Analytical Review of Geopolymer Concrete: Retrospective and Current Issues

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Date

2023

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Journal ISSN

Volume Title

Publisher

MDPI

Open Access Color

GOLD

Green Open Access

Yes

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Top 1%
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Abstract

The concept of sustainable development provides for the search for environmentally friendly alternatives to traditional materials and technologies that would reduce the amount of CO2 emissions into the atmosphere, do not pollute the environment, and reduce energy costs and the cost of production processes. These technologies include the production of geopolymer concretes. The purpose of the study was a detailed in-depth analytical review of studies of the processes of structure formation and properties of geopolymer concretes in retrospect and the current state of the issue. Geopolymer concrete is a suitable, environmentally friendly and sustainable alternative to concrete based on ordinary Portland cement (OPC) with higher strength and deformation properties due to its more stable and denser aluminosilicate spatial microstructure. The properties and durability of geopolymer concretes depend on the composition of the mixture and the proportions of its components. A review of the mechanisms of structure formation, the main directions for the selection of compositions and processes of polymerization of geopolymer concretes has been made. The technologies of combined selection of the composition of geopolymer concrete, production of nanomodified geopolymer concrete, 3D printing of building structures from geopolymer concrete, and monitoring the state of structures using self-sensitive geopolymer concrete are considered. Geopolymer concrete with the optimal ratio of activator and binder has the best properties. Geopolymer concretes with partial replacement of OPC with aluminosilicate binder have a denser and more compact microstructure due to the formation of a large amount of calcium silicate hydrate, which provides improved strength, durability, less shrinkage, porosity and water absorption. An assessment of the potential reduction in greenhouse gas emissions from the production of geopolymer concrete compared to the production of OPC has been made. The potential of using geopolymer concretes in construction practice is assessed in detail.

Description

Keywords

clinker-free binder, geopolymer concrete, aluminosilicates, silica, polymerization, Blast-Furnace Slag, Calcium Fly-Ash, Alkali-Activated Slag, Life-Cycle Assessment, Mechanical-Properties, Compressive Strength, Drying Shrinkage, Curing Condition, Setting Time, Cement, 13. Climate action, Review, 11. Sustainability, 7. Clean energy, 12. Responsible consumption

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WoS Q

Q2

Scopus Q

Q2
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OpenCitations Citation Count
43

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Materials

Volume

16

Issue

10

Start Page

3792

End Page

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Citations

Scopus : 66

PubMed : 8

Captures

Mendeley Readers : 178

SCOPUS™ Citations

62

checked on Feb 03, 2026

Web of Science™ Citations

52

checked on Feb 03, 2026

Downloads

8

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13.49746096

Sustainable Development Goals

6

CLEAN WATER AND SANITATION
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7

AFFORDABLE AND CLEAN ENERGY
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8

DECENT WORK AND ECONOMIC GROWTH
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9

INDUSTRY, INNOVATION AND INFRASTRUCTURE
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12

RESPONSIBLE CONSUMPTION AND PRODUCTION
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13

CLIMATE ACTION
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