论文标题
估计天文研究基础设施的碳足迹
Estimate of the carbon footprint of astronomical research infrastructures
论文作者
论文摘要
天文学研究的碳足迹是一个越来越多的话题问题,最近出版了研究所和民族社区足迹的首次估计。由于这些评估通常排除了天文学研究基础设施的贡献,因此我们通过使用温室气体发射因子对天文空间任务和地面观测因子的贡献进行估计,从而补充了这些研究,该贡献将成本和有效载荷质量与碳足迹相关联。我们发现,全球活跃的天文研究基础架构目前的碳足迹为20.3 $ \ pm $ 3.3 mtco $ _2 $ quotorent(co $ _2 $ e),每年排放1,169 $ \ pm $ \ pm $ 249 ktco $ _2 ktco $ _2 $ _2 $ _2 $ e yr $ yr $^{-1} $ $^{-1 $ 14.6.6.6.6.6.6.6.6.6.6.6.6 6.6.6.6.6.6.6.6.6.6.6 6.6 6.6.6 6.6 6.6 6.6 6.6 6.6 6.6 6.6 6.6 6.6 6.6 6.6 6.6 6.6 6.6 6.66 6.6 6.66。 TCO $ _2 $ E每年每位天文学家。与天文学研究活动的其他方面的贡献相比,我们的结果表明,研究基础设施对天文学家的碳足迹做出了最大的贡献。我们讨论了我们方法的局限性和不确定性,并探索可以将天文学研究基础设施中温室气体排放的措施带入可持续水平。
The carbon footprint of astronomical research is an increasingly topical issue with first estimates of research institute and national community footprints having recently been published. As these assessments have typically excluded the contribution of astronomical research infrastructures, we complement these studies by providing an estimate of the contribution of astronomical space missions and ground-based observatories using greenhouse gas emission factors that relates cost and payload mass to carbon footprint. We find that worldwide active astronomical research infrastructures currently have a carbon footprint of 20.3$\pm$3.3 MtCO$_2$ equivalent (CO$_2$e) and an annual emission of 1,169$\pm$249 ktCO$_2$e yr$^{-1}$ corresponding to a footprint of 36.6$\pm$14.0 tCO$_2$e per year per astronomer. Compared with contributions from other aspects of astronomy research activity, our results suggest that research infrastructures make the single largest contribution to the carbon footprint of an astronomer. We discuss the limitations and uncertainties of our method and explore measures that can bring greenhouse gas emissions from astronomical research infrastructures towards a sustainable level.