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Hydration Kinetics of Municipal Solid Wastes Incineration(MSWI) Fly Ash-Cement 被引量:1

Hydration Kinetics of Municipal Solid Wastes Incineration(MSWI) Fly Ash-Cement
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摘要 Hydration heat behavior and kinetics of blended cement containing up to 20% MSWI fly ash were investigated based on its hydration heat evolution rate measured by isothermal calorimeter. Kinetics parameters, N and K, and hydration degree, Ca(OH)2 content, were also calculated and analyzed. According to the experimental results, the induction period was elongated, the second heat evolution peak was in advance, and the third hydration heat peak could be detected due to MSWI fly ash pozzolanic reaction. The hydration reaction rate was controlled by nucleation kinetics in the acceleration period and then by diffusion in the decay period, but in the deceleration period, the hydration experienced a dual controlling reaction of autocatalytic chemical reaction and diffusion. The hydration rate of blended cement was faster. Ca(OH)2 content increased before 14 days. Hydration heat behavior and kinetics of blended cement containing up to 20% MSWI fly ash were investigated based on its hydration heat evolution rate measured by isothermal calorimeter. Kinetics parameters, N and K, and hydration degree, Ca(OH)2 content, were also calculated and analyzed. According to the experimental results, the induction period was elongated, the second heat evolution peak was in advance, and the third hydration heat peak could be detected due to MSWI fly ash pozzolanic reaction. The hydration reaction rate was controlled by nucleation kinetics in the acceleration period and then by diffusion in the decay period, but in the deceleration period, the hydration experienced a dual controlling reaction of autocatalytic chemical reaction and diffusion. The hydration rate of blended cement was faster. Ca(OH)2 content increased before 14 days.
作者 阚黎黎 ZHANG Li SHI Huisheng KAN Lili
出处 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2019年第3期596-603,共8页 武汉理工大学学报(材料科学英文版)
基金 Funded by the National Natural Science Foundation of China(No.51172164)
关键词 MUNICIPAL solid waste INCINERATION (MSWI) FLY ASH HYDRATION heat kinetics HYDRATION degree municipal solid waste incineration(MSWI) fly ash hydration heat kinetics hydration degree
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