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Life-cycle assessment of pavements Part II: Filling the research gaps

机译:路面的生命周期评估第二部分:填补研究空白

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摘要

As life-cycle assessment (LCA) increasingly is used to evaluate the environmental footprint of pavements, there is growing need to critique the state and utility of the supporting science. LCA is a data-intensive methodology that requires inputs and models from a variety of different scientific fields. While some data sources are mature, others are products of nascent and inexact research. Within pavement LCAs, traffic delay, rolling resistance, concrete carbonation, pavement albedo, lighting, leachate, and end of life allocation are areas where the supporting science is incomplete or is ineffectively incorporated into the pavement LCA framework. These components produce quantitative gaps in the assessment methodology, thus jeopardizing the accuracy of results and defensibility of conclusions. Benchmarking where the science stands allows practitioners to perform LCAs while incorporating the best available information, including best estimates and gross evaluations of the uncertainty. Moreover, identifying weaknesses in the fields that support pavement LCAs provides a transparent assessment framework and generates a focused research direction moving forward.
机译:随着生命周期评估(LCA)越来越多地用于评估人行道的环境足迹,越来越需要对支持科学的状态和实用性进行评论。 LCA是一种数据密集型方法,需要来自各种不同科学领域的输入和模型。虽然某些数据源已经成熟,但其他数据源是新生且不精确的研究的产物。在路面LCA中,行车延误,滚动阻力,混凝土碳化,路面反照率,照明,渗滤液和寿命终止分配是支持科学不完整或未有效纳入路面LCA框架的领域。这些组成部分在评估方法中产生了数量上的差距,从而损害了结果的准确性和结论的可辩护性。科学定位的基准可以使从业人员在执行LCA的同时,结合最佳的可用信息,包括对不确定性的最佳估计和粗略评估。此外,识别支持路面LCA的领域中的弱点可提供透明的评估框架,并为今后的研究指明方向。

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