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煅烧烟气脱硫石膏和铝酸钙对蒸汽养护下粉煤灰混凝土强度及钙矾石演化的影响

Influence of Calcined Flue Gas Desulfurization Gypsum and Calcium Aluminate on the Strength and AFt Evolution of Fly Ash Blended Concrete under Steam Curing.

作者信息

Zhang Yueran, Zhang Heng, Zhang Xiong

机构信息

Key Laboratory of Advanced Civil Engineering Materials of the Ministry of Education, School of Materials Science and Engineering, Tongji University, Shanghai 201804, China.

CCCC Shanghai Harbour Engineering Design & Research Institute Co., Ltd., Shanghai 200032, China.

出版信息

Materials (Basel). 2021 Nov 25;14(23):7171. doi: 10.3390/ma14237171.

Abstract

In order to improve the early strength of fly ash blended cement concrete under steam curing conditions, fly ash was partly substituted by calcined flue gas desulfurization (FGD) gypsum and active calcium aluminate. The effect of the composition and curing condition on the workability, mechanical property, and volume stability was systematically evaluated. The variety of hydration products and the evolution was determined by XRD to explore the formation kinetic of ettringite. Results show that the addition of calcined FGD gypsum and active calcium aluminate is able to improve the early compressive strength but using more FGD gypsum and a high sulfur aluminum ratio leads to a reduction in compressive strength from 28 to 90 days due to the increment of ettringite and crystallization of dihydrate gypsum. Both the free expansion ratio and limited expansion exhibited a continuous increasement with time, especially in the first 14 days of testing. Cracks were not observed on the surface of samples immersed in water for a year. The improvement of strength and shrinkage resistance is mainly due to the formation of ettringite generated before 14 days and the precipitation was highly limited from 14 to 28 days. Moreover, the characteristic peak of gypsum appeared after 28 days, indicating the conversion of partial of calcined FGD gypsum. The work presented here provides a new solution for improving the early strength of fly ash concrete without reducing the later strength and consuming extra energy.

摘要

为提高蒸汽养护条件下粉煤灰复合水泥混凝土的早期强度,采用煅烧烟气脱硫(FGD)石膏和活性铝酸钙部分替代粉煤灰。系统评估了组成和养护条件对工作性、力学性能和体积稳定性的影响。通过XRD确定水化产物的种类和演变,以探索钙矾石的形成动力学。结果表明,添加煅烧FGD石膏和活性铝酸钙能够提高早期抗压强度,但由于钙矾石的增加和二水石膏的结晶,使用更多的FGD石膏和高硫铝比会导致28至90天的抗压强度降低。自由膨胀率和限制膨胀率均随时间持续增加,尤其是在测试的前14天。浸泡在水中一年的样品表面未观察到裂缝。强度和抗收缩性的提高主要归因于14天前生成的钙矾石的形成,而14至28天的沉淀非常有限。此外,28天后出现石膏特征峰,表明部分煅烧FGD石膏发生了转化。本文提出的工作为提高粉煤灰混凝土早期强度而不降低后期强度且不消耗额外能源提供了一种新的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/766e/8658268/c9da1a42d956/materials-14-07171-g001.jpg

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