Optimizing Carbonation Hardening for Lightweight Concrete

This study investigates the accelerated carbonation hardening (ACH) of lightweight aggregate concrete. It evaluates the effects of binder content, ground limestone, lightweight aggregates, plasticizers, carbonation pressure, and duration on compressive strength at 1 hour, 28 days, and 180 days. Stat...

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Main Authors: Olexander Gara, Anatoliy Gara, Andrii Kolesnykov, Khrystyna Moskalova
Format: Article
Language:English
Published: University North 2025-01-01
Series:Tehnički Glasnik
Subjects:
Online Access:https://hrcak.srce.hr/file/473481
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author Olexander Gara
Anatoliy Gara
Andrii Kolesnykov
Khrystyna Moskalova
author_facet Olexander Gara
Anatoliy Gara
Andrii Kolesnykov
Khrystyna Moskalova
author_sort Olexander Gara
collection DOAJ
description This study investigates the accelerated carbonation hardening (ACH) of lightweight aggregate concrete. It evaluates the effects of binder content, ground limestone, lightweight aggregates, plasticizers, carbonation pressure, and duration on compressive strength at 1 hour, 28 days, and 180 days. Statistical models and optimization using desirability functions were employed to identify optimal recipe and technological parameters. ACH enhances concrete strength and promotes sustainable carbon sequestration, providing an alternative to conventional curing methods.
format Article
id doaj-art-b3edeb9e7e0f4a7f917445ec39bfccec
institution Kabale University
issn 1846-6168
1848-5588
language English
publishDate 2025-01-01
publisher University North
record_format Article
series Tehnički Glasnik
spelling doaj-art-b3edeb9e7e0f4a7f917445ec39bfccec2025-02-06T15:00:05ZengUniversity NorthTehnički Glasnik1846-61681848-55882025-01-01191727710.31803/tg-20241231153205Optimizing Carbonation Hardening for Lightweight ConcreteOlexander Gara0Anatoliy Gara1Andrii Kolesnykov2Khrystyna Moskalova3Odessa State Academy of Civil Engineering and Architecture, Construction and Technological Institute, Department of Processes and Apparatuses in the Technology of Building Materials, Didrihsona st., 4, 65029 Odesa, UkraineOdessa State Academy of Civil Engineering and Architecture, Construction and Technological Institute, Department of Production of Construction Products and Structures, Didrihsona st., 4, 65029 Odesa, UkraineOdessa State Academy of Civil Engineering and Architecture, Construction and Technological Institute, Department of Chemistry and Ecology, Didrihsona st., 4, 65029 Odesa, UkraineDevelopment and Training Centre for the Metal Industry—Metal Centre Čakovec, Department for Research and Development, Bana Josipa Jelačića, 22D, 40000 Čakovec, CroatiaThis study investigates the accelerated carbonation hardening (ACH) of lightweight aggregate concrete. It evaluates the effects of binder content, ground limestone, lightweight aggregates, plasticizers, carbonation pressure, and duration on compressive strength at 1 hour, 28 days, and 180 days. Statistical models and optimization using desirability functions were employed to identify optimal recipe and technological parameters. ACH enhances concrete strength and promotes sustainable carbon sequestration, providing an alternative to conventional curing methods.https://hrcak.srce.hr/file/473481accelerated carbonationlightweight concreteoptimizationrecipe factorsresponse surface
spellingShingle Olexander Gara
Anatoliy Gara
Andrii Kolesnykov
Khrystyna Moskalova
Optimizing Carbonation Hardening for Lightweight Concrete
Tehnički Glasnik
accelerated carbonation
lightweight concrete
optimization
recipe factors
response surface
title Optimizing Carbonation Hardening for Lightweight Concrete
title_full Optimizing Carbonation Hardening for Lightweight Concrete
title_fullStr Optimizing Carbonation Hardening for Lightweight Concrete
title_full_unstemmed Optimizing Carbonation Hardening for Lightweight Concrete
title_short Optimizing Carbonation Hardening for Lightweight Concrete
title_sort optimizing carbonation hardening for lightweight concrete
topic accelerated carbonation
lightweight concrete
optimization
recipe factors
response surface
url https://hrcak.srce.hr/file/473481
work_keys_str_mv AT olexandergara optimizingcarbonationhardeningforlightweightconcrete
AT anatoliygara optimizingcarbonationhardeningforlightweightconcrete
AT andriikolesnykov optimizingcarbonationhardeningforlightweightconcrete
AT khrystynamoskalova optimizingcarbonationhardeningforlightweightconcrete