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Life cycle assessment of hot mix asphalt and zeolite-based warm mix asphalt with reclaimed asphalt pavement

机译:再生沥青路面热拌沥青与沸石基温拌沥青的寿命周期评价

摘要

A comprehensive life cycle assessment of asphalt pavements was conducted including hot mix asphalt (HMA), warm mix asphalt (WMA) with the addition of synthetic zeolites, and asphalt mixes with reclaimed asphalt pavement (RAP). The environmental impacts associated with energy consumption and air emissions were assessed, as well as other environmental impacts resulting from the extraction and processing of minerals, binders and chemical additives; asphalt production; transportation of materials; asphalt paving; road traffic on the pavement; land use; dismantling of the pavement at the end-of-life and its landfill disposal or recycling. Monte Carlo simulations were also conducted to take into account the variability of critical input parameters. Taking into account the entire life cycle, the impacts of zeolite-based WMA pavements were almost equal to the impacts of HMA pavements with the same RAP content. The reduction in the impacts of WMA resulting from the lowering of the manufacturing temperature was offset by the greater impacts of the materials used, especially the impacts of the synthetic zeolites. Moreover, by comparing asphalt mixes with different RAP contents, it was shown that the impacts of asphalt mixes were significantly reduced when RAP was added. All endpoint impacts as well as climate change, fossil depletion and total cumulative energy demand were decreased by 13–14% by adding 15% RAP. A key advantage of WMA is the potentially greater use of RAP. Thus, the decrease in the impacts achieved by adding large amounts of RAP to WMA could turn these asphalt mixes into a good alternative to HMA in environmental terms.
机译:进行了沥青路面的综合生命周期评估,包括热混合沥青(HMA),添加合成沸石的热混合沥青(WMA)和具有再生沥青路面(RAP)的沥青混合料。评估了与能源消耗和空气排放有关的环境影响,以及矿物质,粘合剂和化学添加剂的提取和加工产生的其他环境影响;沥青生产;材料运输;沥青铺路人行道上的道路交通;土地利用;在生命周期结束时拆除人行道,并对其进行垃圾掩埋处置或回收。还进行了蒙特卡洛模拟,以考虑关键输入参数的可变性。考虑到整个生命周期,基于沸石的WMA路面的影响几乎等于具有相同RAP含量的HMA路面的影响。由于降低的制造温度而导致的WMA冲击的减少被所用材料的更大冲击,尤其是合成沸石的冲击所抵消。此外,通过比较不同RAP含量的沥青混合料,发现添加RAP可以显着降低沥青混合料的影响。通过增加15%的RAP,所有端点影响以及气候变化,化石消耗和总累积能源需求减少了13–14%。 WMA的一个关键优势是RAP的潜在用途。因此,通过在WMA中添加大量RAP所获得的影响的减少可能会使这些沥青混合料在环境方面成为HMA的良好替代品。

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