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酒石酸在270°C蒸汽和碱金属碳酸盐环境下与F类粉煤灰混合的铝酸钙水泥的化学、力学及自愈行为中的作用

Role of Tartaric Acid in Chemical, Mechanical and Self-Healing Behaviors of a Calcium-Aluminate Cement Blend with Fly Ash F under Steam and Alkali Carbonate Environments at 270 °C.

作者信息

Pyatina Tatiana, Sugama Toshifumi

机构信息

Brookhaven National Laboratory, Upton, NY 11973-5000, USA.

出版信息

Materials (Basel). 2017 Mar 25;10(4):342. doi: 10.3390/ma10040342.

Abstract

Tartaric acid (TA) changes short-term mechanical behavior and phase composition of sodium-metasilicate activated calcium-aluminate cement blend with fly ash, type F, when used as a set control additive to allow sufficient pumping time for underground well placement. The present work focuses on TA effect on self-healing properties of the blend under steam or alkali carbonate environments at 270 °C applicable to geothermal wells. Compressive strength recoveries and cracks sealing were examined to evaluate self-healing of the cement after repeated crush tests followed by two consecutive healing periods of 10 and 5 days at 270 °C. Optical and scanning electron microscopes, X-ray diffraction, Fourier Transform infrared and EDX measurements along with thermal gravimetric analyses were used to identify phases participating in the healing processes. Samples with 1% mass fraction of TA by weight of blend demonstrated improved strength recoveries and crack plugging properties, especially in alkali carbonate environment. This effect was attributed to silicon-rich (C,N)-A-S-H amorphous phase predominant in TA-modified samples, high-temperature stable zeolite phases along with the formation of tobermorite-type crystals in the presence of tartaric acid.

摘要

酒石酸(TA)用作凝结控制添加剂时,会改变掺有F类粉煤灰的硅酸钠活化铝酸钙水泥混合物的短期力学性能和相组成,以便为地下井灌注留出足够的泵送时间。目前的工作重点是研究TA对该混合物在270℃的蒸汽或碱金属碳酸盐环境下自愈合性能的影响,这种环境适用于地热井。通过反复抗压试验,接着在270℃下进行两个连续10天和5天的愈合期,然后检测抗压强度恢复情况和裂缝密封情况,以评估水泥的自愈合性能。利用光学显微镜、扫描电子显微镜、X射线衍射、傅里叶变换红外光谱和能谱分析以及热重分析来确定参与愈合过程的相。掺有1%(按混合物重量计)TA的样品表现出更好的强度恢复和裂缝封堵性能,尤其是在碱金属碳酸盐环境中。这种效果归因于TA改性样品中富含硅的(C,N)-A-S-H非晶相、高温稳定的沸石相以及在酒石酸存在下形成的托贝莫来石型晶体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/562d/5506903/7b4359c9d3ee/materials-10-00342-g001.jpg

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