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Improving the energy efficiency in buildings while reducing the waste using autoclaved aerated concrete made from power industry waste

机译:使用电力行业产生的高压灭菌加气混凝土提高建筑物的能效,同时减少浪费

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摘要

Production of autoclaved aerated concrete (AAC) from power industry waste cinders represents a progressive technology for processing of industrial waste in a new form of building material with good qualities. Despite these positive aspects, the share of cinder concrete in the building industry is less popular. The low popularity is partially caused by the poor aesthetic of cinder concrete in comparison with sand-based AAC; however, the main cause is the slightly smaller thermal and moisture qualities of fly ash-based AAC, respecting uncertainty because there are no supporting scientific research and publications about it. This paper is dedicated to a study of the thermal and moisture properties of the cinder concrete and mutual behaviour with the sand-based AAC. It was determined that fly ash-based AAC demonstrated slightly larger moisture sorption in comparison with sand-based concrete under similar conditions. On the contrary, the thermal insulating properties of fly ash-based concrete, as indicated by the heat conductivity, exhibits less moisture influence in comparison with sand-based AAC. Concerning volume changes, fly ash-based AAC showed, in the condition of low moisture, slightly better properties when compared with autoclaved aerated sand concrete.
机译:用电力行业的废渣生产高压灭菌的充气混凝土(AAC)是一种先进的技术,用于以优质的新型建筑材料处理工业废料。尽管有这些积极方面,但在建筑行业中,煤渣混凝土的份额却不那么受欢迎。较低的受欢迎程度部分是由于与沙基AAC相比,煤渣混凝土的美学差。然而,主要原因是基于粉煤灰的AAC的热和湿气质量稍差,因为没有相关的科学研究和出版物,因此存在不确定性。本文致力于研究煤渣混凝土的热和湿性能以及与砂基AAC的相互行为。已确定,在类似条件下,粉煤灰基AAC与沙基混凝土相比,吸水率稍高。相反,由热导率表明,粉煤灰基混凝土的绝热性能与砂基AAC相比,对湿气的影响较小。关于体积变化,粉煤灰基AAC在低水分条件下显示出与高压灭菌加气砂混凝土相比稍好一些的性能。

著录项

  • 来源
    《Energy and Buildings》 |2013年第3期|319-323|共5页
  • 作者单位

    Brno University of Technology, Faculty of Civil Engineering, Institute of Technology of Building Materials and Components, Vevefi 95, 602 00 Brno, Czech Republic;

    Brno University of Technology, Faculty of Civil Engineering, Institute of Technology of Building Materials and Components, Vevefi 95, 602 00 Brno, Czech Republic;

    Vienna University of Technology, Institute for Building Construction and Technology, Research Centre of Building Physics and Sound Protection, Karlsplatz 13/206-2, A - 1040 Vienna, Austria;

    Brno University of Technology, Faculty of Civil Engineering, Institute of Technology of Building Materials and Components, Vevefi 95, 602 00 Brno, Czech Republic;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    aerated concrete; industrial waste; building; insulation; sorption; energy saving;

    机译:加气混凝土工业废料;建造;绝缘;吸附节约能源;
  • 入库时间 2022-08-18 00:09:49

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