| | SLO | ENG | Cookies and privacy

Bigger font | Smaller font

Show document Help

Title:Thermal, mechanical, and microstructural properties of novel light expanded clay aggregate (LECA)-based geopolymer concretes
Authors:ID Podnar, Tinkara Marija (Author)
ID Kravanja, Gregor (Author)
Files:.pdf jcs-09-00069.pdf (3,94 MB)
MD5: 4A3277B9932D51B863AF25ED477CF0C8
 
Language:English
Work type:Unknown
Typology:1.01 - Original Scientific Article
Organization:FGPA - Faculty of Civil Engineering, Transportation Engineering and Architecture
FKKT - Faculty of Chemistry and Chemical Engineering
Abstract:The construction sector’s reliance on traditional cement significantly contributes to CO2 emissions, underscoring the urgent need for sustainable alternatives. This study investigates fine (0–4 mm), rounded, uncoated, porous-surfaced lightweight expanded clay aggregate (LECA)-based geopolymers, which combine the low-carbon benefits of geopolymers with LECA’s lightweight and insulating properties. Geopolymers were synthesized using lignite-rich fly ash with varying ratios of LECA to aggregate. Mechanical testing revealed that the reference mixture without LECA (REF-GEO) achieved the highest compressive strength of 37.89 ± 0.75 MPa and flexural strength of 7.62 ± 0.11 MPa, while complete substitution of the aggregate with LECA (LECA-100%) reduced the compressive strength to 17.31 ± 0.88 MPa and flexural strength to 3.41 ± 0.11 MPa. The density of the samples decreased from 2.06 g/cm3 for REF-GEO to 1.31 g/cm3 for LECA-100%, and thermal conductivity dropped significantly from 1.15 ± 0.07 W/mK to 0.38 ± 0.01 W/mK. Microstructural analysis using XRD and SEM-EDX highlighted changes in the material’s internal structure and the increase in porosity with higher LECA content. Water vapor permeability increases over time, particularly in samples with higher LECA content. These findings suggest that LECA-based geopolymers are suitable for low-load or non-structural elements. They are ideal for sustainable, energy-efficient construction that requires lightweight, insulating, and breathable materials.
Keywords:geopolymers, LECA, fly-ash, sustainable composites
Publication status:Published
Publication version:Version of Record
Submitted for review:23.01.2025
Article acceptance date:28.01.2025
Publication date:04.02.2025
Year of publishing:2025
Number of pages:15 str.
Numbering:Vol. 9, iss. 2, [art. no.] 69
PID:20.500.12556/DKUM-91836 New window
UDC:544.6.018.47
ISSN on article:2504-477X
COBISS.SI-ID:225168387 New window
DOI:10.3390/jcs9020069 New window
Copyright:© 2025 by the authors
Publication date in DKUM:12.02.2025
Views:162
Downloads:29
Metadata:XML DC-XML DC-RDF
Categories:Misc.
:
Copy citation
  
Average score:(0 votes)
Your score:Voting is allowed only for logged in users.
Share:Bookmark and Share



Hover the mouse pointer over a document title to show the abstract or click on the title to get all document metadata.

Record is a part of a journal

Title:Journal of composites science
Shortened title:J. compos. sci.
Publisher:MDPI
ISSN:2504-477X
COBISS.SI-ID:529755673 New window

Document is financed by a project

Funder:ARIS - Slovenian Research and Innovation Agency
Project number:P2-0046
Name:Separacijski procesi in produktna tehnika

Licences

License:CC BY 4.0, Creative Commons Attribution 4.0 International
Link:http://creativecommons.org/licenses/by/4.0/
Description:This is the standard Creative Commons license that gives others maximum freedom to do what they want with the work as long as they credit the author.

Secondary language

Language:Slovenian
Keywords:geopolimeri, trajnostni kompoziti, leteči pepel


Comments

Leave comment

You must log in to leave a comment.

Comments (0)
0 - 0 / 0
 
There are no comments!

Back
Logos of partners University of Maribor University of Ljubljana University of Primorska University of Nova Gorica