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首页> 外文期刊>The Science of the Total Environment >Dynamic accounting of greenhouse gas emissions from cascading utilisation of wood waste
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Dynamic accounting of greenhouse gas emissions from cascading utilisation of wood waste

机译:级联利用木材废物产生的温室气体排放的动态核算

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Cascading utilisation of post-consumer wood waste has recently gained increasing attention in the European Union, aiming for a society in which the resource's properties are optimized through sequential uses. To date, material utilisation of wood waste has been limited to particleboard production, with additional niche alternatives being restricted by quality requirements for wood waste. In this consequential life cycle assessment focusing on post-consumer wood collected at Danish recycling centres, Global Warming Potential (GWP) impacts from quality-driven choices for cascading management of wood waste were compared with those from handling mixed wood waste qualities. GWPs were modelled by considering the dynamic profile of greenhouse gas emissions (including biogenic carbon dioxide) for two time horizons (100 and 500 years). The robustness of the results was tested by varying modelling assumptions with respect to electricity system, wood sourcing and associated rotation period, and impacts from indirect land use changes. The results demonstrated that valuing quality over quantity in wood waste management can ensure larger GWP savings, especially if recycling applications have a long lifetime and/or substitute energy-intensive products; such results were confirmed under all scenario analyses. Inclusion of land use changes credited land-intensive products. More cascade steps of the wood waste resource ensured larger savings; however, assumptions on the electricity mix, on the source of the wood alongside the choice of the time horizon for GWP greatly influenced the results on cascading management. (c) 2018 Elsevier B.V. All rights reserved.
机译:消费后木材废料的级联利用最近在欧盟引起了越来越多的关注,其目标是在一个社会中通过顺序使用来优化资源特性的社会。迄今为止,木材废料的材料利用仅限于刨花板生产,另外的利基替代品受到木材废料质量要求的限制。在针对丹麦回收中心收集的消费后木材进行的后续生命周期评估中,将质量驱动选择对木材废物进行级联管理的全球变暖潜力(GWP)影响与处理混合木材废物质量的影响进行了比较。通过考虑两个时间段(100年和500年)内温室气体排放量(包括生物二氧化碳)的动态变化来对全球升温潜能值进行建模。通过改变有关电力系统,木材采购和相关轮换周期以及间接土地使用变化的影响的建模假设,测试了结果的稳健性。结果表明,在木材废物管理中重视质量而不是数量可以确保更大的全球升温潜能值节省,特别是在回收利用寿命长和/或替代能源密集型产品的情况下;所有方案分析均证实了此类结果。土地用途的变化包括了土地密集型产品。木材废物资源的级联步骤更多,可节省更多;但是,关于电力混合,木材来源以及全球升温潜能值时间范围选择的假设极大地影响了级联管理的结果。 (c)2018 Elsevier B.V.保留所有权利。

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