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Measurements of CFC-11, CFC-12, and HCFC-22 total columns in the atmosphere at the St. Petersburg site in 2009–2019

机译:2009 - 2019年,在圣彼得堡网站的大气中测量CFC-11,CFC-12和HCFC-22总柱

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Monitoring atmospheric anthropogenic halocarbons plays an important role in tracking their atmospheric concentrations in accordance with international agreements on emissions of ozone-depleting substances and, thus, in estimating the ozone layer recovery. Within the Network for the Detection of Atmospheric Composition Change (NDACC), regular Fourier transform infrared (FTIR) measurements can provide information on the abundancies of halocarbons on a global scale. We improved retrieval strategies for deriving the CFC-11 ( CCl 3 F ), CFC-12 ( CCl 2 F 2 ), and HCFC-22 ( CHClF 2 ) atmospheric columns from IR solar radiation spectra measured by the Bruker IFS125HR spectrometer at the St.?Petersburg site (Russia). We used the Tikhonov–Phillips regularization approach for solving the inverse problem with optimized values of regularization parameters. We tested the strategies developed by comparison of the FTIR measurements with independent data. The analysis of the time series of column-averaged dry air mole fractions (Xgas) measured in 2009–2019 gives mean values of 225?pptv (parts per trillion by volume; CFC-11), 493?pptv (CFC-12), and 238?pptv (HCFC-22). Trend values total ?0.40 ?%?yr ?1 (CFC-11), ?0.49 ?%?yr ?1 (CFC-12), and 2.12?%?yr ?1 (HCFC-22). We compared the means, trends, and seasonal variability in X CFC-11 , X CFC-12 , and X HCFC-22 to that of (1)?near-ground volume mixing ratios (VMRs), measured at the observational site Mace Head, Ireland (GVMR), (2)?the mean in the 8–12?km layer VMRs, measured by ACE-FTS and averaged over 55–65 ° ?N latitudes (SVMR), and (3)?Xgas values of the Whole Atmosphere Community Climate Model (WACCM) for the St. Petersburg site (WXgas). In general, the comparison of Xgas with the independent data showed a good agreement of their means within the systematic errors of the measurements considered. The trends observed over the St.?Petersburg site demonstrate the smaller decrease rates for X CFC-11 and X CFC-12 than that of the independent data and the same increase rate for X HCFC-22 . As a whole, Xgas, SVMR, and WXgas showed qualitatively similar seasonal variations, while the GVMR variability is significantly less, and only the WX HCFC-22 variations are essentially smaller than that of X HCFC-22 and SVMR HCFC-22 .
机译:监测大气人为卤素卤化物在追踪臭氧耗尽物质排放的国际协议中,在跟踪其大气浓度方面发挥着重要作用,从而估计臭氧层恢复。在网络中检测大气组成变化(NDACC)的网络内,常规傅里叶变换红外(FTIR)测量可以提供关于全球规模的卤素灾害的信息。我们改善了通过Bruker Ifs125HR光谱仪在St的IR太阳能辐射光谱从ST中获得的CFC-11(CCL 3 F),CCLF-12(CCLF 2 F 2)和HCFC-22(CHCLF 2)大气柱的检索策略改进了来自IR太阳辐射光谱。?彼得斯堡网站(俄罗斯)。我们使用Tikhonov-Phillips正规化方法来解决正则化参数优化值的逆问题。我们测试了通过与独立数据的FTIR测量比较开发的策略。 2009 - 2019年测定的柱平均干燥空气摩尔分数(XGA)的时间序列分析给出225〜pptv(每兆的零件的零件; CFC-11),493?PPTV(CFC-12),和238?PPTV(HCFC-22)。趋势值总计?0.40?%?Yr?1(CFC-11),α0.49?%?Yr?1(CFC-12)和2.12?%?Yr?1(HCFC-22)。我们将X CFC-11,X CFC-12和X HCFC-22中的手段,趋势和季节变异进行了比较至(1)的近地体积混合比(VMRS),在观察部位术头部测量,爱尔兰(GVMR),(2)?在8-12 km层VMR中的平均值,由ACE-FTS测量并平均超过55-65°(SVMR),和(3)?XGAS值整个大气社区气候模型(WACCM)为圣彼得堡网站(WXGAS)。通常,XGA与独立数据的比较显示其在考虑测量的系统误差内的良好吻合。在St.?petersbursbers网站上观察到的趋势展示了X CFC-11和X CFC-12的较小降低速率,而不是独立数据的速度和X HCFC-22的相同增加的速率。作为一个整体,XGA,SVMR和WXGA显示出定性类似的季节变化,而GVMR可变性显着较低,并且仅WX HCFC-22变化基本上小于X HCFC-22和SVMR HCFC-22的变化。

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