硅酸盐水泥
地聚合物水泥
聚合物
温室气体
水泥
耐久性
环境科学
抗压强度
废物管理
粉煤灰
材料科学
工程类
复合材料
地质学
海洋学
作者
Muhammad Faheem Mohd Tahir,Mohd Mustafa Al Bakri Abdullah,Shayfull Zamree Abd Rahim,Mohd Rosli Mohd Hasan,Mohamed Saafi,Ramadhansyah Putra Jaya,Rosnita Mohamed
标识
DOI:10.1016/j.conbuildmat.2022.128190
摘要
• The various types of road pavement currently in use. • Review of the current research and results of using Ordinary Portland Cement (OPC) and various supplementary materials in rigid concrete pavements. • The use of waste materials in geopolymer as rigid concrete pavement. • Review of current research works of geopolymer concrete pavement with various geopolymer industrial by-products precursor. • The study of physical and mechanical properties of geopolymer concrete rigid pavement as well as a summary of standard testing methods and requirements. Rigid pavements are less expensive than flexible pavements and have a 20-year service life, making them more suitable for areas with weak subgrade soil and poor drainage. However, the use of rigid pavements comes at the expense of the environment. The production of cement has caused serious environmental problems, the most serious of which is the emission of carbon dioxide gas (CO 2 ) into the atmosphere, causing natural greenhouse effect and global warming. Sustainable materials aid in the reduction of CO 2 emissions as well as the use of natural raw materials in cement production. In the past few decades, significant progress has been made to develop alternative sustainable building materials (such as geopolymer cement/concrete) in order to control CO 2 emissions. Numerous studies have found that geopolymer is comparable to ordinary Portland cement (OPC) in terms of strength and chemical resistance. However, only a few studies have been done on the usage of geopolymer as a rigid pavement. From the review that has been done, it can be concluded that, in addition to high strength, the requirements for rigid pavement concrete material should include fast setting time, good workability and high durability. The review emphasized that geopolymers have been proven to have excellent strength, durability and processability which fulfil the requirement for rigid pavement application. Finally, this review also introduces future research opportunities regarding the potential of geopolymers as an alternative to OPC for rigid pavements.
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