The result of the comparative use of OCO-2 information to find the relationship between changes in the atmospheric concentration of CO2 and air temperature in the Argentine Islands and Ukraine.

I. Artemenko
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Abstract

The results of comparative analysis of data of data of changes CO2 concentrations in the atmosphere over the polar regions adjacent to the "Akademik Vernadsky" station (the size of the study area 1.5° × 1.5°, or approximately 166 km by 75 km) were obtained satellite Orbiting Carbon Observatory (OCO-2) and air temperature according to ground meteorological observations at the "Akademik Vernadsky" station for 2014-2020. From obtained graph, we can see that the air temperature and CO2 concentration in the atmosphere over the study area tend to increase slowly. In addition, the analysis of the above results showed that in this way it is possible to determine the integrated trends in the impact of greenhouse gas content in the atmosphere on air temperature. A comparative analysis of data of data of changes CO2 concentrations according to OCO-2 between regions where there is a direct anthropogenic impact (Ukraine) and the region where anthropogenic impact is minimized (areas adjacent to the "Akademik Vernadsky" station) for 2014-2020. It was found that CO2 concentrations over areas with direct anthropogenic impact are growing much faster than over areas where there is no such impact at all. However, we see that CO2 concentrations tend to increase in both cases. Based on the obtained results, it was determined that conducting a comprehensive, simultaneous and consistent with satellite observations measurements of various series of variables, will provide an opportunity to optimize information of changes in climatic parameters (air temperature) in the polar regions.
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对比利用OCO-2资料发现阿根廷群岛和乌克兰大气CO2浓度变化与气温之间关系的结果。
根据“沃尔纳德斯基院士”站2014-2020年地面气象观测资料,对“沃尔纳德斯基院士”站(研究区面积1.5°× 1.5°,约166 km × 75 km)附近极地地区大气CO2浓度变化数据进行对比分析,得到了OCO-2卫星轨道碳观测数据和气温数据。从图中可以看出,研究区上空的气温和大气中CO2浓度呈缓慢上升的趋势。此外,对上述结果的分析表明,通过这种方法可以确定大气中温室气体含量对气温影响的综合趋势。2014-2020年根据OCO-2对有直接人为影响的地区(乌克兰)和人为影响最小的地区(“维尔纳德斯基院士站”附近地区)的CO2浓度变化数据进行对比分析。研究发现,在有直接人为影响的地区,二氧化碳浓度的增长速度远远快于完全没有这种影响的地区。然而,我们看到,在这两种情况下,二氧化碳浓度都趋于增加。根据所获得的结果,确定对各种变量系列进行全面、同时和与卫星观测相一致的测量,将有机会优化极地气候参数(气温)变化的信息。
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