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PAST AND FUTURE FOR OZONE-DEPLETING HALOCARBONS IN ANTARCTIC ENVIRONMENT

机译:南极环境中臭氧耗竭的卤代烃的过去和未来

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Volatile compounds in ice blocks sampled from warm glacier in Western coastal Antarctica were analyzed. The dating of the young ice and air in aged ice probes was performed using quantitative analysis of radioactive isotopes ~(210)Pb and ~(14)C in CO_2. The age of the samples varied from 20 to 4,700 years. The greenhouse (CO_2 and N_2O), sulfur-containing gases (COS, CS_2), 1-propene and halocarbons of natural origin (CF_4, CH_3Cl, C_2H_5Cl, CH_2=CHCl, CH_3Br, CH_2Br_2, CHBr_3, CH_3I, CH_2=CHI and C_2H_5I) were identified in these samples. All these compounds, except CF_4, demonstrate high mixing ratios in comparison with their content in present air. A tendency for the enhancement of the enrichment factors with increasing Henry's law coefficient of the gases was observed for all samples. Possible reason of the enrichment in the warm glacier may be dissolution of the gases in meltwater percolating through the underlying firn layers, subsequent refreezing of the enriched solution during cold season and repeating of the melt-freeze cycles. This study suggests that increased amounts of naturally produced halocarbons, sulfur-containing gases and their resultant halogen and sulfur species may be released to the atmosphere by possible future global warming or by El Nino. This increase may result in a greater contribution by natural halocarbons and sulfur-containing gases to Antarctic tropospheric ozone chemistry and stratospheric ozone depletion.
机译:分析了来自南极西部沿海温暖冰川的冰块中的挥发性化合物。使用对CO_2中放射性同位素〜(210)Pb和〜(14)C进行定量分析,对老化的冰探测器中的年轻冰和空气进行了测年。样本的年龄从20到4,700岁不等。温室(CO_2和N_2O),天然来源的含硫气体(COS,CS_2),1-丙烯和卤代烃(CF_4,CH_3Cl,C_2H_5Cl,CH_2 = CHCl,CH_3Br,CH_2Br_2,CHBr_3,CH_3I,CH_2 = CHI和C_2H_5I )在这些样本中被确定。除CF_4以外,所有这些化合物与其在当前空气中的含量相比均显示出高混合比。对于所有样品,均观察到随着气体的亨利定律系数增加,富集因子增加的趋势。在温暖的冰川中富集的可能原因可能是气体溶解在融化水中,并渗入下面的烧成层,随后在寒冷季节重新浓缩了富集的溶液,并重复了融化-冻结循环。这项研究表明,未来可能的全球变暖或厄尔尼诺现象可能会增加自然产生的卤代烃,含硫气体及其所产生的卤素和硫物质的排放量。这种增加可能导致天然卤代烃和含硫气体对南极对流层臭氧化学和平流层臭氧消耗的贡献更大。

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