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MODELING THE RESPONSE OF PASSIVE SAMPLERS TO VARYING AMBIENT FLUID CONCENTRATIONS OF ORGANIC CONTAMINANTS

机译:建模无源采样器对变化的有机污染物的环境中的流体浓度的响应

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摘要

Passive samplers are an important and versatile adjunct to active sampling methods for air and water. The underlying theory is increasingly mature but is often based on the assumption of constant concentrations with time in the ambient fluid. This theoretical work details the passive sampler response to possible environmental situations in which ambient concentrations vary linearly with time, decrease exponentially with time, constitute a pulsed event, or oscillate regularly with time. The modeled shape of sampler response curve with time is characteristic and can be used to determine how fluid concentrations have changed with time. The sampler elimination rate constant is shown to be crucial in governing sampler response. Thus, by using performance reference compounds and under certain conditions, information from the sampler response can in theory be used to derive specific details of the temporal variation of the contaminant in the ambient fluid. For example, data captured by a passive sampler can be used to characterize a contamination pulse. This extends the versatility of passive samplers.
机译:被动采样器是空气和水的主动采样方法的重要且通用的附件。基本理论越来越成熟,但通常基于环境流体中浓度随时间恒定的假设。这项理论工作详细介绍了被动采样器对可能的环境情况的响应,在这种情况下,环境浓度随时间线性变化,随时间呈指数下降,构成脉冲事件或随时间规律地振荡。随时间变化的采样器响应曲线的建模形状具有特征性,可用于确定流体浓度如何随时间变化。采样器消除速率常数在控制采样器响应中至关重要。因此,通过使用性能参考化合物并在某些条件下,理论上可以将来自采样器响应的信息用于得出环境流体中污染物随时间变化的特定细节。例如,由无源采样器捕获的数据可用于表征污染脉冲。这扩展了无源采样器的多功能性。

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