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Estimating Sulfuryl Fluoride Emissions During Structural Fumigation of Residential Houses

机译:估算住宅结构熏蒸过程中的磺酰氟排放

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The California Department of Pesticide Regulation conducted indoor air monitoring to estimate sulfury fluoride (SO2F2) emissions that bystanders around fumigated houses were potentially exposed to during structural fumigation of residential houses. Monitoring was conducted for 23 fumigations between September 2014 and March 2015. The SO2F2 indoor concentrations were measured from four locations inside the fumigated houses once an hour. The decreases of indoor concentrations are due to gas leakage (treatment period) and aeration (aeration period) from the structure to the outdoor environment. Analysis on the monitoring data showed considerable variability of half loss time (11-60h) and mass loss (22-81%) during treatment periods. The decline of indoor concentrations followed the first-order kinetics; therefore, the hourly flux (g/m(2)s) of a treatment period can be calculated using initial SO2F2 concentration, treatment period mass loss, and house height. Although the California Aeration Plan requires a minimum 12-24h of aeration after a treatment, the monitoring data showed that 93 +/- 5% of the mass at the end of the treatment periods was emitted through the ducting system within the first 2h. The average ratio of the loss amount in the first hour to the loss in the second was 6:1. These monitoring results provided the critical input for the computer modeling to estimate bystander exposure during structural fumigations of residential houses.
机译:加利福尼亚农药管理局对室内空气进行了监测,以估算在住宅结构的熏蒸过程中,熏蒸房屋周围的旁观者可能接触到的氟化硫(SO2F2)排放量。在2014年9月至2015年3月之间进行了23次熏蒸监测。每小时从熏蒸房屋内的四个位置测量室内SO2F2浓度。室内浓度的降低是由于从建筑物到室外环境的气体泄漏(处理时间)和曝气(曝气时间)。对监测数据的分析显示,在治疗期间,半衰期(11-60h)和质量损失(22-81%)有很大的差异。室内浓度的下降遵循一级动力学。因此,可以使用初始SO2F2浓度,治疗期质量损失和房屋高度来计算治疗期的每小时通量(g / m(2)s)。尽管《加州曝气计划》要求在处理后至少进行12-24h的曝气,但监测数据显示,在处理期末,质量的93 +/- 5%是在最初的2h内通过管道系统排放的。第一个小时的损失量与第二个小时的损失量的平均比率为6:1。这些监测结果为计算机建模提供了关键输入,以估算住宅结构熏蒸过程中的旁观者暴露情况。

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