The Fly-Ash Based Geopolymer Composites as an Innovative Material for Circular

A circular economy is the answer to the problem of wasting raw materials and increasing environmental pollution. It is based on the effective use of materials - from extraction, through use, to the way of managing waste. Analyzing the impact of particular industries on the production of pollution, i...

Full description

Bibliographic Details
Main Authors: Łach Michał, Grela Agnieszka, Kozub Barbara, Korniejenko Kinga, Azzopardi Brian
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:MATEC Web of Conferences
Online Access:https://www.matec-conferences.org/articles/matecconf/pdf/2020/18/matecconf_matbud2020_01016.pdf
id doaj-76beb70633c84d0a9cc4e52f1aa9c388
record_format Article
spelling doaj-76beb70633c84d0a9cc4e52f1aa9c3882021-08-05T13:51:36ZengEDP SciencesMATEC Web of Conferences2261-236X2020-01-013220101610.1051/matecconf/202032201016matecconf_matbud2020_01016The Fly-Ash Based Geopolymer Composites as an Innovative Material for CircularŁach Michał0Grela Agnieszka1Kozub Barbara2Korniejenko Kinga3Azzopardi Brian4Institute of Materials Engineering, Faculty of Material Engineering and Physics, Cracow University of TechnologyDepartment of Engineering and Water Management, Faculty of Environmental and Power Engineering, Cracow University of TechnologyInstitute of Materials Engineering, Faculty of Material Engineering and Physics, Cracow University of TechnologyInstitute of Materials Engineering, Faculty of Material Engineering and Physics, Cracow University of TechnologyMCAST Energy Research Group, Malta College of Arts, Science and TechnologyA circular economy is the answer to the problem of wasting raw materials and increasing environmental pollution. It is based on the effective use of materials - from extraction, through use, to the way of managing waste. Analyzing the impact of particular industries on the production of pollution, it can be concluded that the construction is one of such industries. In order to reduce the negative impact of the construction on the environment resulting from energy consumption and large amounts of generated waste, various researches are carried out on modern and innovative materials production solutions. One of the possibilities is a production technology based on the alkaline-activated compositions and geopolymers. The advantage of this technology is that it has a much lower carbon footprint compared to the traditional production methods used in construction - during the synthesis of geopolymers the emission of CO2 is 4-8 times lower and also the energy consumption is reduced up to 2-3 times. This article shows the possibility of using the industrial and mining waste for creating new eco-friendly materials – geopolymers. The paper presents the results of studies on geopolymer composites reinforced with addition of 1% by weight of different types of natural fibers i.e.: short hemp fibres, raw flax fibres (shortened), long flax fibres (stannous) and linseed cotonin. The paper showed that geopolymer composites can be successfully produced with the addition of natural fibres (often waste) and have good strength parameters even after long-term use.https://www.matec-conferences.org/articles/matecconf/pdf/2020/18/matecconf_matbud2020_01016.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Łach Michał
Grela Agnieszka
Kozub Barbara
Korniejenko Kinga
Azzopardi Brian
spellingShingle Łach Michał
Grela Agnieszka
Kozub Barbara
Korniejenko Kinga
Azzopardi Brian
The Fly-Ash Based Geopolymer Composites as an Innovative Material for Circular
MATEC Web of Conferences
author_facet Łach Michał
Grela Agnieszka
Kozub Barbara
Korniejenko Kinga
Azzopardi Brian
author_sort Łach Michał
title The Fly-Ash Based Geopolymer Composites as an Innovative Material for Circular
title_short The Fly-Ash Based Geopolymer Composites as an Innovative Material for Circular
title_full The Fly-Ash Based Geopolymer Composites as an Innovative Material for Circular
title_fullStr The Fly-Ash Based Geopolymer Composites as an Innovative Material for Circular
title_full_unstemmed The Fly-Ash Based Geopolymer Composites as an Innovative Material for Circular
title_sort fly-ash based geopolymer composites as an innovative material for circular
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2020-01-01
description A circular economy is the answer to the problem of wasting raw materials and increasing environmental pollution. It is based on the effective use of materials - from extraction, through use, to the way of managing waste. Analyzing the impact of particular industries on the production of pollution, it can be concluded that the construction is one of such industries. In order to reduce the negative impact of the construction on the environment resulting from energy consumption and large amounts of generated waste, various researches are carried out on modern and innovative materials production solutions. One of the possibilities is a production technology based on the alkaline-activated compositions and geopolymers. The advantage of this technology is that it has a much lower carbon footprint compared to the traditional production methods used in construction - during the synthesis of geopolymers the emission of CO2 is 4-8 times lower and also the energy consumption is reduced up to 2-3 times. This article shows the possibility of using the industrial and mining waste for creating new eco-friendly materials – geopolymers. The paper presents the results of studies on geopolymer composites reinforced with addition of 1% by weight of different types of natural fibers i.e.: short hemp fibres, raw flax fibres (shortened), long flax fibres (stannous) and linseed cotonin. The paper showed that geopolymer composites can be successfully produced with the addition of natural fibres (often waste) and have good strength parameters even after long-term use.
url https://www.matec-conferences.org/articles/matecconf/pdf/2020/18/matecconf_matbud2020_01016.pdf
work_keys_str_mv AT łachmichał theflyashbasedgeopolymercompositesasaninnovativematerialforcircular
AT grelaagnieszka theflyashbasedgeopolymercompositesasaninnovativematerialforcircular
AT kozubbarbara theflyashbasedgeopolymercompositesasaninnovativematerialforcircular
AT korniejenkokinga theflyashbasedgeopolymercompositesasaninnovativematerialforcircular
AT azzopardibrian theflyashbasedgeopolymercompositesasaninnovativematerialforcircular
AT łachmichał flyashbasedgeopolymercompositesasaninnovativematerialforcircular
AT grelaagnieszka flyashbasedgeopolymercompositesasaninnovativematerialforcircular
AT kozubbarbara flyashbasedgeopolymercompositesasaninnovativematerialforcircular
AT korniejenkokinga flyashbasedgeopolymercompositesasaninnovativematerialforcircular
AT azzopardibrian flyashbasedgeopolymercompositesasaninnovativematerialforcircular
_version_ 1721220502494642176