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Performance of eco-concrete made from waste-derived eco-cement

机译:生态混凝土的性能由废物衍生的生态水泥制成

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In this study, an eco-cement was synthesized primarily from municipal solid waste incineration (MSWI) residues and appraised as a stand-alone binder in concrete. In addition to thorough laboratory testing, appraisal was extended to a pilot trial involving full-scale masonry unit production. The raw feed of the contrived eco-cement was supplemented by fractional additions of calcium hydroxide (6 wt %) and sintered at a clinkering temperature of 1100 degrees C. The resulting clinker (eco-cement) demonstrated latent hydraulicity when reacted with water and strong carbonation reactivity when reacted with carbon dioxide. Carbonation curing was found to both increase and accelerate strength-yield - achieving almost 1.5 times the ultimate 90-day hydraulic strength in just one day - without compromising additional latent strength gains from subsequent hydration. The binder performance was benched against control specimens prepared from ordinary Portland cement (OPC). The study's final "eco-concrete" was activated by carbonation for early strength and further hydrated for latent strength. Eco-concrete demonstrated improved durability over conventional concrete according to surface resistivity, freeze-thaw, and drying-shrinkage evaluations. Moreover, leaching results for commonly regulated heavy metals and chlorine confirmed the environmental stability of eco-concrete according to the adopted standard testing protocol. Finally, the field pilot demonstrably validated eco-concrete's suitability as a commercial product, where manufactured full-size concrete masonry units (CMUs) met all physical and performance requirements of CSA-A165 and ASTM-C90 standards. The synthesis of eco-cement, and its use as a carbon-sequestering alternative binder in eco-concrete, holds reasonable merit for consideration as an adaptable cleaner production to improve current-day MSW incineration practice. (C) 2021 Elsevier Ltd. All rights reserved.
机译:在该研究中,主要是从城市固体废物焚烧(MSWI)残基合成的生态水泥,并在混凝土中被评为单独的粘合剂。除了彻底的实验室测试外,评估还扩展到涉及全面砌体单位生产的试验试验。通过分数加入氢氧化钙(6wt%)并在1100℃的克莱克温度下烧结的原始进料。当与水反应时,所得熟料(Eco-CENDEMED)的熟料(生态水泥)呈现潜水。与二氧化碳反应时碳酸化反应性。发现碳酸化固化既增加又加速强度 - 产量 - 在短短一天内实现最终的90天液压强度的近1.5倍 - 不影响随后的水合的额外潜在的增长。粘合剂性能是从普通波特兰水泥(OPC)制备的对照样本的。该研究的最终“生态混凝土”通过碳化激活,用于早期强度,进一步保湿潜伏。 ECO混凝土根据表面电阻率,冻融和干燥收缩评估,对传统混凝土进行了提高的耐用性。此外,局部受压重金属和氯的浸出结果证实了根据采用的标准测试方案的生态混凝土的环境稳定性。最后,该领域的飞行员可以获得验证的生态混凝土作为商业产品的适用性,其中制造的全尺寸混凝土砌体单元(CMU)符合CSA-A165和ASTM-C90标准的所有物理和性能要求。生态水泥的合成及其用作生态混凝土中的碳沉锌替代粘合剂,可考虑作为适应性清洁生产的合理优点,以改善当前的MSW焚烧实践。 (c)2021 elestvier有限公司保留所有权利。

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