Influence of the w/c ratio on the hydration process of a magnesium phosphate cement and on its retardation by boric acid

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TitreInfluence of the w/c ratio on the hydration process of a magnesium phosphate cement and on its retardation by boric acid
Type de publicationJournal Article
Year of Publication2018
AuteursLahalle H, Coumes CCau Dit, Mercier C, Lambertin D, Cannes C, Delpech S, Gauffinet S
JournalCEMENT AND CONCRETE RESEARCH
Volume109
Pagination159-174
Date PublishedJUL
Type of ArticleArticle
ISSN0008-8846
Mots-cléschemically-bonded ceramics, hydration, Hydration products, MgO, Retardation
Résumé

Magnesium potassium phosphate cements (MKPCs) are prepared using calcined magnesia (MgO) and an acidic solution of potassium dihydrogen phosphate (KH2PO4). Their fast setting and high heat of hydration can be problematic when large volumes of materials are produced. Boric acid (B(OH)(3)) is thus commonly added as a set retarder. This work investigates MKPC hydration in paste (water-to-cement ratio w/c = 1) and its retardation by B(OH)(3). The precipitation of K-struvite (MgKPO4 center dot 6H(2)O) is preceded by that of phosphorosslerite (MgHPO4 center dot 7H(2)O) and Mg2KH(PO4)(2)center dot 15H(2)O. Cattiite (Mg-3(PO4)(2)center dot 22H(2)O), an end-product in diluted suspension (w/c = 100), is not observed. B(OH)3 slows down the formation of hydrates in two ways: (i) by stabilizing in solution the cations that outbalance the negative charges of the polyborates formed at pH above 6, and (ii) through the precipitation of an amorphous mineral containing borate and orthophosphate. The first process occurs both in diluted suspensions and pastes, the second is specific to pastes.

DOI10.1016/j.cemconres.2018.04.010