FOAM GLASS GRAVEL MADE OF RECYCLED GLASS WASTE AND SILICON CARBIDE BY MICROWAVE HEATING

The paper presents recent achievements in the microwave use for manufacturing foam glass gravel from recycled glass waste and silicon carbide. The aim was to obtain a product with physical and mechanical characteristics almost similar to those of industrially manufactured materials by conventional...

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Autores principales: LUCIAN PAUNESCU, MARIUS FLORIN DRAGOESCU, SORIN MIRCEA AXINTE
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Lenguaje:EN
Publicado: Alma Mater Publishing House "Vasile Alecsandri" University of Bacau 2020
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Acceso en línea:https://doaj.org/article/83d990a2b45c460ca16e51dab01b73c2
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spelling oai:doaj.org-article:83d990a2b45c460ca16e51dab01b73c22021-12-02T19:49:55ZFOAM GLASS GRAVEL MADE OF RECYCLED GLASS WASTE AND SILICON CARBIDE BY MICROWAVE HEATING 10.29081/jesr.v26i3.2212068-75592344-4932https://doaj.org/article/83d990a2b45c460ca16e51dab01b73c22020-07-01T00:00:00Zhttp://www.jesr.ub.ro/1/article/view/221https://doaj.org/toc/2068-7559https://doaj.org/toc/2344-4932 The paper presents recent achievements in the microwave use for manufacturing foam glass gravel from recycled glass waste and silicon carbide. The aim was to obtain a product with physical and mechanical characteristics almost similar to those of industrially manufactured materials by conventional heating techniques, but with a higher energy efficiency. A foam glass with the thermal conductivity of 0.075 W/m·K and the compressive strength of 7.5 MPa was experimentally obtained. The specific energy consumption was of 1.0 kWh/kg comparable with the industrial processes and it could reach values up to 25% lower by using a high power industrial microwave equipment. LUCIAN PAUNESCUMARIUS FLORIN DRAGOESCUSORIN MIRCEA AXINTEAlma Mater Publishing House "Vasile Alecsandri" University of Bacauarticlefoam glass gravel, glass waste, silicon carbide, microwave, compressive strength, thermal conductivity, energy efficiencyTechnologyTEngineering (General). Civil engineering (General)TA1-2040ENJournal of Engineering Studies and Research, Vol 26, Iss 3 (2020)
institution DOAJ
collection DOAJ
language EN
topic foam glass gravel, glass waste, silicon carbide, microwave, compressive strength, thermal conductivity, energy efficiency
Technology
T
Engineering (General). Civil engineering (General)
TA1-2040
spellingShingle foam glass gravel, glass waste, silicon carbide, microwave, compressive strength, thermal conductivity, energy efficiency
Technology
T
Engineering (General). Civil engineering (General)
TA1-2040
LUCIAN PAUNESCU
MARIUS FLORIN DRAGOESCU
SORIN MIRCEA AXINTE
FOAM GLASS GRAVEL MADE OF RECYCLED GLASS WASTE AND SILICON CARBIDE BY MICROWAVE HEATING
description The paper presents recent achievements in the microwave use for manufacturing foam glass gravel from recycled glass waste and silicon carbide. The aim was to obtain a product with physical and mechanical characteristics almost similar to those of industrially manufactured materials by conventional heating techniques, but with a higher energy efficiency. A foam glass with the thermal conductivity of 0.075 W/m·K and the compressive strength of 7.5 MPa was experimentally obtained. The specific energy consumption was of 1.0 kWh/kg comparable with the industrial processes and it could reach values up to 25% lower by using a high power industrial microwave equipment.
format article
author LUCIAN PAUNESCU
MARIUS FLORIN DRAGOESCU
SORIN MIRCEA AXINTE
author_facet LUCIAN PAUNESCU
MARIUS FLORIN DRAGOESCU
SORIN MIRCEA AXINTE
author_sort LUCIAN PAUNESCU
title FOAM GLASS GRAVEL MADE OF RECYCLED GLASS WASTE AND SILICON CARBIDE BY MICROWAVE HEATING
title_short FOAM GLASS GRAVEL MADE OF RECYCLED GLASS WASTE AND SILICON CARBIDE BY MICROWAVE HEATING
title_full FOAM GLASS GRAVEL MADE OF RECYCLED GLASS WASTE AND SILICON CARBIDE BY MICROWAVE HEATING
title_fullStr FOAM GLASS GRAVEL MADE OF RECYCLED GLASS WASTE AND SILICON CARBIDE BY MICROWAVE HEATING
title_full_unstemmed FOAM GLASS GRAVEL MADE OF RECYCLED GLASS WASTE AND SILICON CARBIDE BY MICROWAVE HEATING
title_sort foam glass gravel made of recycled glass waste and silicon carbide by microwave heating
publisher Alma Mater Publishing House "Vasile Alecsandri" University of Bacau
publishDate 2020
url https://doaj.org/article/83d990a2b45c460ca16e51dab01b73c2
work_keys_str_mv AT lucianpaunescu foamglassgravelmadeofrecycledglasswasteandsiliconcarbidebymicrowaveheating
AT mariusflorindragoescu foamglassgravelmadeofrecycledglasswasteandsiliconcarbidebymicrowaveheating
AT sorinmirceaaxinte foamglassgravelmadeofrecycledglasswasteandsiliconcarbidebymicrowaveheating
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