Coppola Bartolomeo, Tulliani Jean-Marc, Antonaci Paola, Palmero Paola
Department of Applied Science and Technology, Politecnico di Torino, INSTM R.U. Lince Laboratory, Corso Duca Degli Abruzzi, 24, 10129 Torino, Italy.
Department of Structural, Geotechnical and Building Engineering, Politecnico di Torino, Corso Duca Degli Abruzzi, 24, 10129 Torino, Italy.
Materials (Basel). 2020 May 15;13(10):2284. doi: 10.3390/ma13102284.
This review aims to provide a comprehensive assessment concerning alkali activation of natural stone wastes and minerals. In particular, the structure of the review is divided into two main sections in which the works dealing with alumino-silicate and carbonatic stones are discussed, respectively. Alumino-silicate stones are generally composed of quartz and feldspars, while carbonatic stones are mainly made of calcite and dolomite. The role of these minerals in the alkali activation process is discussed, attesting their influence in the development of the final product properties. In most of the works, authors use mineral additions only as fillers or aggregates and, in some cases, as a partial substitution of more traditional raw powders, such as metakaolin, fly ash, and granulated blast furnace slag. However, a few works in which alumino-silicate and carbonatic stone wastes are used as the main active components are discussed as well. Not only the raw materials, but also the entire alkali activation process and the curing conditions adopted in the literature studies here reviewed are systematically analyzed to improve the understanding of their effect on the physical, mechanical, and durability properties of the final products and to eventually foster the reuse of natural stone wastes for the purposes of sustainability in different applications.
本综述旨在对天然石材废料和矿物的碱激发进行全面评估。具体而言,综述结构分为两个主要部分,分别讨论了涉及铝硅酸盐石材和碳酸盐石材的研究。铝硅酸盐石材通常由石英和长石组成,而碳酸盐石材主要由方解石和白云石构成。文中讨论了这些矿物在碱激发过程中的作用,证实了它们对最终产品性能发展的影响。在大多数研究中,作者仅将矿物掺合料用作填料或骨料,在某些情况下,用作更传统原料粉末(如偏高岭土、粉煤灰和粒化高炉矿渣)的部分替代品。不过,也讨论了一些将铝硅酸盐和碳酸盐石材废料用作主要活性成分的研究。不仅对原材料,还对本文所综述的文献研究中采用的整个碱激发过程及养护条件进行了系统分析,以增进对它们对最终产品物理、力学和耐久性性能影响的理解,并最终促进天然石材废料在不同应用中出于可持续性目的的再利用。