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首页> 外文期刊>The International Journal of Life Cycle Assessment >Assessment of urgent impacts of greenhouse gas emissions-the climate tipping potential (CTP)
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Assessment of urgent impacts of greenhouse gas emissions-the climate tipping potential (CTP)

机译:评估温室气体排放的紧急影响-气候变迁潜力(CTP)

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Purpose The impact of anthropogenic greenhouse gas (GHG) emissions on climate change receives much focus today. This impact is however often considered only in terms of global warming potential (GWP), which does not take into account the need for staying below climatic target levels, in order to avoid passing critical climate tipping points. Some suggestions to include a target level in climate change impact assessment have been made, but with the consequence of disregarding impacts beyond that target level. The aim of this paper is to introduce the climate tipping impact category, which represents the climate tipping potential (CTP) of GHG emissions relative to a climatic target level. The climate tipping impact category should be seen as complementary to the global warming impact category. Methods The CTP of a GHG emission is expressed as the emission's impact divided by the 'capacity' of the atmosphere for absorbing the impact without exceeding the target level. The GHG emission impact is determined as its cumulative contribution to increase the total atmospheric GHG concentration (expressed in CO_2 equivalents) from the emission time to the point in time where the target level is expected to be reached, the target time. Results and discussion The CTP of all the assessed GHGs increases as the emission time approaches the target time, reflecting the rapid decrease in remaining atmospheric capacity and thus the increasing potential impact of the GHG emission. The CTP of a GHG depends on the properties of the GHG as well as on the chosen climatic target level and background scenario for atmospheric GHG concentration development. In order to enable direct application in life cycle assessment (LCA), CTP characterisation factors are presented for the three main anthropogenic GHGs, CO_2, CH_4 and N_2O. Conclusions The CTP metric distinguishes different GHG emission impacts in terms of their contribution to exceeding a short-term target and highlights their increasing importance when approaching a climatic target level, reflecting the increasing urgency of avoiding further GHG emissions in order to stay below the target level. Inclusion of the climate tipping impact category for assessing climate change impacts in LCA, complimentary to the global warming impact category which shall still represent the long-term climate change impacts, is considered to improve the value of LCA as a tool for decision support for climate change mitigation.
机译:目的今天,人们越来越关注人为温室气体(GHG)排放对气候变化的影响。但是,通常仅根据全球变暖潜能值(GWP)来考虑这种影响,而全球变暖潜能值并未考虑保持在低于气候目标水平的必要性,以避免通过临界气候临界点。有人提出了将目标水平纳入气候变化影响评估的建议,但其后果是忽略了超出该目标水平的影响。本文的目的是介绍气候倾斜影响类别,该类别代表相对于气候目标水平的温室气体排放的气候倾斜潜力(CTP)。应将气候倾斜影响类别视为对全球变暖影响类别的补充。方法温室气体排放的CTP表示为排放的影响除以大气在不超过目标水平的情况下吸收影响的“能力”。温室气体排放影响的确定是其从排放时间到预期达到目标水平的时间点(目标时间)增加总大气GHG浓度(以CO_2当量表示)的累积贡献。结果与讨论随着排放时间接近目标时间,所有评估的温室气体的CTP都增加了,这反映了剩余大气容量的迅速下降,因此温室气体排放的潜在影响也在增加。温室气体的CTP取决于温室气体的属性以及大气温室气体浓度发展所选择的气候目标水平和背景情况。为了能够直接应用于生命周期评估(LCA),提出了三种主要的人为温室气体CO_2,CH_4和N_2O的CTP特征因子。结论CTP度量标准根据其对超过短期目标的贡献来区分不同的温室气体排放影响,并强调了它们在接近气候目标水平时的重要性日益提高,反映出越来越迫切需要避免进一步的温室气体排放以保持在目标水平以下。 。考虑将气候倾销影响类别用于评估LCA中的气候变化影响,并补充仍应代表长期气候变化影响的全球变暖影响类别,以提高LCA作为气候决策支持工具的价值改变缓解。

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