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水化水泥浆体的热再活化:性能及对水泥水化的影响

Thermal Reactivation of Hydrated Cement Paste: Properties and Impact on Cement Hydration.

作者信息

Gholizadeh-Vayghan Asghar, Meza Hernandez Guillermo, Kingne Felicite Kingne, Gu Jun, Dilissen Nicole, El Kadi Michael, Tysmans Tine, Vleugels Jef, Rahier Hubert, Snellings Ruben

机构信息

Vlaamse Instelling voor Technologisch Onderzoek, 2400 Mol, Belgium.

Physical Chemistry and Polymer Science (FYSC), Sustainable Materials Engineering (SUME) Research Group, Vrije Universiteit Brussel (VUB), Pleinlaan 2, 1050 Brussels, Belgium.

出版信息

Materials (Basel). 2024 May 31;17(11):2659. doi: 10.3390/ma17112659.

Abstract

In this research, the properties and cementitious performance of thermally activated cement pastes (referred to as DCPs) are investigated. Hydrated pastes prepared from Portland cement and slag blended cement were subjected to different thermal treatments: 350 °C for 2 h, 550 °C for 2 h, 550 °C for 24 h and 750 °C for 2 h. The properties and the reactivity as SCM of the DCPs were characterised as well as their effect on the mechanical performance and hydration of new blended cements incorporating the DCPs as supplementary cementitious materials (SCMs). It was observed that the temperature and duration of the thermal treatment increased the grindability and BET specific surface area of the DCP, as well as the formation of CS phases and the reactivity as SCM. In contrast, the mechanical strength results for the blended cements indicated that thermal treatment at 350 °C for 2 h provided better performance. The hydration study results showed that highly reactive DCP interfered with the early hydration of the main clinker phases in Portland cement, leading to early setting and slow strength gain. The effect on blended cement hydration was most marked for binary Portland cement-DCP blends. In contrast, in the case of ternary slag cement-DCP blends the use of reactive DCP as SCM enabled to significantly increase early age strength.

摘要

在本研究中,对热活化水泥浆体(简称DCPs)的性能和胶凝性能进行了研究。由波特兰水泥和矿渣掺合水泥制备的水化浆体进行了不同的热处理:350℃保温2小时、550℃保温2小时、550℃保温24小时以及750℃保温2小时。对DCPs作为SCM的性能、反应活性以及它们对将DCPs用作辅助胶凝材料(SCMs)的新型掺合水泥的力学性能和水化的影响进行了表征。观察到热处理的温度和持续时间提高了DCP的粉磨性和BET比表面积,以及CS相的形成和作为SCM的反应活性。相比之下,掺合水泥的力学强度结果表明,350℃保温2小时的热处理提供了更好的性能。水化研究结果表明,高活性DCP会干扰波特兰水泥中主要熟料相的早期水化,导致初凝时间提前和强度增长缓慢。对于二元波特兰水泥-DCP掺合物,对掺合水泥水化的影响最为显著。相比之下,在三元矿渣水泥-DCP掺合物的情况下,使用活性DCP作为SCM能够显著提高早期强度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c74b/11173659/9a1df73dc541/materials-17-02659-g001.jpg

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