Thermal Conductivity of Sand-Lime Products Modified with Foam Glass Granulate

Author:

Jasińska IgaORCID,Dachowski RyszardORCID,Jaworska-Wędzińska Monika

Abstract

Waste glass constitutes a significant part of general waste worldwide. Unfortunately, only a small percentage is recycled. It is, therefore, quite important that it can be applied in the production of construction materials. The main aim of this article is to determine the thermal conductivity of the products modified with granulated foam glass (GFG) (recycled product) of the 0.25–0.5 mm fraction, as well as to indicate dependence of the change in volume density of samples caused by the use of GFG and the change of the thermal conductivity coefficient compared to reference samples. For the purpose of this research, various parameters were examined i.a. volume density, water absorption, determination of the pore size distribution by mercury porosimetry and determination of the heat conduction coefficient with the use of a plate apparatus. The test results were developed on the basis of a mathematical model that determined the influence of the filler on the functional properties of the product. The research has shown that the use of GFG in the sand-lime products will contribute to lowering their thermal conductivity by more than 50% compared to traditional products.

Publisher

MDPI AG

Subject

General Materials Science

Reference51 articles.

1. Glass Recykling;Kuśnierz;Pract. Inst. Ceram. I Mater. Bud.,2010

2. Recycling of waste glass in cement mortars: Mechanical properties under high temperature loading

3. What a Waste 2.0. Aglobal Snapshot of Solid Waste Management to 2050. Urban Development;Kaza,2018

4. Energy, Transport and Environment Statistics, Statistical Book,2020

5. Sustainable Utilization of Waste Glass in Concrete: a Review

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