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Investigating the Influence of Waste Basalt Powder on Selected Properties of Cement Paste and Mortar

机译:研究废玄武岩粉对水泥膏和砂浆选定性能的影响

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Concrete is the most widely used man-made construction material in civil engineering applications. The consumption of cement and thus concrete, increases day by day along with the growth of urbanization and industrialization and due to new developments in construction technologies, population growing, increasing of living standard. Concrete production consumes much energy and large amounts of natural resources. It causes environmental, energy and economic losses. The most important material in concrete production is cement. Cement industry contributes to production of about 7% of all CO2 generated in the world. Every ton of cement production releases nearly one ton of CO2 to atmosphere. Thus the concrete and cement industry changes the environment appearance and influences it very much. Therefore, it has become very important for construction industry to focus on minimizing the environmental impact, reducing energy consumption and limiting CO2 emission. The need to meet these challenges has spurred an interest in the development of a blended Portland cement in which the amount of clinker is reduced and partially replaced with mineral additives - supplementary cementitious materials (SCMs). Many researchers have studied the possibility of using another mineral powder in mortar and concrete production. The addition of marble dust, basalt powder, granite or limestone powder positively affects some properties of cement mortar and concrete. This paper presents an experimental study on the properties of cement paste and mortar containing basalt powder. The basalt powder is a waste emerged from the preparation of aggregate used in asphalt mixture production. Previous studies have shown that analysed waste used as a fine aggregate replacement, has a beneficial effect on some properties of mortar and concrete, i.e. compressive strength, flexural strength and freeze resistance also. The present study shows the results of the research concerning the modification of cement paste and mortar with basalt powder. The modification consists in that the powder waste was added as partial replacement of cement. Four types of common cement were examined, i.e. CEM I, CEM WAS, CEM II/A-V and CEM II/B-V. The percentages of basalt powder in this research are 0%, 1%, 2%, 3%, 4%, 6%, 8% and 10% by mass. Results showed that the addition of basalt powder improved the strength of cement mortar. The use of mineral powder as the partial substitution of cement allows the effective management of industrial waste and improves some properties of cement mortar.
机译:混凝土是土木工程应用中最广泛使用的人造建筑材料。水泥和因此混凝土的消耗,日复一日地增加了城市化和工业化的增长,由于建筑技术的新发展,人口生长,生活水平的增加。混凝土生产消耗了大量的能源和大量的自然资源。它会导致环境,能源和经济损失。混凝土生产中最重要的材料是水泥。水泥行业有助于生产世界各地所有二氧化碳的7%。每吨水泥生产都将近一吨二氧化碳释放到大气中。因此,混凝土和水泥工业改变了环境外观,并影响了很多。因此,建筑行业专注于最大限度地减少环境影响,减少能源消耗和限制二氧化碳排放,这已经变得非常重要。满足这些挑战的必要性令人兴趣地对开发混合的波特兰水泥的发展,其中熟料的量减少和部分地用矿物添加剂 - 补充水泥材料(SCM)。许多研究人员研究了在砂浆和混凝土生产中使用另一种矿物粉末的可能性。添加大理石粉尘,玄武岩粉,花岗岩或石灰石粉末积极影响水泥砂浆和混凝土的一些性能。本文介绍了含玄武岩粉末水泥浆料和砂浆的性质的实验研究。玄武岩粉是一种废物,从制备沥青混合混合物生产中使用的聚集体中出现。以前的研究表明,分析用作细骨料替代的废物对砂浆和混凝土的一些性质具有有益的影响,即抗压强度,弯曲强度和冷冻性也。本研究表明,用玄武岩粉末改变水泥浆料和砂浆的研究结果。修饰包括:将粉末废物作为水泥的部分替代。检查四种类型的常见水泥,即CEM I,CEM是,CEM II / A-V和CEM II / B-V。本研究中玄武岩粉的百分比为0%,1%,2%,3%,4%,6%,8%和10质量%。结果表明,添加玄武岩粉末提高了水泥砂浆的强度。矿物粉作为水泥部分取代允许有效管理工业废物,并改善了水泥砂浆的一些性能。

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