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Evaluating the PAS-SIM model using a passive air sampler calibration study for pesticides

机译:使用无源空气采样器对农药的校准研究评估PAS-SIM模型

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The main objective of this study was to evaluate the performance of a model for simulating the uptake of various pesticides on passive air samplers (PAS). From 2006-2007 a series of PAS using XAD-resin were deployed at Egbert, a rural agricultural site in southern Ontario, Canada, to measure the uptake of pesticides for time periods ranging from two months to one year. A continuous increase in sequestered amounts was observed for most pesticides, except for trifluralin and pendimethalin, which could conceivably be subject to substantial degradation inside the sampler. Continuous low-volume active air samples taken during the same period, along with data on weather conditions, allowed for the simulation of the uptake of the pesticides using the model (PAS-SIM). The modelled accumulation of pesticides on the PAS over the deployment period was in good agreement with the experimental data in most cases (i.e., within a factor of two) providing insight into the uptake kinetics of this type of sampler in the field. Passive sampling rates (PSR, m(3) d(-1)) were determined from the empirical data generated for this study using three different methods and compared with the PSRs generated by the model. Overall, the PAS-SIM model, which is capable of accounting for the influence of temperature and wind variations on PSRs, provided reasonable results that range between the three empirical approaches employed and well-established literature values. Further evaluation and application of the PAS-SIM model to explore the potential spatial and temporal variability in PAS uptake kinetics is warranted, particularly for established monitoring sites where detailed meteorological data are more likely to be available.
机译:这项研究的主要目的是评估模拟模型在被动空气采样器(PAS)上的吸收性能。从2006年至2007年,在加拿大安大略省南部的一个农村农业基地Egbert部署了一系列使用XAD树脂的PAS,以测量从两个月到一年的农药吸收量。除三氟拉林和二甲戊乐灵外,大多数农药的螯合量都在持续增加,这可能会导致进样器内部的降解。在同一时期内连续采集的少量有效空气样品以及天气状况数据,可以使用模型(PAS-SIM)模拟农药的吸收。在大多数情况下(即在两倍之内),在整个部署期间农药在PAS上积累的模型与实验数据非常吻合,从而可以深入了解此类采样器在田间的吸收动力学。被动采样率(PSR,m(3)d(-1))是使用三种不同方法从针对本研究生成的经验数据确定的,并与模型生成的PSR进行了比较。总体而言,PAS-SIM模型能够考虑温度和风的变化对PSR的影响,提供了合理的结果,介于所采用的三种经验方法和公认的文献值之间。有必要对PAS-SIM模型进行进一步评估和应用,以探索PAS吸收动力学的潜在时空变化,特别是对于已建立的更可能获得详细气象数据的监测点。

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