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Mechanical, Environmental and Economic Feasibility Analysis of Sodium Carbonate Activated Blast Furnace Slag.

机译:碳酸钠活化高炉炉渣的机械,环境和经济可行性分析。

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摘要

Due to the large amount of cement that is used globally, the production of cement has a large impact on the environment. The area of Alkali Activated Materials (AAMs) has become a promising research avenue in the search for a low-carbon emission alternative to Portland cement based concrete. There has been a lot of research into using sodium hydroxide, sodium silicate and potassium hydroxide activation of industrial by-products like blast furnace slag and fly ash. However, environmental impact research in AAMs has shown large impacts from the activators used. This study examines initial setting time, compressive strength, environmental impact, and cost of sodium carbonate activated blast furnace slag as a function of their ingredients. This is done via a statistically designed mixture experiment to analyze mechanical properties and a comparative LCA using SimaPro to determine environmental impacts. The study concludes that sodium carbonate activated blast furnace slag (SCABFS) materials can be designed to meet ASTM standards for concrete initial setting time and compressive strength. Overall environmental impact of Portland cement based binder as measured by ReCiPe ecopoints is reduced by 33% in SCABFS binder if slag is considered a waste product of steel production. If slag is not considered to be a waste product of steel production, the SCABFS binder exhibited significantly higher overall environmental impacts than Portland cement binder.
机译:由于全球使用大量的水泥,水泥的生产对环境影响很大。在寻找低碳排放替代波特兰水泥基混凝土的过程中,碱活性材料(AAM)领域已成为一个有前途的研究途径。关于使用氢氧化钠,硅酸钠和氢氧化钾活化工业副产品(例如高炉矿渣和粉煤灰)进行了大量研究。但是,对AAM的环境影响研究表明,所使用的活化剂会产生很大的影响。这项研究检查了碳酸钠活化高炉矿渣的初始凝固时间,抗压强度,环境影响和成本,作为其成分的函数。这是通过统计设计的混合物实验来分析机械性能,并使用SimaPro进行比较LCA来确定对环境的影响。研究得出的结论是,碳酸钠活化的高炉矿渣(SCABFS)材料可以设计为符合ASTM标准的混凝土初始凝固时间和抗压强度。如果渣被认为是钢铁生产的废品,那么通过ReCiPe ecopoints测得的波特兰水泥基粘合剂的整体环境影响在SCABFS粘合剂中可降低33%。如果不将炉渣视为钢铁生产的废品,那么SCABFS粘合剂的整体环境影响将显着高于波特兰水泥粘合剂。

著录项

  • 作者

    Ellis, Kathleen.;

  • 作者单位

    Rochester Institute of Technology.;

  • 授予单位 Rochester Institute of Technology.;
  • 学科 Mechanical engineering.;Sustainability.;Industrial engineering.
  • 学位 M.S.
  • 年度 2016
  • 页码 121 p.
  • 总页数 121
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 公共建筑;
  • 关键词

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