Ram Kiran, Flegar Matea, Serdar Marijana, Scrivener Karen
Department of Materials, Faculty of Civil Engineering, University of Zagreb, 10000 Zagreb, Croatia.
Laboratory of Construction Materials, École Polytechnique Fédérale de Lausanne, 1015 Lausanne, Switzerland.
Materials (Basel). 2022 Dec 30;16(1):374. doi: 10.3390/ma16010374.
The kaolinite content is principally responsible for the durability performance of Limestone Calcined Clay Cement (LC3), which calls into question its global applicability. The clay supply has a significant impact on the LC3 system's reduced carbon footprint advantage. The influence of kaolinite concentration from two separate clays (collected in East South-East Europe) on the durability performance of concrete was investigated in this study. The low-kaolinitic clay had 18% kaolinite, while the medium-kaolinitic clay contained around 41% kaolinite. The compressive strength, chloride intrusion, electrical conductivity, surface resistivity, and sorptivity index were measured on concrete after 28 days. Furthermore, the pore structure development of these mixtures was investigated in relation to the kaolinite content of the mixtures. The reactivity test was performed on clays to measure their reactivity levels within the cementitious system. The results show that kaolinite content has a moderate effect on compressive strength, but it has a considerable effect on other durability indices. When compared to the Portland cement mixture, the chloride migration and diffusion coefficients were reduced by 50% and 36%, respectively, in the combination with a medium kaolinite content (more than 40%). The low-kaolinitic clay, on the other hand, achieved 60% of the chloride penetration resistance of the medium-kaolinitic clay. Furthermore, low-kaolinitic clay has been demonstrated to be suitable for low-carbon concrete in moderate exposure conditions.
高岭土含量是石灰石煅烧粘土水泥(LC3)耐久性的主要决定因素,这使其全球适用性受到质疑。粘土供应对LC3系统减少碳足迹的优势有重大影响。本研究调查了两种不同粘土(取自东南欧)中高岭土浓度对混凝土耐久性的影响。低高岭土含量的粘土含有18%的高岭土,而中高岭土含量的粘土含有约41%的高岭土。在28天后对混凝土的抗压强度、氯离子渗透、电导率、表面电阻率和吸水率指数进行了测量。此外,还研究了这些混合物的孔隙结构发展与混合物中高岭土含量的关系。对粘土进行了反应性测试,以测量它们在胶凝体系中的反应活性水平。结果表明,高岭土含量对抗压强度有中等影响,但对其他耐久性指标有相当大的影响。与波特兰水泥混合物相比,中高岭土含量(超过40%)的组合中氯离子迁移和扩散系数分别降低了50%和36%。另一方面,低高岭土含量的粘土达到了中高岭土含量粘土抗氯离子渗透能力的60%。此外,低高岭土含量的粘土已被证明适用于中等暴露条件下的低碳混凝土。