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Utilization of processed fly ash in mortar.

机译:砂浆中加工粉煤灰的利用。

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摘要

Grinding process is introduced to provide fine particles of coal fly ash that enhances the strength gain of cement mortars. It is discovered that grinding can make all the studied fly ashes more suitable for concrete use at higher replacement value than previously anticipated even when the effect of high carbon content is considered.; In this study, new mechanisms for strength gain of fly ash mortars are proposed. They are dispersion and nucleation, which are results from the presence of fly ash in the cement mortar. These effects are shown to enhance the hydration of cement. The pozzolanic action of fly ash contributes strength at a later stage. Pozzolanic activity of fly ash is shown to increase with fineness of the ground fly ash.; Several types of fly ashes, wet bottom, dry bottom and low NOx fly ashes are chosen as representative of the waste products of existing and the new burner technology. They were ground to different particle size distributions. Tests were conducted to determine the physical properties of these fly ashes and their performance in cement mortars. Optimum ranges of the grinding process were explored along with particle size analysis, chemical composition, mineralogy, and morphological aspects of raw and ground fly ash.; In order to see whether these processed fly ashes can be used at high percentages in cementitious products, the performance of mortars made from these fly ashes is examined. The strength contribution of fly ash in cement mortars through dispersion, nucleation, and pozzolanic action were investigated and found to perform equally or better than normal cement mortars as early as seven days. Furthermore, the study on the properties of mortars made of high-carbon ground fly ash from low NOx furnace also showed similar strength enhancement. The major conclusion of this study is that grinding is a suitable mean to increase utilization of fly ash as cement replacement. The processing technique has economically been demonstrated to yield quality fly ash for use in concrete, thus reducing the amount of fly ash that needs to be disposed of in landfills.
机译:引入了研磨工艺以提供粉煤灰颗粒,从而提高了水泥砂浆的强度。已经发现,即使考虑到高碳含量的影响,研磨也可以使所有研究的粉煤灰以更高的替代价值更适合于混凝土使用,替代价值更高。在这项研究中,提出了提高粉煤灰砂浆强度的新机制。它们是分散和成核,这是由于水泥砂浆中存在飞灰而导致的。这些效果表明可以增强水泥的水合作用。粉煤灰的火山灰作用在稍后阶段增强了强度。粉煤灰的火山灰活性随粉煤灰的细度而增加。选择几种类型的粉煤灰,湿底,干底和低NO x 粉煤灰作为现有和新燃烧器技术废物的代表。将它们研磨成不同的粒度分布。进行测试以确定这些粉煤灰的物理性质及其在水泥砂浆中的性能。探讨了最佳的研磨过程范围,以及粉煤灰和原粉煤灰的粒度分析,化学成分,矿物学和形态学方面。为了查看这些加工后的粉煤灰是否可以在水泥产品中以较高的百分比使用,对由这些粉煤灰制成的砂浆的性能进行了检查。通过分散,成核和火山灰作用研究了粉煤灰在水泥砂浆中的强度贡献,并发现其在7天内的性能与普通水泥砂浆相当或更好。此外,对低NO x 炉中高碳粉煤灰制砂浆性能的研究也显示出类似的强度增强。这项研究的主要结论是,研磨是增加粉煤灰作为水泥替代品利用率的合适手段。经济上已经证明了该加工技术可产生用于混凝土的优质粉煤灰,从而减少了需要填埋的粉煤灰数量。

著录项

  • 作者

    Bumrongjaroen, Walairat.;

  • 作者单位

    New Jersey Institute of Technology.;

  • 授予单位 New Jersey Institute of Technology.;
  • 学科 Engineering Civil.; Environmental Sciences.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 251 p.
  • 总页数 251
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学 ; 环境科学基础理论 ;
  • 关键词

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