A State-of-the-Art Review of Limestone Calcined Clay Cement (LC3): Mechanisms, Performance and Sustainable Applications
Hanghang Wang, Yan Wang, Xiangrong Liu, Dengzhou Li, Xiaoqiang Jiang, Wangfeng Ren, Yongchang Ding, Xiaoping Wang, Shengkui Li, Lidong GaoReducing carbon emissions in the cement industry is vital for global carbon neutrality. Limestone calcined clay cement (LC3) has emerged as a promising low-carbon binder because it can lower the clinker fraction while using widely available clay and limestone resources. Although LC3 research has expanded rapidly, large-scale implementation is still constrained by variability in raw-material quality, incomplete understanding of coupled reaction mechanisms, rheological challenges, and scattered engineering evidence. This work presents a structured critical review of LC3 raw materials, hydration and microstructure, fresh-state behavior, mechanical performance, durability, solid-waste utilization, engineering applications, and environmental performance. The available evidence shows that the commonly studied LC3-50 formulation can reduce the clinker fraction to approximately 50 wt% while maintaining competitive engineering performance when raw-material reactivity, sulfate balance, mixture proportioning, and curing are appropriately controlled. Low-grade clays can also be viable after suitable activation and formulation adjustment. Carbonation resistance and admixture compatibility remain important challenges that require application-specific evaluation. By emphasizing evidence traceability and the conditions under which reported benefits are obtained, this review supports more reliable LC3 design and industrial implementation.