棕榈油熟料粉基地聚合物对沥青及沥青混合料性能的影响

N. Yaro, M. Napiah, M. Sutanto, A. Usman, A. A. Murana, Waqas Rafiq
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引用次数: 1

摘要

重点是在沥青混合料生产中使用改进剂,因为常规材料无法承受当前的交通负荷和环境条件。沥青路面行业越来越关注可持续性,将废料转化为替代原材料。本研究旨在确定棕榈油熟料粉基地聚合物改性剂(POCP-GM)对常规沥青和沥青混合料马歇尔性能的影响。为了制备地聚合物改性剂,POCP与碱活化剂、氢氧化钠(NaOH)托盘和硅酸钠(Na2SiO2)混合。POCP-GM沥青(POCP-GMB)采用高速混合技术,沥青的重量分别为0、2、4、6和8%。结果表明,加入POCP-GM后,POCP-GMB的共混物较硬,渗透性降低,软化点提高,在POCP-GMB中具有良好的储存稳定性和相容性。根据Marshall结果,发现POCP-GMB混合物相对于对照混合物具有更好的稳定性,并且测定的空隙值在规定的标准范围内。混合料的性能改善可归因于地聚合物的火山灰特性,它在沥青-地聚合物基体之间产生了强烈的相互作用,在骨料周围提供了足够的涂层,从而改善了混合料的性能。研究结果表明,利用地聚合物作为一种可行的替代改性剂来改善沥青和沥青混合料的性能是可行的。从研究结果来看,6%的POCP-GM可以被认为是改善沥青和沥青混合料性能并有助于促进可持续性的最佳用量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Palm Oil Clinker Powder-Based Geopolymer on Bitumen and Asphalt Mixture Properties
Emphasis is being devoted to using a modifier in asphalt mixtures production because convention materials cannot withstand current traffic loading and environmental conditions. The asphalt pavement industry is increasingly focusing on sustainability by turning waste materials into alternative raw materials. This study aims to determine the influence of palm oil clinker powder-based geopolymer modifier (POCP-GM) on conventional bitumen and Marshall properties of asphalt mixtures. To produce the geopolymer modifier, the POCP was mixed with the alkali activators, sodium hydroxide (NaOH) pallets, and sodium silicate (Na2SiO2). POCP-GM bitumen (POCP-GMB) was produced using a high-speed mixing technique for 0, 2, 4, 6, and 8% by weight of bitumen. The finding shows that incorporating POCP-GM produced a stiffer blend with decreasing penetration and improved softening point with good storage stability and compatibility in the POCP-GMB. Depending on the Marshall results, it was found that POCP-GMB mixtures possess improved stability relative to the control mixture, and the voids values determined are within the stipulated standard. The mixture's properties improvement can be attributed to geopolymer pozzolanic characteristics, which create strong interactions between the bitumen-geopolymer matrix which gives sufficient coating around the aggregate which improves mixtures properties. The study findings revealed the viability of utilizing geopolymer as a plausible alternative modifier to improve bitumen and asphalt mixtures' performance. From the study findings, 6% POCP-GM can be considered the optimum dosage that improves bitumen and asphalt mixture properties and helps promotes sustainability.
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