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首页> 外文期刊>Journal of Materials Science >Synthesis and hydration of calcium sulfoaluminate-belite cements with varied phase compositions
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Synthesis and hydration of calcium sulfoaluminate-belite cements with varied phase compositions

机译:变相组成的硫铝酸钙-贝利石水泥的合成与水化

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摘要

The production of portland cement is energy intensive and contributes significantly to greenhouse gas emissions. One method of reducing the environmental impact of concrete production is the use of an alternative binder, such as calcium sulfoaluminate-belite (CSAB) cement. The relatively low lime requirement of CSAB cement compared to portland cement reduces energy consumption and carbon dioxide emissions from cement production. Moreover, CSAB cement can be produced at temperatures approximately 200 °C lower than portland cement, further reducing energy and carbon dioxide. Major drawbacks to the implementation of CSAB cements are the lack of standard phase composition and published data on composition-processing-performance relationships. In this study, three CSAB cement clinkers with different phase compositions were synthesized from reagent-grade chemicals. The synthetic clinkers were analyzed for phase composition using X-ray diffraction and phase distribution using scanning electron microscopy. The synthetic clinkers were then tested for hydration rate using isothermal conduction calorimetry to investigate the effects of phase composition and gypsum addition on early-age hydration behavior. A proportioning method for predicting phase composition was refined and an equation for calculating the minimum gypsum content for CSAB cement clinker was developed.
机译:波特兰水泥的生产是能源密集型的,并且显着地导致了温室气体的排放。减少混凝土生产对环境影响的一种方法是使用替代粘合剂,例如硫铝铝酸钙-贝利特钙(CSAB)水泥。与硅酸盐水泥相比,CSAB水泥的石灰要求相对较低,从而降低了水泥生产中的能耗和二氧化碳排放量。此外,CSAB水泥的生产温度比硅酸盐水泥低约200°C,从而进一步减少了能源和二氧化碳。实施CSAB水泥的主要缺点是缺乏标准的相组成和已公布的有关组成-加工-性能关系的数据。在这项研究中,从试剂级化学品合成了三种具有不同相组成的CSAB水泥熟料。使用X射线衍射分析合成熟料的相组成,并使用扫描电子显微镜分析相分布。然后使用等温传导量热法测试合成熟料的水合速率,以研究相组成和石膏添加对早期水合行为的影响。改进了用于预测相组成的配比方法,并开发了用于计算CSAB水泥熟料的最低石膏含量的方程式。

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