首页> 外文期刊>Atmospheric chemistry and physics >UV and infrared absorption spectra, atmospheric lifetimes, and ozone depletion and global warming potentials for CCl2FCCl2F (CFC-112), CCl3CClF2 (CFC-112a), CCl3CF3 (CFC-113a), and CCl2FCF3 (CFC-114a)
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UV and infrared absorption spectra, atmospheric lifetimes, and ozone depletion and global warming potentials for CCl2FCCl2F (CFC-112), CCl3CClF2 (CFC-112a), CCl3CF3 (CFC-113a), and CCl2FCF3 (CFC-114a)

机译:CCl2FCCl2F(CFC-112),CCl3CClF2(CFC-112a),CCl3CF3(CFC-113a)和CCl2FCF3(CFC-114a)的紫外线和红外吸收光谱,大气寿命以及臭氧消耗和全球变暖潜能

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摘要

The potential impact of CCl2FCF3 (CFC-114a) and the recently observed CCl2FCCl2F (CFC-112), CCl3CClF2 (CFC-112a), and CCl3CF3 (CFC-113a) chlorofluorocarbons (CFCs) on stratospheric ozone and climate is presently not well characterized. In this study, the UV absorption spectra of these CFCs were measured between 192.5 and 235aEuro-nm over the temperature range 207-323aEuro-K. Precise parameterizations of the UV absorption spectra are presented. A 2-D atmospheric model was used to evaluate the CFC atmospheric loss processes, lifetimes, ozone depletion potentials (ODPs), and the associated uncertainty ranges in these metrics due to the kinetic and photochemical uncertainty. The CFCs are primarily removed in the stratosphere by short-wavelength UV photolysis with calculated global annually averaged steady-state lifetimes (years) of 63.6 (61.9-64.7), 51.5 (50.0-52.6), 55.4 (54.3-56.3), and 105.3 (102.9-107.4) for CFC-112, CFC-112a, CFC-113a, and CFC-114a, respectively. The range of lifetimes given in parentheses is due to the 2 sigma uncertainty in the UV absorption spectra and O(D-1) rate coefficients included in the model calculations. The 2-D model was also used to calculate the CFC ozone depletion potentials (ODPs) with values of 0.98, 0.86, 0.73, and 0.72 obtained for CFC-112, CFC-112a, CFC-113a, and CFC-114a, respectively. Using the infrared absorption spectra and lifetimes determined in this work, the CFC global warming potentials (GWPs) were estimated to be 4260 (CFC-112), 3330 (CFC-112a), 3650 (CFC-113a), and 6510 (CFC-114a) for the 100-year time horizon.
机译:CCl2FCF3(CFC-114a)和最近观察到的CCl2FCCl2F(CFC-112),CCl3CClF2(CFC-112a)和CCl3CF3(CFC-113a)氯氟烃(CFC)对平流层臭氧和气候的潜在影响目前尚不十分清楚。在这项研究中,在207-323aEuro-K的温度范围内测量了这些CFC的UV吸收光谱,范围为192.5至235aEuro-nm。给出了紫外线吸收光谱的精确参数化。二维大气模型用于评估CFC大气损失过程,寿命,臭氧消耗潜能(ODP)以及由于动力学和光化学不确定性而在这些度量标准中相关的不确定性范围。主要通过平流层中的短波紫外线光解去除CFC,计算出的全球年平均稳态寿命(年)为63.6(61.9-64.7),51.5(50.0-52.6),55.4(54.3-56.3)和105.3 (102.9-107.4)分别适用于CFC-112,CFC-112a,CFC-113a和CFC-114a。括号中给出的寿命范围是由于模型计算中包括的2σ不确定性的紫外线吸收光谱和O(D-1)速率系数。 2-D模型还用于计算CFC-112,CFC-112a,CFC-113a和CFC-114a分别获得的0.98、0.86、0.73和0.72值的CFC臭氧消耗潜能(ODP)。使用这项工作中确定的红外吸收光谱和寿命,CFC全球变暖潜势(GWP)估计为4260(CFC-112),3330(CFC-112a),3650(CFC-113a)和6510(CFC- 114a)为100年的时间范围。

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