Zhu Chenhui, Jiang Yibo, Shang Qizhi, Ye Yuchen, Yang Jie
School of Transportation and Civil Engineering, Nantong University, Nantong 226019, China.
Jiangsu Huaiyin Water Conservancy Construction Co., Ltd., Huaian 223000, China.
Materials (Basel). 2023 Mar 24;16(7):2584. doi: 10.3390/ma16072584.
The hardened cement paste powder (HCP) powder, devoid of the hydration cementing property, can be regenerated and cemented into a test block with practical strength of almost 60 MPa via CO carbonization using appropriate means. This study established a kinetic model of CO curing of an HCP powder test block based on the degree of carbonization to study the carbonization reaction kinetic characteristics of the test block. The model was modified according to the characteristics of the evident temperature differences in the reaction kettle in the early, middle, and late stages of the carbonization process. The proposed model can be used to formulate and control the carbonization and cementation processes of HCP powder and can also be applied to describe the kinetics of the reaction processes of other similar systems.
已失去水化胶凝性能的硬化水泥浆体粉末(HCP粉末),通过适当手段利用CO碳化可被再生并胶凝制成实际强度近60MPa的试块。本研究基于碳化程度建立了HCP粉末试块CO养护动力学模型,以研究试块的碳化反应动力学特性。根据碳化过程早期、中期和后期反应釜内明显的温度差异特点对模型进行了修正。所提出的模型可用于制定和控制HCP粉末的碳化和胶凝过程,也可用于描述其他类似体系反应过程的动力学。