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Secondary aggregates and seawater employment for sustainable concrete dyke blocks production: Case study

机译:可持续混凝土堤坝生产的二次骨料和海水利用:案例研究

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The main objective of this research work was to validate the on site real scale production of dyke blocks employing coarse mixed recycled aggregates, steel slag aggregates and seawater. A laboratory experimental phase (Phase 1) was carried out prior to real scale concrete block production within Barcelona's port (Phase 2). According to the results, the concretes produced with a combined mixture of 50% coarse mixed aggregates and 50% of coarse steel aggregates achieved the most adequate properties for use in dyke block manufacturing. The concrete produced employing high percentages of coarse mixed recycled aggregates (without steel slag aggregates) could achieve adequate properties in its saturated state. The use of seawater instead of freshwater reduced the concrete's setting time as well as the porosity of the concretes produced, resulting in both the reduction of water penetration and the capillary water absorption capacity of the concretes. The use of seawater increased concrete's compressive strength at early age. It was also concluded that the results obtained in the laboratory studies and the technical know-how achieved can be transferred to large scale projects. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究工作的主要目的是验证采用粗混回收骨料,钢渣骨料和海水的堤坝块的实际规模生产。在巴塞罗那港口内进行实际规模的混凝土砌块生产之前(阶段2),进行了实验室实验阶段(阶段1)。根据结果​​,由50%的粗混合骨料和50%的粗钢骨料的混合混合物生产的混凝土获得了最合适的性能,可用于堤坝砌块的生产。使用高百分比的粗混再生料(不含钢渣料)生产的混凝土可以在饱和状态下获得足够的性能。使用海水代替淡水减少了混凝土的凝固时间以及所生产混凝土的孔隙率,从而降低了水的渗透性和混凝土的毛细吸水能力。海水的使用提高了早期混凝土的抗压强度。还得出结论,在实验室研究中获得的结果和获得的技术知识可以转移到大规模项目中。 (C)2016 Elsevier Ltd.保留所有权利。

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