Silicate Sawing Sludge Recovery in Thermo Eco-Mortar for Macroporous Plaster

The aim of this research was to develop a new eco-product to find a correct recovery of silicate sawing sludge by means of waste management according to European criteria. To reach this goal, a thermal eco-mortar for a macroporous plaster was developed. The main characteristics of a plaster that inf...

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Main Authors: Lorena Zichella, Paolo Marone, Pasquale Buonanno, Marco D’Amore, Rossana Bellopede
Format: Article
Language:English
Published: MDPI AG 2020-03-01
Series:Materials
Subjects:
Online Access:https://www.mdpi.com/1996-1944/13/6/1293
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spelling doaj-1519165353d649dab058222d5c84861d2020-11-25T02:34:27ZengMDPI AGMaterials1996-19442020-03-01136129310.3390/ma13061293ma13061293Silicate Sawing Sludge Recovery in Thermo Eco-Mortar for Macroporous PlasterLorena Zichella0Paolo Marone1Pasquale Buonanno2Marco D’Amore3Rossana Bellopede4Department of Environment, Land and Infrastructure Engineering (DIATI), Politecnico di Torino, 10129 Turin, ItalyI.S.I.M.—Istituto Internazionale del Marmo, 20154 Milan, ItalyBunker TEK.SP.ED. srl, Casandrino (NA), 80025 Casandrino, Napoli, ItalyI.S.I.M.—Istituto Internazionale del Marmo, 20154 Milan, ItalyDepartment of Environment, Land and Infrastructure Engineering (DIATI), Politecnico di Torino, 10129 Turin, ItalyThe aim of this research was to develop a new eco-product to find a correct recovery of silicate sawing sludge by means of waste management according to European criteria. To reach this goal, a thermal eco-mortar for a macroporous plaster was developed. The main characteristics of a plaster that influence the correct choice of the mortar are good adherence with underlying support, impermeability, thermal and acoustic insulation, mechanical resistance and ability to allow transpiration processes through the wall’s perimeters. Plaster is a mortar composed of a binding part that incorporates sand with a selected particle size distribution, not greater than 2 mm. The sludge, to be used as plaster, must satisfy requirements related to thermal insulation, resistance to moisture, mechanical resistance and good injection. For this purpose, low-content metals sludge, derived from the Luserna stone flaming and cutting slabs, are to be reused as a substitute for the sands and fine particles, respectively, that are normally used to produce plasters. The laboratory tests carried out on the finished product, in accordance with European standards, are as follows: water absorption, specific density, flexural and compressive strength, before and after freeze and thaw cycles, pull out, salt crystallisation cycle resistance and thermal conductivity. Chemical and leaching tests were carried out to verify the possible release of heavy metals into the environment after installation. The product quality was demonstrated as the cement mortars, incorporating the metals, did not allow their release in nature. A sludge recovery, in an unaltered state, was provided to reduce any costs connected to a pre-treatment and to make recovery economically advantageous for the stone sector.https://www.mdpi.com/1996-1944/13/6/1293silicate sawing sludgeeco-plasterwaste managementcircular economywaste recovery
collection DOAJ
language English
format Article
sources DOAJ
author Lorena Zichella
Paolo Marone
Pasquale Buonanno
Marco D’Amore
Rossana Bellopede
spellingShingle Lorena Zichella
Paolo Marone
Pasquale Buonanno
Marco D’Amore
Rossana Bellopede
Silicate Sawing Sludge Recovery in Thermo Eco-Mortar for Macroporous Plaster
Materials
silicate sawing sludge
eco-plaster
waste management
circular economy
waste recovery
author_facet Lorena Zichella
Paolo Marone
Pasquale Buonanno
Marco D’Amore
Rossana Bellopede
author_sort Lorena Zichella
title Silicate Sawing Sludge Recovery in Thermo Eco-Mortar for Macroporous Plaster
title_short Silicate Sawing Sludge Recovery in Thermo Eco-Mortar for Macroporous Plaster
title_full Silicate Sawing Sludge Recovery in Thermo Eco-Mortar for Macroporous Plaster
title_fullStr Silicate Sawing Sludge Recovery in Thermo Eco-Mortar for Macroporous Plaster
title_full_unstemmed Silicate Sawing Sludge Recovery in Thermo Eco-Mortar for Macroporous Plaster
title_sort silicate sawing sludge recovery in thermo eco-mortar for macroporous plaster
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2020-03-01
description The aim of this research was to develop a new eco-product to find a correct recovery of silicate sawing sludge by means of waste management according to European criteria. To reach this goal, a thermal eco-mortar for a macroporous plaster was developed. The main characteristics of a plaster that influence the correct choice of the mortar are good adherence with underlying support, impermeability, thermal and acoustic insulation, mechanical resistance and ability to allow transpiration processes through the wall’s perimeters. Plaster is a mortar composed of a binding part that incorporates sand with a selected particle size distribution, not greater than 2 mm. The sludge, to be used as plaster, must satisfy requirements related to thermal insulation, resistance to moisture, mechanical resistance and good injection. For this purpose, low-content metals sludge, derived from the Luserna stone flaming and cutting slabs, are to be reused as a substitute for the sands and fine particles, respectively, that are normally used to produce plasters. The laboratory tests carried out on the finished product, in accordance with European standards, are as follows: water absorption, specific density, flexural and compressive strength, before and after freeze and thaw cycles, pull out, salt crystallisation cycle resistance and thermal conductivity. Chemical and leaching tests were carried out to verify the possible release of heavy metals into the environment after installation. The product quality was demonstrated as the cement mortars, incorporating the metals, did not allow their release in nature. A sludge recovery, in an unaltered state, was provided to reduce any costs connected to a pre-treatment and to make recovery economically advantageous for the stone sector.
topic silicate sawing sludge
eco-plaster
waste management
circular economy
waste recovery
url https://www.mdpi.com/1996-1944/13/6/1293
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