Pinheiro Claver, Landi Salmon, Lima Orlando, Ribas Larissa, Hammes Nathalia, Segundo Iran Rocha, Homem Natália Cândido, Castelo Branco Verônica, Freitas Elisabete, Costa Manuel Filipe, Carneiro Joaquim
Centre of Physics of Minho and Porto Universities (CF-UM-UP), Azurém Campus, University of Minho, 4800-058 Guimarães, Portugal.
Federal Institute of Education, Science and Technology Goiano, Rio Verde 75901-970, Brazil.
Sensors (Basel). 2023 Sep 7;23(18):7741. doi: 10.3390/s23187741.
This research presents a dual-pronged bibliometric and systematic review of the integration of phase change materials (PCM) in asphalt pavements to counteract the urban heat island (UHI) effect. The bibliometric approach discerns the evolution of PCM-inclusion asphalt research, highlighting a marked rise in the number of publications between 2019 and 2022. Notably, Chang'an University in China has emerged as a leading contributor. The systematic review addresses key questions like optimal PCM types for UHI effect mitigation, strategies for PCM leakage prevention in asphalt, and effects on mechanical properties. The findings identify polyethylene glycols (PEGs), especially PEG2000 and PEG4000, as prevailing PCM due to their wide phase-change temperature range and significant enthalpy during phase transitions. While including PCM can modify asphalt's mechanical attributes, such mixtures typically stay within performance norms. This review emphasises the potential of PCM in urban heat management and the need for further research to achieve optimal thermal and mechanical balance.
本研究对相变材料(PCM)在沥青路面中的应用进行了双管齐下的文献计量学和系统综述,以应对城市热岛(UHI)效应。文献计量学方法揭示了含PCM沥青研究的发展历程,突出显示2019年至2022年间出版物数量显著增加。值得注意的是,中国长安大学已成为主要贡献者。系统综述解决了诸如减轻UHI效应的最佳PCM类型、沥青中防止PCM泄漏的策略以及对力学性能的影响等关键问题。研究结果表明,聚乙二醇(PEG),尤其是PEG2000和PEG4000,因其宽相变温度范围和相变过程中的显著焓值而成为主流PCM。虽然加入PCM会改变沥青的力学属性,但此类混合物通常仍在性能规范范围内。本综述强调了PCM在城市热管理中的潜力以及进一步研究以实现最佳热平衡和力学平衡的必要性。