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New cementitious system: The case of glass frit.

机译:新的水泥体系:玻璃粉的情况。

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摘要

Canada ranks as the world's third largest aluminium producer, and more than 80% of its aluminum industry is concentrated in Quebec. However, the spent pot-liner waste produced by the aluminium smelters accumulates with time into a considerable amount threatening the Canadian environment, especially that of Quebec. A new-engineered material, known as glass fit (GF) has been developed through the chemical treatment of such waste. GF shows potential hydraulic and pozzolanic properties. GF has been studied as a binder itself and as a supplementary cementitious material (SCM).;On the other hand, the utilization of industrial by-products as a partial replacement for cement in concrete is a widespread practice. As GF contains a high concentration of sodium in its structure, there is a concern as to the effect of sodium content on the development of alkali-silica reaction (ASR) expansion of concrete. Therefore, this study also aimed to investigate the effect of GF sodium content in the enhancement of ASR expansion and to find new synergistic mixtures that can effectively mitigate ASR expansion in the long term. We observed that ASR expansion decreases with the replacement level of GF. Different synergistic diagrams containing known SCM (silica fume, fly ash, and slag) were achieved from which different effective mixtures can effectively alleviate ASR expansion.;In conclusion, the use of GF in the manufacture of concrete has great benefits. Economically, it could save millions of Canadian dollars needed for the treatment and landfilling of spent pot-liner waste. Ecologically, it could reduce GHG emissions associated with the production of cement clinkers. In this study, most of the well-known by-products are used according to the sustainability theory.;The activation of industrial by-products into clinkerless binders is a novel trend that has attracted the attention of many researchers. The activation of GF into binder to produce paste, mortar and concrete was the first aim of this study. Potential activation of GF using different types and combinations of inorganic activators and temperatures of activation was successfully achieved and high strength concretes were obtained. Moreover, mortars with high compressive strength were obtained with well-formulated activators at ambient temperature.
机译:加拿大是世界第三大铝生产国,其铝工业的80%以上集中在魁北克。但是,随着时间的推移,铝冶炼厂产生的废罐衬里废物会大量累积,威胁到加拿大的环境,尤其是魁北克的环境。通过对此类废物进行化学处理,已开发出一种新型工程材料,称为玻璃粉(GF)。 GF显示出潜在的水硬性和火山灰性质。 GF已被作为粘合剂本身和作为辅助胶结材料(SCM)进行了研究。另一方面,利用工业副产品代替混凝土中的水泥是一种广泛的实践。由于GF在其结构中含有高浓度的钠,因此关注钠含量对混凝土的碱-二氧化硅反应(ASR)膨胀发展的影响。因此,本研究还旨在研究GF钠含量对增强ASR扩展的作用,并寻找可以长期有效缓解ASR扩展的新型协同混合物。我们观察到,随着GF的替换水平,ASR的膨胀减小。获得了包含已知SCM(硅灰,粉煤灰和矿渣)的不同协同图,从中可以使用不同的有效混合物有效地缓解ASR膨胀。总之,在混凝土生产中使用GF有很大的好处。从经济上讲,这可以节省数百万加元的处理和垃圾填埋所需的衬里废物。从生态上讲,它可以减少与水泥熟料生产相关的温室气体排放。在这项研究中,根据可持续性理论使用了大多数著名的副产品。工业副产品活化为无熟料粘合剂是一种新的趋势,吸引了许多研究人员的注意力。 GF活化成粘合剂以生产糊状,灰浆和混凝土是这项研究的首要目标。使用不同类型和组合的无机活化剂和活化温度成功地实现了GF的潜在活化,并获得了高强度混凝土。此外,在环境温度下,使用结构良好的活化剂可获得具有高抗压强度的砂浆。

著录项

  • 作者

    Fares, Galal.;

  • 作者单位

    Universite de Sherbrooke (Canada).;

  • 授予单位 Universite de Sherbrooke (Canada).;
  • 学科 Engineering Civil.;Engineering Materials Science.;Engineering Environmental.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 290 p.
  • 总页数 290
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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