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首页> 外文期刊>Magazine of Concrete Research >Structural lightweight concrete based on coal ashes (containing undesirable radionuclides) and waste of stone quarries
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Structural lightweight concrete based on coal ashes (containing undesirable radionuclides) and waste of stone quarries

机译:基于煤灰(含有不希望的放射性核素)和采石场废物的结构轻质混凝土

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摘要

Utilisation of coal combustion by-products (bottom ash and fly ash) generated at power stations and stone quarries waste (unprocessed crushed sand), for the production of lightweight concrete is being studied at the Research Authority of The College of Judea and Samaria (Ariel, Israel). One of the main contributions of this study is the manufacturing of ecologically friendly lightweight concrete using coal ashes containing different quantities of natural radionuclides. For this goal, a technology for the production of a ternary lightweight concrete based on the use of above-mentioned waste was developed. The conducive features of each material are used in an optimum manner that enables the production of an ecologically friendly concrete with desirable building characteristics. Bottom ash is used as a porous lightweight aggregate. A mixture of the fly ash with the cement forms a dense matrix, which compensates for the low strength of bottom ash particles. Unprocessed crushed sand is used as a diluting non-radioactive material, which reduces the radioactivity of the concrete to a safe level. It is used also to further increase the strength of the lightweight concrete. Based on laboratory and field studies, the technology that has been developed can be recommended for production of structural lightweight concrete, which complies with the requirements of present standards related to strength and density, as well as to radiological characteristics.
机译:犹太和撒玛利亚学院研究局正在研究利用发电厂产生的煤炭燃烧副产物(底灰和飞灰)和采石场废物(未处理的碎砂)生产轻质混凝土。 ,以色列)。这项研究的主要贡献之一是使用含有不同数量天然放射性核素的煤灰生产生态友好的轻质混凝土。为此,开发了一种基于使用上述废物来生产三元轻质混凝土的技术。每种材料的有益特性均以最佳方式使用,从而能够生产出具有所需建筑特性的生态友好型混凝土。底灰用作多孔轻质骨料。粉煤灰与水泥的混合物形成致密的基质,这补偿了底灰颗粒的低强度。未经处理的碎砂用作稀释性非放射性物质,可将混凝土的放射性降低至安全水平。它还用于进一步增加轻质混凝土的强度。根据实验室和现场研究,可以将已经开发的技术推荐用于结构轻质混凝土的生产,该技术符合有关强度和密度以及放射特性的当前标准要求。

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