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Magnesia-Based Cements: A Journey of 150 Years, and Cements for the Future?

机译:基于镁质的水泥:150年的旅程,以及未来的水泥?

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摘要

This review examines the detailed chemical insights that have been generated through 150 years of work worldwide on magnesium-based inorganic cements, with a focus on both scientific and patent literature. Magnesium carbonate, phosphate, silicate-hydrate, and oxysalt (both chloride and sulfate) cements are all assessed. Many such cements are ideally suited to specialist applications in precast construction, road repair, and other fields including nuclear waste immobilization. The majority of MgO-based cements are more costly to produce than Portland cement because of the relatively high cost of reactive sources of MgO and do not have a sufficiently high internal pH to passivate mild steel reinforcing bars. This precludes MgO-based cements from providing a large-scale replacement for Portland cement in the production of steel-reinforced concretes for civil engineering applications, despite the potential for CO2 emissions reductions offered by some such systems. Nonetheless, in uses that do not require steel reinforcement, and in locations where the MgO can be sourced at a competitive price, a detailed understanding of these systems enables their specification, design, and selection as advanced engineering materials with a strongly defined chemical basis.
机译:这篇综述考察了镁基无机水泥在全球150年的工作中产生的详细化学见解,重点是科学文献和专利文献。评估了碳酸镁,磷酸盐,硅酸盐水合物和含氧盐(氯化物和硫酸盐)水泥。许多此类水泥非常适合预制建筑,道路维修以及包括核废料固定化在内的其他领域的专业应用。大多数MgO基水泥的生产成本都比波特兰水泥高,这是因为MgO的反应源成本相对较高,并且内部pH值不足以钝化低碳钢钢筋。尽管某些这样的系统可以减少二氧化碳的排放,但这不能使基于MgO的水泥在生产用于土木工程的钢增强混凝土中提供波特兰水泥的大规模替代品。但是,在不需要钢筋的用途中以及可以以有竞争力的价格采购MgO的地区,对这些系统的详细了解可以使其规格,设计和选择成为具有严格定义的化学基础的先进工程材料。

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  • 作者

    Walling S.A.; Provis J.L.;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en
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