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Seasonal variability and long term trends of chlorofluorocarbon mixing ratios in the unsaturated zone

机译:非饱和区氯氟烃混合比的季节变化和长期趋势

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摘要

To investigate processes that might affect chlorofluorocarbon (CFC) mixing ratios at the water table, a time series was obtained of unsaturated zone soil gas CFCs to depths of ca. 4 m at a site near New York City (NYC). Observed CFC 11, 12, and 113 mixing ratios were lower in winter than expected from either a local, high-resolution time series or remote atmospheric mixing ratios. A diffusion model, which includes seasonal changes in soil temperature, moisture, and CFC solubility, reproduces to first order the observed soil gas mixing ratios for CFC 11 and 12. Underestimation by the model of the seasonal cycle of CFC 11 points to changing levels of sorption to soils due to seasonal changes in temperature as an additional cause of the cycle seen in CFC 11 mixing ratios in soil air. In the case of spring recharge, low CFC mixing ratios in soil air caused by increased solubility may result in low CFC 11 concentrations in groundwater and, when dating groundwater recharged before the 1990s with CFCs, older apparent ages by up to 4 years. Attempts to observe average atmospheric CFC levels from soil gas are also significantly hindered by these seasonal fluctuations. Our results indicate the importance of considering seasonal changes in soil temperature when making precise observations of even very moderately soluble gases in the unsaturated zone and shallow groundwater.
机译:为了研究可能影响地下水位氯氟烃(CFC)混合比的过程,获得了一个不饱和区土壤气体CFCs深度约为ca的时间序列。位于纽约市(NYC)附近的站点4 m。冬季观测到的CFC 11、12和113混合比低于本地高分辨率时间序列或偏远大气混合比所预期的混合比。扩散模型(包括土壤温度,水分和CFC溶解度的季节性变化)再现了观察到的CFC 11和12的土壤气体混合比。该模型被低估了CFC 11的季节性周期,表明CFC 11的变化水平。温度的季节性变化会导致土壤对土壤的吸附,这是土壤空气中CFC 11混合比中循环的另一个原因。在春季补给的情况下,溶解度增加导致土壤空气中CFC的混合比降低,可能导致地下水中CFC 11的浓度降低,并且在1990年代以前用CFC补给地下水时,表观年龄要高出4年。这些季节性波动也极大地阻碍了从土壤气体中观测平均大气中CFC含量的尝试。我们的结果表明,当对不饱和区和浅层地下水中甚至非常适度的气体进行精确观测时,考虑土壤温度的季节性变化非常重要。

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