Carbon reduction in global supply network design subject to carbon tariffs and location-specific carbon policies

Jens Christian, Florian Sahling
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Abstract

Carbon policies are often limited to specific regions. To avoid stricter carbon emission requirements, companies relocate production to regions without carbon policies that offer a higher degree of flexibility. This effect is known as carbon leakage. To prevent carbon leakage, carbon tariffs are imposed on carbon emissions imported into regulated regions. We present a new model formulation for the design of a global supply network subject to carbon tariffs and location-specific carbon policies. Relevant carbon emissions are captured by a product carbon footprint. This model plans the locations of manufacturing plants and distribution centers and the transportation between them. In addition, we consider the choice of production technologies to enable carbon reduction. The objective is to minimize the net present value. To solve this supply network design model, we apply a fix-and-optimize heuristic. Our numerical study demonstrates that the heuristic provides high-quality solutions in a reasonable time frame. We indicate that combining carbon tariffs with location-specific carbon policies fundamentally changes the economic and environmental consequences for the network design. In addition, we examine how carbon tariffs and location-specific carbon policies affect the choice of carbon-reducing production technologies.

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全球供应网络设计中的碳减排,取决于碳关税和特定地点的碳政策
碳政策通常仅限于特定地区。为了规避更严格的碳排放要求,企业会将生产迁往没有碳政策的地区,因为这些地区的碳政策具有更高的灵活性。这种效应被称为碳泄漏。为防止碳泄漏,对进口到受管制地区的碳排放征收碳关税。我们为受碳关税和特定地区碳政策影响的全球供应网络的设计提出了一个新的模型表述。相关的碳排放量由产品碳足迹记录。该模型规划了制造工厂和分销中心的位置以及它们之间的运输。此外,我们还考虑了生产技术的选择,以实现碳减排。目标是最小化净现值。为了解决这个供应网络设计模型,我们采用了固定-优化启发式。我们的数值研究表明,启发式能在合理的时间范围内提供高质量的解决方案。我们指出,将碳关税与特定地点的碳政策相结合,从根本上改变了网络设计的经济和环境后果。此外,我们还研究了碳关税和特定地区的碳政策如何影响减碳生产技术的选择。
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