基于仿真的循环经济资源效率分析——冶金基础设施的赋能作用

N. Bartie, A. Abadías Llamas, M. Heibeck, M. Fröhling, O. Volkova, M. Reuter
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引用次数: 16

摘要

过程冶金是循环经济(CE)的关键推动者和核心。本文展示了最先进的方法来理解非常大规模的CE系统的资源效率。过程模拟允许系统范围的火用分析,也与环境足迹相关。结果表明,可以创建大型CE系统的数字孪生,并对其资源效率进行量化。这种方法为财务支出的详细估计以及高影响的CE系统创新提供了基础。研究了碲化镉(CdTe)光伏技术生命周期中多种金属基础设施的作用。结果表明,优化CdTe系统还有大量的工作要做。能源密集型工艺导致的低能源效率突出了具有最大可再生能源改进潜力的领域。这一细节揭示了CE的真实性能和难以忽视的事实,即它不能完全实现,而只能被驱动到其热力学极限。
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The simulation-based analysis of the resource efficiency of the circular economy – the enabling role of metallurgical infrastructure
ABSTRACT Process metallurgy is a key enabler and the heart of the Circular Economy (CE). This paper shows the state-of-the-art approach to understanding the resource efficiency of very large-scale CE systems. Process simulation permits system-wide exergy analysis also linked to environmental footprinting. It is shown that digital twins of large CE systems can be created and their resource efficiencies quantified. This approach provides the basis for detailed estimation of financial expenditures as well as high-impact CE system innovation. The cadmium telluride (CdTe) photovoltaic technology life cycle, which brings several metal infrastructures into play, is studied. The results show that considerable work remains to optimise the CdTe system. Low exergy efficiencies resulting specifically from energy-intensive processes highlight areas with the greatest renewables-based improvement potential. This detail sheds light on the true performance of the CE and the inconvenient truth that it cannot be fully realised but only driven to its thermodynamic limits.
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3.50
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0.00%
发文量
6
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