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Assessing the Sustainability of Optimal Pollution Paths in a World with Inertia

机译:评估惯性世界中最佳污染路径的可持续性

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Most formal optimal pollution control models in environmental economics assume a constant natural assimilative capacity, despite the biophysical evidence on feedback effects that can degrade this environmental function, as is the case with the reduction of ocean carbon sinks in the context of climate change. The few models that do consider this degradation establish a bijective relation between the pollution stock and the assimilative capacity, thus ignoring the inertia mechanism at stake. Indeed the level of assimilative capacity is not solely determined by the current pollution stock but also by the history of this stock and by the length of time the ecosystem remains above the degradation threshold. We propose an inertia assessment tool that tests the sustainability of any benchmark optimal pollution path when the inertia of the assimilative capacity degradation process is taken into account. Our simulations show a strong sensitivity to both the inertia degradation speed and the discount rate, thus stressing the need for increased monitoring of natural assimilative capacity in environmental policies.
机译:尽管有生物物理证据表明反馈效应会降低这种环境功能,但在环境经济学中,大多数形式化的最优污染控制模型都假设恒定的自然吸收能力,例如在气候变化背景下减少海洋碳汇的情况。少数确实考虑到这种退化的模型在污染存量和同化能力之间建立了双射关系,因此忽略了所面临的惯性机制。实际上,同化能力的水平不仅取决于当前的污染存量,还取决于存量的历史以及生态系统保持在退化阈值以上的时间长度。我们提出了一种惯性评估工具,当考虑到同化能力下降过程的惯性时,该工具可以测试任何基准最优污染路径的可持续性。我们的模拟显示出对惯性退化速度和贴现率的高度敏感性,因此强调了在环境政策中需要增加对自然同化能力的监测。

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