Cement Kiln By-Pass Dust: An Effective Alkaline Activator for Pozzolanic Materials

Cement kiln by-pass dust (CKD) is a fine-grained by-product of Portland clinker manufacturing. Its chemical composition is not suitable for returning back into feedstock and, therefore, it has to be discharged. Such an increasing waste production contributes to the high environmental impact of the c...

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Main Authors: Lukáš Kalina, Vlastimil Bílek, Tomáš Kiripolský, Radoslav Novotný, Jiří Másilko
Format: Article
Language:English
Published: MDPI AG 2018-09-01
Series:Materials
Subjects:
Online Access:http://www.mdpi.com/1996-1944/11/9/1770
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spelling doaj-b0c6ddaf79154521ba10e800c7a3d2842020-11-24T21:48:27ZengMDPI AGMaterials1996-19442018-09-01119177010.3390/ma11091770ma11091770Cement Kiln By-Pass Dust: An Effective Alkaline Activator for Pozzolanic MaterialsLukáš Kalina0Vlastimil Bílek1Tomáš Kiripolský2Radoslav Novotný3Jiří Másilko4Materials Research Centre, Faculty of Chemistry, Brno University of Technology, Brno 61200, Czech RepublicMaterials Research Centre, Faculty of Chemistry, Brno University of Technology, Brno 61200, Czech RepublicMaterials Research Centre, Faculty of Chemistry, Brno University of Technology, Brno 61200, Czech RepublicMaterials Research Centre, Faculty of Chemistry, Brno University of Technology, Brno 61200, Czech RepublicMaterials Research Centre, Faculty of Chemistry, Brno University of Technology, Brno 61200, Czech RepublicCement kiln by-pass dust (CKD) is a fine-grained by-product of Portland clinker manufacturing. Its chemical composition is not suitable for returning back into feedstock and, therefore, it has to be discharged. Such an increasing waste production contributes to the high environmental impact of the cement industry. A possible solution for the ecological processing of CKD is its incorporation into alkali-activated blast furnace slag binders. Thanks to high alkaline content, CKD serves as an effective accelerator for latent hydraulic substances which positively affect their mechanical properties. It was found out that CKD in combination with sodium carbonate creates sodium hydroxide in situ which together with sodium water glass content increases the dissolution of blast furnace slag particles and subsequently binder phase formation resulting in better flexural and compressive strength development compared to the sample without it. At the same time, the addition of CKD compensates the autogenous shrinkage of alkali-activated materials reducing the risk of material cracking. On the other hand, this type of inorganic admixture accelerates the hydration process causing rapid loss of workability.http://www.mdpi.com/1996-1944/11/9/1770cement kiln by-pass dustalkali activationblast furnace slagadmixture
collection DOAJ
language English
format Article
sources DOAJ
author Lukáš Kalina
Vlastimil Bílek
Tomáš Kiripolský
Radoslav Novotný
Jiří Másilko
spellingShingle Lukáš Kalina
Vlastimil Bílek
Tomáš Kiripolský
Radoslav Novotný
Jiří Másilko
Cement Kiln By-Pass Dust: An Effective Alkaline Activator for Pozzolanic Materials
Materials
cement kiln by-pass dust
alkali activation
blast furnace slag
admixture
author_facet Lukáš Kalina
Vlastimil Bílek
Tomáš Kiripolský
Radoslav Novotný
Jiří Másilko
author_sort Lukáš Kalina
title Cement Kiln By-Pass Dust: An Effective Alkaline Activator for Pozzolanic Materials
title_short Cement Kiln By-Pass Dust: An Effective Alkaline Activator for Pozzolanic Materials
title_full Cement Kiln By-Pass Dust: An Effective Alkaline Activator for Pozzolanic Materials
title_fullStr Cement Kiln By-Pass Dust: An Effective Alkaline Activator for Pozzolanic Materials
title_full_unstemmed Cement Kiln By-Pass Dust: An Effective Alkaline Activator for Pozzolanic Materials
title_sort cement kiln by-pass dust: an effective alkaline activator for pozzolanic materials
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2018-09-01
description Cement kiln by-pass dust (CKD) is a fine-grained by-product of Portland clinker manufacturing. Its chemical composition is not suitable for returning back into feedstock and, therefore, it has to be discharged. Such an increasing waste production contributes to the high environmental impact of the cement industry. A possible solution for the ecological processing of CKD is its incorporation into alkali-activated blast furnace slag binders. Thanks to high alkaline content, CKD serves as an effective accelerator for latent hydraulic substances which positively affect their mechanical properties. It was found out that CKD in combination with sodium carbonate creates sodium hydroxide in situ which together with sodium water glass content increases the dissolution of blast furnace slag particles and subsequently binder phase formation resulting in better flexural and compressive strength development compared to the sample without it. At the same time, the addition of CKD compensates the autogenous shrinkage of alkali-activated materials reducing the risk of material cracking. On the other hand, this type of inorganic admixture accelerates the hydration process causing rapid loss of workability.
topic cement kiln by-pass dust
alkali activation
blast furnace slag
admixture
url http://www.mdpi.com/1996-1944/11/9/1770
work_keys_str_mv AT lukaskalina cementkilnbypassdustaneffectivealkalineactivatorforpozzolanicmaterials
AT vlastimilbilek cementkilnbypassdustaneffectivealkalineactivatorforpozzolanicmaterials
AT tomaskiripolsky cementkilnbypassdustaneffectivealkalineactivatorforpozzolanicmaterials
AT radoslavnovotny cementkilnbypassdustaneffectivealkalineactivatorforpozzolanicmaterials
AT jirimasilko cementkilnbypassdustaneffectivealkalineactivatorforpozzolanicmaterials
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