Teker Ercan Ece Ezgi, Andreas Lale, Cwirzen Andrzej, Habermehl-Cwirzen Karin
Building Materials, Department of Civil, Environmental and Natural Resources Engineering, Luleå University of Technology, 97187 Luleå, Sweden.
Waste Science and Technology, Department of Civil, Environmental and Natural Resources Engineering, Luleå University of Technology, 97187 Luleå, Sweden.
Materials (Basel). 2023 Mar 23;16(7):2557. doi: 10.3390/ma16072557.
Different ecological binders have been used to minimize the negative effects of cement production and use on the environment. Wood ash is one of these alternative binders, and there has been increasing research related to this topic recently. The wood ash utilized in the literature primarily originates from power plants and local bakeries, and predominantly wood fly ash is used. This review paper examines the use of wood ash as an ecological binder in two different applications: as a cement replacement and as an alkali-activated material. Studies have shown that while increased wood ash content in concrete and mortars can have negative effects on strength and durability, it is still a promising and developable material. Depending on the chemical composition of the wood ash, the strength and durability properties of concrete might be slightly improved by utilizing wood ash as a replacement for cement, with an optimal replacement level of 10-20%. However, there is a need for more research regarding the effects of wood ash on the durability of cement-based materials and its use in alkali-activated materials. Overall, this review provides a comprehensive overview of the properties of wood ash and its potential applications in conventional concrete and mortars, as well as in alkali-activated materials.
不同的生态粘结剂已被用于尽量减少水泥生产和使用对环境的负面影响。木灰就是这些替代粘结剂之一,最近关于这个主题的研究越来越多。文献中使用的木灰主要来自发电厂和当地面包店,主要使用的是木飞灰。这篇综述文章研究了木灰在两种不同应用中作为生态粘结剂的使用情况:作为水泥替代品和作为碱激活材料。研究表明,虽然混凝土和砂浆中木灰含量的增加可能会对强度和耐久性产生负面影响,但它仍然是一种有前景且可开发的材料。根据木灰的化学成分,用木灰替代水泥可能会略微提高混凝土的强度和耐久性性能,最佳替代水平为10%-20%。然而,关于木灰对水泥基材料耐久性的影响及其在碱激活材料中的应用,仍需要更多的研究。总体而言,这篇综述全面概述了木灰的特性及其在传统混凝土和砂浆以及碱激活材料中的潜在应用。