Mohammed Angham Ali, Nahazanan Haslinda, Nasir Noor Azline Mohd, Huseien Ghasan Fahim, Saad Ahmed Hassan
Department of Civil Engineering, Faculty of Engineering, University of Putra Malaysia, Seri Kembangan 43400, Selangor, Malaysia.
Department of the Build Environment, School of Design and Environment, National University of Singapore, Singapore 117566, Singapore.
Materials (Basel). 2023 Feb 28;16(5):2020. doi: 10.3390/ma16052020.
Calcium-based binders, such as ordinary Portland cement (OPC) and lime (CaO), are the most common artificial cementitious materials used worldwide for concrete and soil improvement. However, using cement and lime has become one of the main concerns for engineers because they negatively affect the environment and economy, prompting research into alternative materials. The energy consumption involved in producing cementitious materials is high, and the subsequent CO emissions account for 8% of the total CO emissions. In recent years, an investigation into cement concrete's sustainable and low-carbon characteristics has become the industry's focus, achieved by using supplementary cementitious materials. This paper aims to review the problems and challenges encountered when using cement and lime. Calcined clay (natural pozzolana) has been used as a possible supplement or partial substitute to produce low-carbon cement or lime from 2012-2022. These materials can improve the concrete mixture's performance, durability, and sustainability. Calcined clay has been utilized widely in concrete mixtures because it produces a low-carbon cement-based material. Owing to the large amount of calcined clay used, the clinker content of cement can be lowered by as much as 50% compared with traditional OPC. It helps conserve the limestone resources used in cement manufacture and helps reduce the carbon footprint associated with the cement industry. Its application is gradually growing in places such as Latin America and South Asia.
钙基粘结剂,如普通硅酸盐水泥(OPC)和石灰(CaO),是全球范围内用于混凝土和土壤改良的最常见人造胶凝材料。然而,使用水泥和石灰已成为工程师们主要关注的问题之一,因为它们会对环境和经济产生负面影响,这促使人们对替代材料进行研究。生产胶凝材料所涉及的能源消耗很高,随后的二氧化碳排放量占总二氧化碳排放量的8%。近年来,通过使用辅助胶凝材料来研究水泥混凝土的可持续和低碳特性已成为该行业的重点。本文旨在综述使用水泥和石灰时遇到的问题和挑战。从2012年到2022年,煅烧粘土(天然火山灰)已被用作一种可能的补充材料或部分替代品,以生产低碳水泥或石灰。这些材料可以改善混凝土混合物的性能、耐久性和可持续性。煅烧粘土已被广泛应用于混凝土混合物中,因为它能生产出低碳水泥基材料。由于使用了大量煅烧粘土,与传统的OPC相比,水泥的熟料含量可降低多达50%。这有助于保护水泥生产中使用的石灰石资源,并有助于减少与水泥行业相关的碳足迹。它在拉丁美洲和南亚等地的应用正在逐渐增加。