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Infrared absorption spectra, radiative efficiencies, and global warming potentials of newly-detected halogenated compounds: CFC-113a, CFC-112 and HCFC-133a

机译:新检测到的卤代化合物:CFC-113a,CFC-112和HCFC-133a的红外吸收光谱,辐射效率和全球变暖潜能

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摘要

CFC-113a (CF3CCl3), CFC-112 (CFCl2CFCl2) and HCFC-133a (CF3CH2Cl) are three newly detected molecules in the atmosphere that are almost certainly emitted as a result of human activity. It is important to characterise the possible contribution of these gases to radiative forcing of climate change and also to provide information on the CO2-equivalence of their emissions. We report new laboratory measurements of absorption cross-sections of these three compounds at a resolution of 0.01 cm−1 for two temperatures 250 K and 295 K in the spectral range of 600–1730 cm−1. These spectra are then used to calculate the radiative efficiencies and global warming potentials (GWP). The radiative efficiencies are found to be between 0.15 and 0.3 W∙m−2∙ppbv−1. The GWP for a 100 year time horizon, relative to carbon dioxide, ranges from 340 for the relatively short-lived HCFC-133a to 3840 for the longer-lived CFC-112. At current (2012) concentrations, these gases make a trivial contribution to total radiative forcing; however, the concentrations of CFC-113a and HCFC-133a are continuing to increase. The 2012 CO2-equivalent emissions, using the GWP (100), are estimated to be about 4% of the current global CO2-equivalent emissions of HFC-134a
机译:CFC-113a(CF3CCl3),CFC-112(CFCl2CFCl2)和HCFC-133a(CF3CH2Cl)是在大气中新发现的三个分子,这些分子几乎可以肯定是由于人类活动而排放的。重要的是表征这些气体对气候变化的辐射强迫的可能贡献,并提供有关其排放的二氧化碳当量的信息。我们报告了在600–1730 cm-1光谱范围内的两个温度250 K和295 K时,这三种化合物的吸收截面的新测量结果,分辨率为0.01 cm-1。然后将这些光谱用于计算辐射效率和全球变暖潜势(GWP)。发现辐射效率在0.15和0.3 W∙m−2∙ppbv-1之间。相对于二氧化碳,100年时间范围内的全球升温潜能值从相对较短的HCFC-133a的340到较长寿命的CFC-112的3840的范围。以当前(2012年)的浓度计,这些气体对总辐射强迫的贡献很小。但是,CFC-113a和HCFC-133a的浓度仍在增加。使用全球升温潜能值(100)估算的2012年二氧化碳当量排放量约为HFC-134a当前全球二氧化碳当量排放量的4%

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