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Effects of Hydrodynamic Conditions and Temperature on Polar Organic Chemical Integrative Sampling Rates

机译:流体动力学条件和温度对极性有机化学综合采样率的影响

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The effects of changing hydrodynamic conditions and changing temperatures on polar organic chemical integrative sampler (POCIS) sampling rates (R-s) were investigated for 12 crop protection chemicals. Exposure concentration was held constant in each laboratory experiment, and flow velocities were calculated from measured mass transfer coefficients of the water boundary layer near the surface of POCIS devices. At a given temperature R-s generally increased by a factor of 2 to 5 between a stagnant condition and higher flow velocities (6-21cm/s), but R-s for most compounds was essentially constant between the higher flow velocities. When temperature was varied between 8 and 39 degrees C for a given flow condition, R-s increased linearly. In general, R-s increased by a factor of 2 to 4 and 2 to 8 over this temperature range under flow and stagnant conditions, respectively. An Arrhenius model was used to describe the dependence of POCIS sampling rates on temperature. Adjustments of R-s for temperature did not fully explain observed differences between time-weighted average concentrations of atrazine determined from POCIS and from composite water sampling in a field setting, suggesting that the effects of other competing factors still need to be evaluated. Environ Toxicol Chem 2018;37:2331-2339. (c) 2018 SETAC
机译:研究了12种作物保护化学品的水动力条件和温度变化对极性有机化学综合采样器(POCIS)采样率(R-s)的影响。在每个实验室实验中,使暴露浓度保持恒定,并根据测得的POCIS装置表面附近水边界层的传质系数计算流速。在给定的温度下,R-s通常在停滞状态和较高的流速(6-21cm / s)之间增加2到5倍,但是大多数化合物的R-s在较高的流速之间基本恒定。对于给定的流动条件,当温度在8到39摄氏度之间变化时,R-s线性增加。通常,在此温度范围内,在流动和停滞条件下,R-s分别增加2至4和2至8倍。 Arrhenius模型用于描述POCIS采样率对温度的依赖性。对温度的R-s调整不能完全解释现场环境中从POCIS和复合水采样中确定的at去津时间加权平均浓度之间观察到的差异,这表明仍需要评估其他竞争因素的影响。 Environ Toxicol Chem 2018; 37:2331-2339。 (c)2018年SETAC

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