CHARACTERISTICS AND DURABILITY OF ALKALI ACTIVATED SLAG-MICROSILICA PASTES SUBJECTED TO SULPHATE AND CHLORIDE IONS ATTACK
This research aims to produce cementless eco-friendly binding material using alkaline activation of blast-furnace slag (GBFS) and microsilica (MS). The preparation of cementless binding material was conducted with different GBFS-MS mass ratios (100:0; 98:2; 96:4; 92:8) with 0.75:0.50; Na2O:SiO2 mol...
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University of Chemistry and Technology, Prague
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doaj-c28ab461084149419c5294ecda5522d52020-11-25T01:06:27ZengUniversity of Chemistry and Technology, PragueCeramics-Silikáty0862-54681804-58472015-06-015928189.20160310144716CHARACTERISTICS AND DURABILITY OF ALKALI ACTIVATED SLAG-MICROSILICA PASTES SUBJECTED TO SULPHATE AND CHLORIDE IONS ATTACKMohamed Heikal0Sahar M. Ibrahim1 Chemistry Department, Faculty of Science, Benha University, Benha, Egypt Chemistry Department, Faculty of Science, Benha University, Benha, Egypt This research aims to produce cementless eco-friendly binding material using alkaline activation of blast-furnace slag (GBFS) and microsilica (MS). The preparation of cementless binding material was conducted with different GBFS-MS mass ratios (100:0; 98:2; 96:4; 92:8) with 0.75:0.50; Na2O:SiO2 mol kg-1 of GBFS-MS. The characteristics and durability of alkali activated GBFS and MS mixes were studied. Chemically combined water, combined slag contents as well as compressive strength increase with MS up to 4 mass %, then decreases with MS up to 8 mass %. Increase of MS content up to 8 mass %, the compressive strength shows a lower values at early ages (3-14 days). But, at later age up to 28-90 days, the compressive strength values increase. SEM micrographs show the presence of C-S-H and (N,C)-A-S-H gel with low porosity. The alkali activated GBFS-MS pastes are more durable in 5 % MgSO4or 5 % MgCl2 solution than ordinary Portland cement (OPC) up to 180 days. http://www.ceramics-silikaty.cz/2015/pdf/2015_02_81.pdf Alkaline activationMechanical propertiesElectrical conductivity Thermogravimetric analysis (TGA)Electron microscopy (SEM) |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Mohamed Heikal Sahar M. Ibrahim |
spellingShingle |
Mohamed Heikal Sahar M. Ibrahim CHARACTERISTICS AND DURABILITY OF ALKALI ACTIVATED SLAG-MICROSILICA PASTES SUBJECTED TO SULPHATE AND CHLORIDE IONS ATTACK Ceramics-Silikáty Alkaline activation Mechanical properties Electrical conductivity Thermogravimetric analysis (TGA) Electron microscopy (SEM) |
author_facet |
Mohamed Heikal Sahar M. Ibrahim |
author_sort |
Mohamed Heikal |
title |
CHARACTERISTICS AND DURABILITY OF ALKALI ACTIVATED SLAG-MICROSILICA PASTES SUBJECTED TO SULPHATE AND CHLORIDE IONS ATTACK |
title_short |
CHARACTERISTICS AND DURABILITY OF ALKALI ACTIVATED SLAG-MICROSILICA PASTES SUBJECTED TO SULPHATE AND CHLORIDE IONS ATTACK |
title_full |
CHARACTERISTICS AND DURABILITY OF ALKALI ACTIVATED SLAG-MICROSILICA PASTES SUBJECTED TO SULPHATE AND CHLORIDE IONS ATTACK |
title_fullStr |
CHARACTERISTICS AND DURABILITY OF ALKALI ACTIVATED SLAG-MICROSILICA PASTES SUBJECTED TO SULPHATE AND CHLORIDE IONS ATTACK |
title_full_unstemmed |
CHARACTERISTICS AND DURABILITY OF ALKALI ACTIVATED SLAG-MICROSILICA PASTES SUBJECTED TO SULPHATE AND CHLORIDE IONS ATTACK |
title_sort |
characteristics and durability of alkali activated slag-microsilica pastes subjected to sulphate and chloride ions attack |
publisher |
University of Chemistry and Technology, Prague |
series |
Ceramics-Silikáty |
issn |
0862-5468 1804-5847 |
publishDate |
2015-06-01 |
description |
This research aims to produce cementless eco-friendly binding material using alkaline activation of blast-furnace slag (GBFS) and microsilica (MS). The preparation of cementless binding material was conducted with different GBFS-MS mass ratios (100:0; 98:2; 96:4; 92:8) with 0.75:0.50; Na2O:SiO2 mol kg-1 of GBFS-MS. The characteristics and durability of alkali activated GBFS and MS mixes were studied. Chemically combined water, combined slag contents as well as compressive strength increase with MS up to 4 mass %, then decreases with MS up to 8 mass %. Increase of MS content up to 8 mass %, the compressive strength shows a lower values at early ages (3-14 days). But, at later age up to 28-90 days, the compressive strength values increase. SEM micrographs show the presence of C-S-H and (N,C)-A-S-H gel with low porosity. The alkali activated GBFS-MS pastes are more durable in 5 % MgSO4or 5 % MgCl2 solution than ordinary Portland cement (OPC) up to 180 days. |
topic |
Alkaline activation Mechanical properties Electrical conductivity Thermogravimetric analysis (TGA) Electron microscopy (SEM) |
url |
http://www.ceramics-silikaty.cz/2015/pdf/2015_02_81.pdf
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work_keys_str_mv |
AT mohamedheikal characteristicsanddurabilityofalkaliactivatedslagmicrosilicapastessubjectedtosulphateandchlorideionsattack AT saharmibrahim characteristicsanddurabilityofalkaliactivatedslagmicrosilicapastessubjectedtosulphateandchlorideionsattack |
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