Walbrück Katharina, Maeting Felicitas, Witzleben Steffen, Stephan Dietmar
Department of Natural Sciences, Bonn-Rhine-Sieg University of Applied Sciences, von-Liebig-Str. 20, 53359 Rheinbach, Germany.
Building Materials and Construction Chemistry, Department of Civil Engineering, Technische Universität Berlin, Gustav-Meyer-Allee 25, 13355 Berlin, Germany.
Materials (Basel). 2020 Jul 17;13(14):3198. doi: 10.3390/ma13143198.
The development of sustainable, environmentally friendly insulation materials with a reduced carbon footprint is attracting increased interest. One alternative to conventional insulation materials are foamed geopolymers. Similar to foamed concrete, the mechanical properties of geopolymer foams can also be improved by using fibers for reinforcement. This paper presents an overview of the latest research findings in the field of fiber-reinforced geopolymer foam concrete with special focus on natural fibers reinforcement. Furthermore, some basic and background information of natural fibers and geopolymer foams are reported. In most of the research, foams are produced either through chemical foaming with hydrogen peroxide or aluminum powder, or through mechanical foaming which includes a foaming agent. However, previous reviews have not sufficiently addresses the fabrication of geopolymer foams by syntactic foams. Finally, recent efforts to reduce the fiber degradation in geopolymer concrete are discussed along with challenges for natural fiber reinforced-geopolymer foam concrete.
开发具有减少碳足迹的可持续、环保隔热材料正引起越来越多的关注。泡沫地质聚合物是传统隔热材料的一种替代品。与泡沫混凝土类似,地质聚合物泡沫的机械性能也可以通过使用纤维增强来提高。本文概述了纤维增强地质聚合物泡沫混凝土领域的最新研究成果,特别关注天然纤维增强。此外,还报道了天然纤维和地质聚合物泡沫的一些基本和背景信息。在大多数研究中,泡沫是通过用过氧化氢或铝粉进行化学发泡,或通过包括发泡剂的机械发泡来生产的。然而,以前的综述没有充分涉及用复合泡沫制造地质聚合物泡沫的问题。最后,讨论了最近在减少地质聚合物混凝土中纤维降解方面所做的努力以及天然纤维增强地质聚合物泡沫混凝土面临的挑战。