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Carbon footprint comparison of innovative techniques in the construction and maintenance of road infrastructure in The Netherlands

机译:荷兰道路基础设施建设和维护中创新技术的碳足迹比较

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The ambition of European countries to reduce their national greenhouse gas emissions, has been translated in the Netherlands in green procurement policy of the national road administration. An increasing amount of innovative techniques and approaches in road infrastructure construction and maintenance are available, but their contribution to achieving the national goals is often unknown. The aim of this research was to develop insight for policy makers and researchers on the potential impact of existing and nearly operative innovative techniques in road infrastructure. The emissions during the whole life cycle of Dutch road infrastructure forms the baseline of this study. The total greenhouse emissions from Dutch road infrastructure are estimated at 2 Mt CO2-equivalents per year, which are mainly resulting from production and construction of asphalt road, bricks, concrete elements and electricity for lighting. Subsequently, ten currently and nearly operative innovations are inventoried and assessed on their reduction potential for greenhouse gas emissions. Large reductions can be achieved by switching the energy source of lighting installations towards renewable sources. For asphalt roads, low energy asphalt and the application of rejuvenators had the highest carbon reduction potentials. Reducing the amount of new made bricks by using concrete elements instead leads to almost 30% CO2 reduction for the emissions of brick roads. For concrete element roads, the highest reduction potential is in further applying the construction recycling concept called "Kringbouw". The cumulative greenhouse gas reduction potential is 37% for both the main road network and the asphalt roads in the secondary road network, 28% for both bricks and concrete element roads, and 84% for maintenance and control of the total road infrastructure. This study shows that the reduction potential for carbon emissions in infrastructure is substantial: a cumulative reduction of one third of the Dutch road infrastructure emissions could be achieved. This study as well as similar follow-up studies can serve as a guide for policy makers in early development stages and decision making. (C) 2015 Elsevier Ltd. All rights reserved.
机译:欧洲国家减少国家温室气体排放的雄心,在荷兰国家道路管理局的绿色采购政策中得到了体现。在道路基础设施建设和维护中,可以使用越来越多的创新技术和方法,但是它们对实现国家目标的贡献通常是未知的。这项研究的目的是为政策制定者和研究人员提供有关道路基础设施中现有和几乎有效的创新技术的潜在影响的见识。荷兰道路基础设施整个生命周期的排放构成了本研究的基准。据估计,荷兰道路基础设施每年产生的温室气体总排放量为2 Mt二氧化碳当量,主要来自沥青道路,砖块,混凝土元件和照明用电的生产和建设。随后,盘点了十项当前和几乎可操作的创新,并评估了其减少温室气体排放的潜力。通过将照明设备的能源转换为可再生能源,可以实现大幅度的减少。对于沥青路面,低能耗沥青和再生剂的应用具有最高的碳减排潜力。通过使用混凝土元素来减少新制砖的数量,可以减少近30%的二氧化碳排放量,以减少砖路的排放。对于混凝土元素道路,最大的减排潜力在于进一步应用称为“ Kringbouw”的建筑回收概念。二级道路网中主干路网和柏油马路的累计温室气体减排潜力分别为37%,砖块和混凝土元素道路均为28%,维护和控制整个道路基础设施的比例为84%。这项研究表明,减少基础设施碳排放的潜力是巨大的:累计可减少荷兰道路基础设施排放的三分之一。该研究以及类似的后续研究可以为决策者在早期开发阶段和决策中提供指导。 (C)2015 Elsevier Ltd.保留所有权利。

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