Yap Zhen Shyong, Khalid Nur Hafizah A, Haron Zaiton, Mohamed Azman, Tahir Mahmood Md, Hasyim Saloma, Saggaff Anis
School of Civil Engineering, Faculty of Engineering, Universiti Teknologi Malaysia, Skudai 81310, Johor, Malaysia.
Centre for Advanced Composite Materials (CACM), School of Civil Engineering, Faculty of Engineering, Universiti Teknologi Malaysia, Skudai 81310, Johor, Malaysia.
Materials (Basel). 2021 Oct 2;14(19):5777. doi: 10.3390/ma14195777.
Massive waste rock wool was generated globally and it caused substantial environmental issues such as landfill and leaching. However, reviews on the recyclability of waste rock wool are scarce. Therefore, this study presents an in-depth review of the characterization and potential usability of waste rock wool. Waste rock wool can be characterized based on its physical properties, chemical composition, and types of contaminants. The review showed that waste rock wool from the manufacturing process is more workable to be recycled for further application than the post-consumer due to its high purity. It also revealed that the pre-treatment method-comminution is vital for achieving mixture homogeneity and enhancing the properties of recycled products. The potential application of waste rock wool is reviewed with key results emphasized to demonstrate the practicality and commercial viability of each option. With a high content of chemically inert compounds such as silicon dioxide (SiO), calcium oxide (CaO), and aluminum oxide (AlO) that improve fire resistance properties, waste rock wool is mainly repurposed as fillers in composite material for construction and building materials. Furthermore, waste rock wool is potentially utilized as an oil, water pollutant, and gas absorbent. To sum up, waste rock wool could be feasibly recycled as a composite material enhancer and utilized as an absorbent for a greener environment.
全球产生了大量废岩棉,引发了诸如填埋和浸出等重大环境问题。然而,关于废岩棉可回收性的综述却很匮乏。因此,本研究对废岩棉的特性及潜在可用性进行了深入综述。废岩棉可根据其物理性质、化学成分和污染物类型进行表征。综述表明,制造过程中产生的废岩棉因其纯度高,比消费后废岩棉更易于回收再利用。研究还表明,预处理方法——粉碎对于实现混合物均匀性和提高回收产品性能至关重要。本文对废岩棉的潜在应用进行了综述,并着重强调了关键结果,以证明每种应用的实用性和商业可行性。由于含有高含量的如二氧化硅(SiO)、氧化钙(CaO)和氧化铝(AlO)等提高耐火性能的化学惰性化合物,废岩棉主要被重新用作建筑复合材料和建筑材料的填料。此外,废岩棉还可能被用作油、水污染物和气体吸收剂。总之,废岩棉可作为复合材料增强剂进行可行的回收利用,并用作吸收剂以实现更绿色的环境。