Novel waterproof ambient cured geopolymer concrete using integral crystalline waterproofing admixture

Geopolymer concrete (GC) is a promising alternative to conventional cement concrete owing to its environmental benefits. However, water penetration, which is a common concern, significantly affects the performance of GC, thus causing efflorescence, reinforcement corrosion, and scaling, among other d...

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Main Authors: Japneet Sidhu, Pardeep Kumar
Format: Article
Language:English
Published: Josip Juraj Strossmayer University of Osijek, Faculty of Civil Engineering and Architecture Osijek, Croatia 2025-01-01
Series:Advances in Civil and Architectural Engineering
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Online Access:https://hrcak.srce.hr/ojs/index.php/acae/article/view/31627/17555
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author Japneet Sidhu
Pardeep Kumar
author_facet Japneet Sidhu
Pardeep Kumar
author_sort Japneet Sidhu
collection DOAJ
description Geopolymer concrete (GC) is a promising alternative to conventional cement concrete owing to its environmental benefits. However, water penetration, which is a common concern, significantly affects the performance of GC, thus causing efflorescence, reinforcement corrosion, and scaling, among other durability issues, which affect its longevity. The present study attempts to clarify the efficacy of incorporating an integral crystalline waterproofing admixture in enhancing the durability of GC by reducing the penetration of water into the concrete matrix. The samples are subjected to compressive-strength and split-tensile-strength tests to evaluate the material’s strength properties. Additionally, water absorption, chloride penetrability, water contact angle, and acid-resistance tests are performed to ascertain the durability of the modified GC. The results show that GC samples with a 3 % crystalline waterproofing content performs the best, i.e., it reduced water absorption by 42,85 %, 40,90 %, and 45,26 % after 7; 28; and 56 days of curing. In addition to improving water absorption, the admixture significantly enhances the mechanical strength of GC, with increases in compressive strength by 15,74 %, 15,65 %, and 15,86 % at 7, 28, and 56 days, respectively. Additionally, scanning electron microscopy analysis is performed on the GC samples to understand the changes in the microstructure of GC mixes with various dosages of the crystalline waterproofing agent added to them.
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publisher Josip Juraj Strossmayer University of Osijek, Faculty of Civil Engineering and Architecture Osijek, Croatia
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spelling doaj-art-fb8fadfd3380431ca0d9f2fcbabf1b6a2025-08-20T02:44:17ZengJosip Juraj Strossmayer University of Osijek, Faculty of Civil Engineering and Architecture Osijek, CroatiaAdvances in Civil and Architectural Engineering2975-38482025-01-01163012614310.13167/2025.30.8Novel waterproof ambient cured geopolymer concrete using integral crystalline waterproofing admixtureJapneet Sidhu0Pardeep Kumar1Department of Civil Engineering, NIT Hamirpur, 177001, Hamirpur, Himachal Pradesh, IndiaDepartment of Civil Engineering, NIT Hamirpur, 177001, Hamirpur, Himachal Pradesh, IndiaGeopolymer concrete (GC) is a promising alternative to conventional cement concrete owing to its environmental benefits. However, water penetration, which is a common concern, significantly affects the performance of GC, thus causing efflorescence, reinforcement corrosion, and scaling, among other durability issues, which affect its longevity. The present study attempts to clarify the efficacy of incorporating an integral crystalline waterproofing admixture in enhancing the durability of GC by reducing the penetration of water into the concrete matrix. The samples are subjected to compressive-strength and split-tensile-strength tests to evaluate the material’s strength properties. Additionally, water absorption, chloride penetrability, water contact angle, and acid-resistance tests are performed to ascertain the durability of the modified GC. The results show that GC samples with a 3 % crystalline waterproofing content performs the best, i.e., it reduced water absorption by 42,85 %, 40,90 %, and 45,26 % after 7; 28; and 56 days of curing. In addition to improving water absorption, the admixture significantly enhances the mechanical strength of GC, with increases in compressive strength by 15,74 %, 15,65 %, and 15,86 % at 7, 28, and 56 days, respectively. Additionally, scanning electron microscopy analysis is performed on the GC samples to understand the changes in the microstructure of GC mixes with various dosages of the crystalline waterproofing agent added to them.https://hrcak.srce.hr/ojs/index.php/acae/article/view/31627/17555sustainableenvironment-friendlydurabilityadmixture
spellingShingle Japneet Sidhu
Pardeep Kumar
Novel waterproof ambient cured geopolymer concrete using integral crystalline waterproofing admixture
Advances in Civil and Architectural Engineering
sustainable
environment-friendly
durability
admixture
title Novel waterproof ambient cured geopolymer concrete using integral crystalline waterproofing admixture
title_full Novel waterproof ambient cured geopolymer concrete using integral crystalline waterproofing admixture
title_fullStr Novel waterproof ambient cured geopolymer concrete using integral crystalline waterproofing admixture
title_full_unstemmed Novel waterproof ambient cured geopolymer concrete using integral crystalline waterproofing admixture
title_short Novel waterproof ambient cured geopolymer concrete using integral crystalline waterproofing admixture
title_sort novel waterproof ambient cured geopolymer concrete using integral crystalline waterproofing admixture
topic sustainable
environment-friendly
durability
admixture
url https://hrcak.srce.hr/ojs/index.php/acae/article/view/31627/17555
work_keys_str_mv AT japneetsidhu novelwaterproofambientcuredgeopolymerconcreteusingintegralcrystallinewaterproofingadmixture
AT pardeepkumar novelwaterproofambientcuredgeopolymerconcreteusingintegralcrystallinewaterproofingadmixture