da Silva Tulane Rodrigues, de Azevedo Afonso Rangel Garcez, Cecchin Daiane, Marvila Markssuel Teixeira, Amran Mugahed, Fediuk Roman, Vatin Nikolai, Karelina Maria, Klyuev Sergey, Szelag Maciej
Department of Agricultural and Environmental Engineering, UFF-Federal Fluminense University, Rua Passo da Pátria, 156, Niterói 24210-240, Brazil.
Advanced Materials Laboratory (LAMAV), UENF-State University of the Northern Rio de Janeiro, Av. Alberto Lamego, 2000, Campos dos Goytacazes, Rio de Janeiro 28013-602, Brazil.
Materials (Basel). 2021 Jun 25;14(13):3549. doi: 10.3390/ma14133549.
The urbanization process contributes to the growth of solid waste generation and causes an increase in environmental impacts and failures in the management of solid waste. The number of dumps is a concern due to the limited implementation and safe disposal of this waste. The interest in sustainable techniques has been growing in relation to waste management, which is largely absorbed by the civil construction sector. This work aimed to review plastic waste, especially polyethylene terephthalate (PET), that can be incorporated with construction materials, such as concrete, mortars, asphalt mixtures, and paving. The use of life-cycle assessment (LCA) is related, as a tool that allows the sustainability of products and processes to be enhanced in the long term. After analyzing the recent literature, it was identified that studies related to plastic wastes in construction materials concentrate sustainability around the alternative destination of waste. Since the plastic waste from different production chains are obtained, it was possible to affirm the need for a broader assessment, such as the LCA, providing greater quantification of data making the alternative processes and products more sustainable. The study contributes to enhance sustainability in alternative building materials through LCA.
城市化进程导致固体废物产生量增加,对环境的影响加剧,同时也造成了固体废物管理的失效。由于此类废物的处理和安全处置措施有限,垃圾场数量令人担忧。在废物管理方面,人们对可持续技术的兴趣与日俱增,而这些技术大多被民用建筑部门所采用。本研究旨在回顾可与建筑材料(如混凝土、砂浆、沥青混合料和铺路材料)结合使用的塑料废物,特别是聚对苯二甲酸乙二酯(PET)。生命周期评估(LCA)作为一种工具,有助于从长远角度提高产品和工艺的可持续性,因此也被纳入研究范围。在分析近期文献后发现,有关建筑材料中塑料废物的研究主要围绕废物的替代用途来探讨可持续性。鉴于不同生产链中都会产生塑料废物,因此有必要进行更广泛的评估,如LCA,以便对数据进行更精确的量化,从而使替代工艺和产品更具可持续性。本研究通过LCA有助于提高替代建筑材料的可持续性。