Neely W B
Sci Total Environ. 1977 Nov;8(3):267-74. doi: 10.1016/0048-9697(77)90027-4.
Using the historical worldwide emission and monitoring data on trichlorofluormethane, a transfer constant (0.03 yr-1) was evaluated for the movement of the gas from the troposphere to the stratosphere. The movement between the northern and southern troposphere was estimated from literature data on other gases to be 0.6 yr-1. The flux between the ocean and air was calculated using water solubility and vapor pressure measurements. These transfer constants were then combined in a dynamic material balance model which has the capability of predicting furture trends. The procedure was then applied to a similar set of data for carbon tetrachloride. The agreement between the calculated atmospheric and water concentration for carbon tetrachloride was within 20% of the actual experimental observation thus lending credence to this type of budgetary analysis.
利用全球历史上三氯氟甲烷的排放和监测数据,评估了该气体从对流层向平流层移动的转移常数(0.03年-1)。根据其他气体的文献数据,估计南北对流层之间的移动速度为0.6年-1。利用水溶性和蒸气压测量值计算了海洋与大气之间的通量。然后将这些转移常数纳入一个动态物质平衡模型,该模型能够预测未来趋势。接着将该程序应用于四氯化碳的类似数据集。计算得出的四氯化碳大气浓度与水体浓度之间的一致性在实际实验观测值的20%以内,从而为这类预算分析提供了可信度。