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由人工集料组成的道路沥青路面解决方案的比较环境生命周期评估。

A comparative environmental life cycle assessment of road asphalt pavement solutions made up of artificial aggregates.

作者信息

Oreto Cristina, Russo Francesca, Dell'Acqua Gianluca, Veropalumbo Rosa

机构信息

Department of Civil, Construction and Environmental Engineering, Federico II University of Naples, Via Claudio 21, 80125 Naples, Italy.

Department of Civil, Construction and Environmental Engineering, Federico II University of Naples, Via Claudio 21, 80125 Naples, Italy.

出版信息

Sci Total Environ. 2024 Jun 1;927:171716. doi: 10.1016/j.scitotenv.2024.171716. Epub 2024 Mar 19.

Abstract

The construction and maintenance of road pavements entail detrimental impacts on the consumption of resources and damage to the natural environment but also make up an opportunity for the large-scale application of circular economy principles and innovative waste valorisation paths. The present study focuses on developing a comprehensive procedure to evaluate the technical and environmental sustainability of replacing high percentage of limestone aggregates with artificial aggregates from municipal solid waste incineration (MSWI) into hot or cold recycled asphalt mixtures for asphalt pavements. The technical feasibility of the designed mixtures was investigated in terms of the main physical and mechanical properties of both the raw materials and the asphalt mixtures with content of artificial aggregates or sand in the range 25-40 % by mass. The environmental feasibility of the asphalt mixtures was evaluated through the SEM-EDS technique, the analysis of the eluate of the leaching test and the ecotoxicity for living organisms. Afterwards, the life cycle assessment (LCA) was applied to detect the critical spots of the life cycle of 1 m of a 6 cm-thick binder layer with high percentage of artificial aggregates or sand built and maintained through 30 years analysis period according to 18 impact category indicators. The main results show that, recycling the artificial aggregates into hot asphalt mixtures has on average a negligible effect on the overall environmental performance of the life cycle, and appears to be detrimental only for the consumption of fossil resources due to the higher optimum bitumen content. Looking at the results for cold mixes, the introduction of the artificial aggregates has an effect on the predicted durability of the asphalt layers, which is maximized in the case of coarse artificial aggregates. Consequent environmental benefits regard the global warming potential, fossil resource scarcity and freshwater eutrophication indicators.

摘要

道路路面的建设和维护对资源消耗和自然环境造成不利影响,但也为大规模应用循环经济原则和创新的废物增值途径提供了契机。本研究重点在于开发一种综合程序,以评估用城市固体废弃物焚烧(MSWI)产生的人工集料替代高比例石灰石集料用于沥青路面热拌或冷拌再生沥青混合料时的技术和环境可持续性。根据原材料以及人工集料或砂含量在25%-40%(质量)范围内的沥青混合料的主要物理和力学性能,研究了设计混合料的技术可行性。通过扫描电子显微镜-能谱仪(SEM-EDS)技术、浸出试验洗脱液分析以及对生物体的生态毒性评估了沥青混合料的环境可行性。随后,应用生命周期评估(LCA),根据18个影响类别指标,通过30年的分析期,检测1米厚、含高比例人工集料或砂的6厘米厚粘结层在建设和维护过程中的生命周期关键点。主要结果表明,将人工集料用于热拌沥青混合料,平均而言对生命周期的整体环境性能影响可忽略不计,并且由于最佳沥青含量较高,似乎仅对化石资源消耗有不利影响。从冷拌混合料的结果来看,人工集料的引入对沥青层的预测耐久性有影响,在粗人工集料的情况下这种影响最大。相应的环境效益涉及全球变暖潜势、化石资源稀缺和淡水富营养化指标。

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