Gypsum Composites with Modified Waste Expanded Polystyrene

The construction and demolition waste recycling into secondary raw materials is vital to achieving a sustainable and circular building life cycle. Expanded polystyrene (EPS) is one of the materials whose recycling rate should be increased. EPS boards can be shredded and used as aggregate of lightwei...

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Main Authors: Pauls P. Argalis, Girts Bumanis, Diana Bajare
Format: Article
Language:English
Published: MDPI AG 2023-05-01
Series:Journal of Composites Science
Subjects:
Online Access:https://www.mdpi.com/2504-477X/7/5/203
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author Pauls P. Argalis
Girts Bumanis
Diana Bajare
author_facet Pauls P. Argalis
Girts Bumanis
Diana Bajare
author_sort Pauls P. Argalis
collection DOAJ
description The construction and demolition waste recycling into secondary raw materials is vital to achieving a sustainable and circular building life cycle. Expanded polystyrene (EPS) is one of the materials whose recycling rate should be increased. EPS boards can be shredded and used as aggregate of lightweight cement composites resulting in a material with combined properties subjected from EPS and mineral binder. To reduce the open structure of shredded EPS particles, proper treatment could improve EPS performance. The heat treatment of the aggregates can reduce the volume and increase their density. In this paper, EPS aggregates were heat-treated at 120 and 130 °C, and heat-modified EPS aggregates with a bulk density of 40 and 100 kg/m<sup>3</sup> were incorporated as filler material in gypsum composites. The composites’ density, compressive strength, thermal conductivity, and sound absorption were characterized. Results indicate that a composite with a compressive strength from 15 to 136 kPa and a material density ranging from 48 to 194 kg/m<sup>3</sup> can be obtained. Thermal conductivity was achieved from 0.0390 to 0.0604 W/(mK). Following the ISO 10534-2 standard, the noise reduction coefficient was determined and showed promising results at 600 to 800 Hz, reaching a sound absorption coefficient of 0.88.
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spelling doaj.art-fa3fd7a2a8fc458ab7abc4dbe21658692023-11-18T01:56:22ZengMDPI AGJournal of Composites Science2504-477X2023-05-017520310.3390/jcs7050203Gypsum Composites with Modified Waste Expanded PolystyrenePauls P. Argalis0Girts Bumanis1Diana Bajare2Institute of Materials and Structures, Faculty of Civil Engineering, Riga Technical University, Kipsalas Street 6A, LV-1048 Riga, LatviaInstitute of Materials and Structures, Faculty of Civil Engineering, Riga Technical University, Kipsalas Street 6A, LV-1048 Riga, LatviaInstitute of Materials and Structures, Faculty of Civil Engineering, Riga Technical University, Kipsalas Street 6A, LV-1048 Riga, LatviaThe construction and demolition waste recycling into secondary raw materials is vital to achieving a sustainable and circular building life cycle. Expanded polystyrene (EPS) is one of the materials whose recycling rate should be increased. EPS boards can be shredded and used as aggregate of lightweight cement composites resulting in a material with combined properties subjected from EPS and mineral binder. To reduce the open structure of shredded EPS particles, proper treatment could improve EPS performance. The heat treatment of the aggregates can reduce the volume and increase their density. In this paper, EPS aggregates were heat-treated at 120 and 130 °C, and heat-modified EPS aggregates with a bulk density of 40 and 100 kg/m<sup>3</sup> were incorporated as filler material in gypsum composites. The composites’ density, compressive strength, thermal conductivity, and sound absorption were characterized. Results indicate that a composite with a compressive strength from 15 to 136 kPa and a material density ranging from 48 to 194 kg/m<sup>3</sup> can be obtained. Thermal conductivity was achieved from 0.0390 to 0.0604 W/(mK). Following the ISO 10534-2 standard, the noise reduction coefficient was determined and showed promising results at 600 to 800 Hz, reaching a sound absorption coefficient of 0.88.https://www.mdpi.com/2504-477X/7/5/203waste recyclingcomposite materialsthermal insulationacoustic materialsEPS aggregategypsum
spellingShingle Pauls P. Argalis
Girts Bumanis
Diana Bajare
Gypsum Composites with Modified Waste Expanded Polystyrene
Journal of Composites Science
waste recycling
composite materials
thermal insulation
acoustic materials
EPS aggregate
gypsum
title Gypsum Composites with Modified Waste Expanded Polystyrene
title_full Gypsum Composites with Modified Waste Expanded Polystyrene
title_fullStr Gypsum Composites with Modified Waste Expanded Polystyrene
title_full_unstemmed Gypsum Composites with Modified Waste Expanded Polystyrene
title_short Gypsum Composites with Modified Waste Expanded Polystyrene
title_sort gypsum composites with modified waste expanded polystyrene
topic waste recycling
composite materials
thermal insulation
acoustic materials
EPS aggregate
gypsum
url https://www.mdpi.com/2504-477X/7/5/203
work_keys_str_mv AT paulspargalis gypsumcompositeswithmodifiedwasteexpandedpolystyrene
AT girtsbumanis gypsumcompositeswithmodifiedwasteexpandedpolystyrene
AT dianabajare gypsumcompositeswithmodifiedwasteexpandedpolystyrene