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ASSESSMENT OF A NEW PORTLAND CEMENT COMPONENT: GROUND COAL BOTTOM ASH

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MARCH 2018   -  Volume: 93 -  Pages: 192-196

DOI:

https://doi.org/10.6036/8488

Authors:

MIGUEL ANGEL SANJUAN BARBUDO - ESPERANZA MENENDEZ MENDEZ - CRISTINA ARGIZ LUCIO

Disciplines:

  • Materials technology (PROPIEDADES DE LOS MATERIALES )
  • NEW MATERIALS AND TECHNOLOGY (NUEVOS MATERIALES )
  • Materials technology (AGLOMERANTES )
  • Mechanical Engineering and technology (MATERIAL DE CONSTRUCCION )

Downloads:   281

Cites in Web of Science:  1

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Received Date :   15 June 2017

Reviewing Date :   12 July 2017

Accepted Date :   23 November 2017


Key words:
Coal bottom ash, Portland cement, Compressive strength, Durability, cenizas de fondo, cemento Portland, resistencia a compresión, durabilidad
Article type:
ARTICULO DE INVESTIGACION / RESEARCH ARTICLE
Section:
RESEARCH ARTICLES

Coal bottom ash is produced in electrical power stations as result of the coal combustion. Because coal fly ash and coal bottom ash are formed together in the same boiler, similar chemical and mineralogical composition is expected. The size and shape of these ashes is very different, and then, its effect on the performance must be studied. In order to get a similar grain size to that of the coal fly ash, the coal bottom ash was ground.
Cement-based products are the main construction materials which manufacture requires the use of significant natural raw materials and energy. These manufacturing processes result in several types of emissions. In particular, the cement industry is under pressure to reduce CO2 emissions and some studies have shown different measures to reach CO2 reduction. For instance, reducing the clinker/cement factor will lead to a clear CO2 emission reduction. In this work, ground coal bottom ash is investigated to know its viability of being used as a new Portland cement constituent. Then, it is studied from a mechanical and durability point of view to evaluate the potential use of the coal bottom ash as an innovative binder. Ground coal bottom ash and fly ash mortars were more carbonated and exhibited a lower compressive strength than the reference mortars, but similar to each other.

Keywords: coal bottom ash, Portland cement, Compressive strength, Durability

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