Optimal Carbon Dioxide Removal in Face of Ocean Carbon Sink Feedback

Vassiliki Manoussi, S. Shayegh, M. Tavoni
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引用次数: 2

Abstract

Carbon dioxide removal (CDR) is a potentially important climate strategy for attaining low climate stabilization objectives. However, climate analysis has indicated a possible weakening of the ocean carbon sinks -the largest in the world- in relation to CDR deployment. Here, we provide an economic appraisal to assess the sensitivity of CDR and conventional abatement to CO2 outgassing from the oceans. We develop a theoretical framework to study the impact of the ocean-to-atmosphere transfer on the optimal mitigation strategies under different regimes that control the relationship between CO2 outgassing and the amount of CDR. We show that the optimal levels of emissions and CDR are correlated to the effectiveness of CDR expressed as a linear function of atmospheric concentrations. We incorporate this effect into an integrated assessment model of climate and economy (DICE model) and confirm the theoretical findings with numerical simulations. Further, we perform a sensitivity analysis to find the range of optimal abatement and CDR actions under different values of the CDR effectiveness coefficient.
面对海洋碳汇反馈的最佳二氧化碳去除
二氧化碳去除(CDR)是实现低气候稳定目标的潜在重要气候策略。然而,气候分析表明,与CDR部署相关,海洋碳汇(世界上最大的碳汇)可能会减弱。在这里,我们提供了一个经济评估来评估CDR和传统减排对海洋二氧化碳排放的敏感性。我们开发了一个理论框架来研究在不同制度下海洋到大气的转移对最佳减缓策略的影响,这些策略控制CO2排放与CDR量之间的关系。我们表明,最佳排放水平和CDR与CDR的有效性相关,CDR表示为大气浓度的线性函数。我们将这一效应纳入气候与经济综合评估模型(DICE模型),并通过数值模拟证实了理论结果。此外,我们进行了敏感性分析,以找出在不同的CDR有效性系数值下的最佳减排和CDR行动范围。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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