Life Cycle Assessment Applied to Railway Infrastructure: A Proposed Method

F. B. Ribeiro, Marcelino Aurélio Vieira da Silva
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Abstract

Based on mitigation strategies for the rational use of resources and conscious consumption of inputs, it is important to develop tools that allow the measurement of environmental impacts and greenhouse gas emissions, for better decision-making in the planning of railway infrastructure activities. Therefore, this article presents a method for evaluating railway infrastructure projects, having as a parameter the potential impact of global warming when different materials are used in the sub-ballast, to improve the support capacity of the railway pavement. As a technical criterion for evaluation, the mechanical behavior of the subgrade was considered in a condition of moisture above the optimal level, with a sub-ballast composed of sandy material as a baseline for comparison. The results, considering the environmental impact, clearly indicated that the use of a soil-cement mixture in the sub-ballast was the best option. Furthermore, even in the face of more frequent renovation of the permanent way, the reference scenario was more attractive than those with use of a combination of soil-emulsion and hot mix asphalt.
应用于铁路基础设施生命周期评估的一种建议方法
在合理利用资源和有意识地消耗投入的缓解战略的基础上,必须开发能够衡量环境影响和温室气体排放的工具,以便在规划铁路基础设施活动时作出更好的决策。因此,本文提出了一种评估铁路基础设施项目的方法,以全球变暖的潜在影响为参数,在使用不同材料的压载物时,以提高铁路路面的支撑能力。作为评价的技术标准,考虑了路基在湿度高于最佳水平的情况下的力学行为,并以砂质材料组成的压载物作为基准进行比较。考虑到环境影响,结果清楚地表明,在压载物中使用水泥土混合物是最佳选择。此外,即使面对更频繁的永久方式的翻新,参考方案比使用土壤乳液和热混合沥青的组合更有吸引力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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