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TOWARDS SUSTAINABLE MATERIAL USAGE: INVESTIGATING LIMITS TO SECONDARY ALUMINUM SINKS

机译:迈向可持续材料的使用:调查二级铝水槽的限制

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For aluminum, substitution of primary with secondary resources decreases energy consumption; this energy advantage creates a strong economic incentive to recycle. Several authors have raised concerns that the current sinks for secondary materials may soon be saturated, impeding subsequent expansion of recycling. This work combines dynamic material flow analysis with optimal batch planning models to quantify the significance and drivers of these pending limits under several scenarios, and thereby explore potential opportunities to increase recycling. An aluminum recycling system case was developed that includes containers and packaging, automotive, and construction products and scraps. The impacts on aggregate scrap utilization and materials cost are explored in the context of changing alloy demand and lifetime. Insights drawn from this specific case study could be applied to multi-stakeholder, systemic models.
机译:对于铝,初级资源的替代降低了能量消耗;这种能源优势创造了重新循环的强烈经济动力。若干作者提出了担心的次要材料的水槽可能很快被饱和,妨碍随后的再循环扩张。这项工作与最佳批量规划模型相结合了动态材料流分析,以量化若干情景下这些待定限制的重要性和驱动因素,从而探讨增加回收的潜在机会。开发了一种铝制回收系统外壳,包括容器和包装,汽车和施工产品和废料。在改变合金需求和寿命的背景下探讨了对聚合废料利用和材料成本的影响。从这个特定案例研究中汲取的洞察力可以应用于多利益相关者,系统模型。

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