Ślosarczyk Agnieszka, Klapiszewska Izabela, Parus Anna, Lubianiec Olga, Klapiszewski Łukasz
Institute of Building Engineering, Faculty of Civil and Transport Engineering, Poznan University of Technology, Piotrowo 3, PL-60965 Poznan, Poland.
Institute of Chemical Technology and Engineering, Faculty of Chemical Technology, Poznan University of Technology, Berdychowo 4, PL-60965 Poznan, Poland.
Materials (Basel). 2023 Sep 15;16(18):6224. doi: 10.3390/ma16186224.
The requirements related to reducing the carbon footprint of cement production have directed the attention of researchers to the use of waste materials such as blast-furnace slag or fly ashes, either as a partial replacement for cement clinker or in the form of new alternative binders. This paper presents alkali-activated materials (AAMs) based on blast-furnace slag partially replaced with fly ash, metakaolin, or zeolite, activated with water glass or water glass with a small amount of water, and doped with zinc oxide. The mortars were tested for flow, hydration heat, mechanical strength, microstructure, and antimicrobial activity. The obtained test results indicate the benefits of adding water, affecting the fluidity and generating a less porous microstructure; however, the tested hydration heat, strength, and antibacterial properties are related to more favorable properties in AAMs produced on water glass alone.
与减少水泥生产碳足迹相关的要求,已将研究人员的注意力引向使用诸如高炉矿渣或粉煤灰等废料,要么作为水泥熟料的部分替代品,要么以新型替代胶凝材料的形式使用。本文介绍了基于用粉煤灰、偏高岭土或沸石部分替代的高炉矿渣的碱激活材料(AAMs),用水玻璃或添加少量水的水玻璃进行激活,并掺杂氧化锌。对砂浆进行了流动性、水化热、机械强度、微观结构和抗菌活性测试。获得的测试结果表明加水的好处,加水影响了流动性并产生了孔隙较少的微观结构;然而,所测试的水化热、强度和抗菌性能与仅用水玻璃生产的AAMs中更有利的性能相关。