolymer concrete with crumb rubber and steel fibre subjected to normal and acid environmental exposure, considering the chemical reaction of sulfuric acid and calcium, and this chemical reaction led to the destruction of C-S-H bonds and production of different gypsums. The impact of fiber on the long-term behavior of geopolymer concrete have been highlighted. At last, potential recommendations and notable challenges have been forwarded for further studies on the durability of GPC.
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spelling doaj.art-5f200511b95e45339b9a2a0fc7fc74842022-12-22T02:37:20ZengElsevierCase Studies in Construction Materials2214-50952022-06-0116e00894Eco-friendly fibre reinforced geopolymer concrete: A critical review on the microstructure and long-term durability propertiesWeiwen Li0Eskinder Desta Shumuye1Tang Shiying2Zike Wang3Kefiyalew Zerfu4Guangdong Provincial Key Laboratory of Durability for Marine Civil Engineering, Shenzhen Durability Centre for Civil Engineering, College of Civil and Transportation Engineering, Shenzhen University, Shenzhen, Guangdong, ChinaGuangdong Provincial Key Laboratory of Durability for Marine Civil Engineering, Shenzhen Durability Centre for Civil Engineering, College of Civil and Transportation Engineering, Shenzhen University, Shenzhen, Guangdong, China; Department of Construction Technology and Management, Hawassa University Institute of Technology, Hawassa 05, Ethiopia; Corresponding author at: Guangdong Provincial Key Laboratory of Durability for Marine Civil Engineering, Shenzhen Durability Centre for Civil Engineering, College of Civil and Transportation Engineering, Shenzhen University, Shenzhen, Guangdong, China.Guangdong Provincial Key Laboratory of Durability for Marine Civil Engineering, Shenzhen Durability Centre for Civil Engineering, College of Civil and Transportation Engineering, Shenzhen University, Shenzhen, Guangdong, ChinaSchool of Mechanics and Safety Engineering, Zhengzhou University, Zhengzhou 450001, Henan, ChinaDepartment of Civil Engineering, Jimma Institute of Technology, Jimma University, EthiopiaThe environmental impact caused by the production process of ordinary Portland cement (OPC) concrete is a major challenge that requires demanding solutions in the construction sector. In the process of substituting OPC concrete production, the development of geopolymer concrete (GPC) is considered as the major breakthrough. However, research works related to durability of fibre reinforced geopolymer in several corrosive environments, i.e., sewage conveyer concrete pipeline, wastewater treatment, and offshore structures is limited compared to other types of concrete structures, and which is essential to estimate the long-term performance of concrete structure in extensive engineering applications. This review paper analyzes and discusses the mechanical and durability related properties of GPC containing various supplementary binding materials together with organic or synthetic fibres exposed to chloride salt, acid, and sulfate solution. Significant findings have concluded that the better long-term performance of geopolymer concrete is explained than OPC concrete, the durability mechanism is greatly affected by the calcium content. The fly ash/slag based geopolymer concrete geopolymer concrete specimens immersed in MgSO4 didn’t indicate a certain dimensional change in the first 120 d exposure, except that of salt deposition. Whereas, the conventional ordinary Portland cement, showed a 0.0184% expansion. Further, alkali activated slag mortar shows an approximate of 12 mm chloride penetration compared to the 10 mm depth of concrete specimens with a 25 w.t % fly ash replacement. Increasing the cement content from 10% to 20% had no significant effect on the properties of fly-ash based geopolymer concrete with crumb rubber and steel fibre subjected to normal and acid environmental exposure, considering the chemical reaction of sulfuric acid and calcium, and this chemical reaction led to the destruction of C-S-H bonds and production of different gypsums. The impact of fiber on the long-term behavior of geopolymer concrete have been highlighted. At last, potential recommendations and notable challenges have been forwarded for further studies on the durability of GPC.http://www.sciencedirect.com/science/article/pii/S2214509522000262GeopolymerOrdinary Portland cementDurabilityBar chip fibreMarineWastewater
spellingShingle Weiwen Li
Eskinder Desta Shumuye
Tang Shiying
Zike Wang
Kefiyalew Zerfu
Eco-friendly fibre reinforced geopolymer concrete: A critical review on the microstructure and long-term durability properties
Case Studies in Construction Materials
Geopolymer
Ordinary Portland cement
Durability
Bar chip fibre
Marine
Wastewater
title Eco-friendly fibre reinforced geopolymer concrete: A critical review on the microstructure and long-term durability properties
title_full Eco-friendly fibre reinforced geopolymer concrete: A critical review on the microstructure and long-term durability properties
title_fullStr Eco-friendly fibre reinforced geopolymer concrete: A critical review on the microstructure and long-term durability properties
title_full_unstemmed Eco-friendly fibre reinforced geopolymer concrete: A critical review on the microstructure and long-term durability properties
title_short Eco-friendly fibre reinforced geopolymer concrete: A critical review on the microstructure and long-term durability properties
title_sort eco friendly fibre reinforced geopolymer concrete a critical review on the microstructure and long term durability properties
topic Geopolymer
Ordinary Portland cement
Durability
Bar chip fibre
Marine
Wastewater
url http://www.sciencedirect.com/science/article/pii/S2214509522000262
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AT eskinderdestashumuye ecofriendlyfibrereinforcedgeopolymerconcreteacriticalreviewonthemicrostructureandlongtermdurabilityproperties
AT tangshiying ecofriendlyfibrereinforcedgeopolymerconcreteacriticalreviewonthemicrostructureandlongtermdurabilityproperties
AT zikewang ecofriendlyfibrereinforcedgeopolymerconcreteacriticalreviewonthemicrostructureandlongtermdurabilityproperties
AT kefiyalewzerfu ecofriendlyfibrereinforcedgeopolymerconcreteacriticalreviewonthemicrostructureandlongtermdurabilityproperties