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Optimised design of concrete recycling networks: The case of North Rhine-Westphalia

机译:混凝土回收网络的优化设计:北莱茵 - 威斯特法伦州的案例

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In Germany, construction and demolition waste is either landfilled or used for roadworks after being treated in recycling plants. However, recycled concrete aggregates from building demolition can be reused for the construction of new buildings, which allows to close the material loop of concrete. The aim of this study is to develop a decision support system (DSS) in order to investigate the economic impacts and consequences of recycling concrete from building demolition in a closed loop material cycle. To do so, we propose a bi-objective mixed-integer linear optimisation model that provides information on the number and location of installed sorting screens and defines the material flows within a comprehensive regional recycling network covering all processes from building demolition to construction of new buildings. While the economic objective function minimises the total costs of the recycling network, the circularity objective function minimises the amount of primary natural aggregates required for concrete manufacturing. We apply our optimisation model to the German federal state of North Rhine-Westphalia. Results show that under current conditions the manufacturing of concrete with recycled concrete aggregates is economically viable predominantly in areas without local supplies of natural aggregates. In addition, analysis of the trade-offs between the two objectives as well as recommendations on the design of political regulations and economic instruments to foster such recycling networks are presented.
机译:在德国,建筑和拆迁废物填埋或用于循环植物后的道路工程。然而,可以重新使用建筑物拆除的再生混凝土聚集物用于建造新建筑物,这允许关闭混凝土的材料环。本研究的目的是制定决策支持系统(DSS),以调查回收混凝土从闭环材料周期中拆除混凝土的经济影响和后果。为此,我们提出了一种双目标混合整数线性优化模型,提供有关安装分类屏幕的数量和位置的信息,并在覆盖建筑拆除到新建筑的建设中的全面区域回收网络中的材料流程。 。虽然经济目标函数最大限度地减少了回收网络的总成本,但圆形目标函数最小化了混凝土制造所需的原发性骨料量。我们将优化模型应用于德国北莱茵 - 威斯特法伦州的德国联邦州。结果表明,在当前条件下,循环混凝土聚集体的混凝土制造在没有本地自然聚集体的区域,主要在经济上可行。此外,还提出了分析两项目标之间的权衡以及关于促进该回收网络的政治法规和经济文书的建议。

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