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Seasonal and spatial variabilities in the water chemistry of prairie pothole wetlands influence the photoproduction of reactive intermediates

机译:草原坑洼湿地水化学的季节和空间变化影响活性中间体的光生产

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摘要

The hydrology and water chemistry of prairie pothole wetlands vary spatially and temporally, on annual and decadal timescales. Pesticide contamination of wetlands arising from agricultural activities is a foremost concern. Photochemical reactions are important in the natural attenuation of pesticides and may be important in limiting ecological and human exposure. Little is known, however, about the variable influence of wetland water chemistry on indirect photochemistry. In this study, seasonal water samples were collected from seven sites throughout the prairie pothole region over three years to understand the spatiotemporal dynamics of reactive intermediate photoproduction. Samples were classified by the season in which they were collected (spring, summer, or fall) and the typical hydroperiod of the wetland surface water (temporary or semi-permanent). Under photostable conditions, steady-state concentrations and apparent quantum yields or quantum yield coefficients were measured for triplet excited states of dissolved organic matter, singlet oxygen, hydroxyl radical, and carbonate radical under simulated sunlight. Steady-state concentrations and quantum yields increased on average by 15% and 40% from spring to fall, respectively. Temporary wetlands had 40% higher steady-state concentrations of reactive intermediates than semi-permanent wetlands, but 50% lower quantum yields. Computed quantum yields for reactive intermediate formation were used to predict the indirect photochemical half-lives of seven pesticides in average temporary and semi-permanent prairie pothole wetlands. As a first approximation, the predictions agree to within two orders of magnitude of previously reported half-lives. (C) 2016 Elsevier Ltd. All rights reserved.
机译:草原坑洼湿地的水文和水化学在时空和时空上都在空间和时间上变化。农业活动引起的湿地农药污染是最重要的问题。光化学反应对农药的自然衰减很重要,对限制生态和人类接触也可能很重要。然而,关于湿地水化学对间接光化学的可变影响知之甚少。在这项研究中,在三年内从整个草原坑洼地的七个地点收集了季节性水样,以了解反应性中间光产生的时空动态。根据采集季节(春季,夏季或秋季)和湿地表水的典型水文时期(临时或半永久性)对样品进行分类。在光稳定条件下,测量了模拟阳光下溶解的有机物,单线态氧,羟基自由基和碳酸盐自由基的三重激发态的稳态浓度和表观量子产率或量子产率系数。从春季到秋季,稳态浓度和量子产率分别平均增加15%和40%。临时湿地的反应性中间体稳态浓度比半永久性湿地高40%,但量子产率却低50%。计算出的用于反应性中间体形成的量子产率用于预测平均临时和半永久性草原坑洼地湿地中七种农药的间接光化学半衰期。作为第一近似值,预测与先前报道的半衰期相差两个数量级。 (C)2016 Elsevier Ltd.保留所有权利。

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