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利用俄罗斯石英砂岩矿废料生产更环保的高强度混凝土。

Production of Greener High-Strength Concrete Using Russian Quartz Sandstone Mine Waste Aggregates.

作者信息

Tolstoy Aleksandr, Lesovik Valery, Fediuk Roman, Amran Mugahed, Gunasekaran Murali, Vatin Nikolai, Vasilev Yuriy

机构信息

Department of Building Materials Science, Products and Structures, Belgorod State Technological University named after V.G.Shoukhov, 46 Kostiukova Str., 308012 Belgorod, Russia.

Research Institute of Building Physics, Russian Academy of Architecture and Construction Sciences, 21 Lokomotivny pr., 127238 Moscow, Russia.

出版信息

Materials (Basel). 2020 Dec 7;13(23):5575. doi: 10.3390/ma13235575.

Abstract

Quartz sandstone (QS) is a mine waste; therefore, its use in construction allows for both reducing the cost of the concrete and contributing to the utilization of waste. The scientific originality of this study is the identification of models of the effect of QS aggregate on the physicomechanical, durability characteristics, and eco-safety of greener high-strength concrete. The study used an energy-efficient method of non-thermal effects of electromagnetic pulses on the destruction mechanisms of quartz-containing raw materials. The characteristics of quartzite sandstone aggregates, including the natural activity of radionuclides, were comprehensively studied. The features of concrete hardening, including the formation of an interfacial transition zone between the aggregate and the cement matrix, were studied, taking into account the chemical and morphological features of quartzite sandstone. In addition, the microstructural and morphological properties of concrete were determined after a 28 day curing. In this study, the behaviors of the concrete with QS aggregate were investigated, bearing in mind the provisions of geomimetics science on the affinity of structures. The results obtained showed that the QS aggregate had the activity of natural radionuclides 3-4 times lower compared to traditional aggregates. Efficient greener concrete with a 46.3 MPa compressive strength, water permeability grade W14, and freeze-thaw resistance of 300 cycles were also obtained, demonstrating that the performance of this greener concrete was comparable to that of traditional concrete with more expensive granite or gabbro diabase aggregates.

摘要

石英砂岩(QS)是一种矿山废弃物;因此,将其用于建筑既可以降低混凝土成本,又有助于废弃物的利用。本研究的科学创新性在于确定了QS骨料对绿色高强度混凝土的物理力学性能、耐久性特征和生态安全性的影响模型。该研究采用了一种电磁脉冲非热效应的节能方法来研究含石英原材料的破坏机制。对石英岩砂岩骨料的特性,包括放射性核素的天然活性,进行了全面研究。考虑到石英岩砂岩的化学和形态特征,研究了混凝土硬化的特点,包括骨料与水泥基体之间界面过渡区的形成。此外,在养护28天后测定了混凝土的微观结构和形态性能。在本研究中,根据地球模拟科学关于结构亲和力的规定,对含QS骨料的混凝土性能进行了研究。所得结果表明,与传统骨料相比,QS骨料的天然放射性核素活性低3至4倍。还制备出了抗压强度为46.3MPa、抗渗等级为W14、抗冻融性为300次循环的高效绿色混凝土,表明这种绿色混凝土的性能与使用更昂贵的花岗岩或辉长辉绿岩骨料的传统混凝土相当。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db4f/7730853/e88a4ed296b9/materials-13-05575-g001.jpg

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