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Part I: Temporal and spatial distribution of multiclass pesticide residues in lake waters of Northern Greece: application of an optimized SPE-UPLC-MS/MS pretreatment and analytical method

机译:第一部分:希腊北部湖水中多种农药残留的时空分布:优化的SPE-UPLC-MS / MS预处理和分析方法的应用

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摘要

The present work describes the application of an analytical procedure, utilizing ultra performance liquid chromatography (UPLC) coupled with mass spectrometry instrumentation, for the determination of 253 multiclass pesticides, classified in six different groups. Solid phase extraction was applied for the isolation and pre-concentration of target compounds in water samples. Surface waters of the lakes located in Northern Greece (Volvi, Doirani, and Kerkini), were collected in two time periods (fall/winter 2010 and spring/ summer 2011) and analyzed, applying the developed analytical methods. Spatial distribution of detected pesticides was visualized using interpolation methods and geographical information systems (GIS). Pesticides with maximum concentrations were amitrole, propoxur, simazine, chlorpyrifos, carbendazim, triazophos, disulfoton-sulfone, pyridaben, sebuthylazine, terbuthylazine, atrazine, atrazine-desethyl, bensulfuron-methyl, metobromuron, metribuzin, rotenone, pyriproxyfen, and rimsulfuron. In Lake Kerkini, mainly carbamates and triazines were determined at elevated concentrations, near the coastal point of the NW side of the lake. Seasonal variations were strong among the applied pesticide classes and determined concentrations, indicating the contribution of pesticide application patterns and rainfall. Lake Doirani exhibited organophosphate pesticides at higher concentrations mainly at coastal points, while triazines emerged as the main pollutant during spring sampling. Lake Volvi exhibited the highest pesticide concentrations, mostly triazines and ureas at the central part of the lake. The occurrence of extreme values and nonconstant seasonal variations indicated that the concentrations were increased disproportionately during the second sampling, as a result of the varying contribution of pollution sources right after the application period. In all cases, the total concentration of pesticides increased during the second sampling period.
机译:本工作描述了一种分析方法的应用,该方法利用超高效液相色谱(UPLC)与质谱仪联用,用于测定253种多类农药,分为六类。固相萃取用于水样品中目标化合物的分离和预浓缩。在两个时间段(2010年秋/冬和2011年春/夏)收集了位于希腊北部(沃尔维,多伊拉尼和凯尔基尼)的地表水,并采用了发达的分析方法进行了分析。使用插值方法和地理信息系统(GIS)可视化检测到的农药的空间分布。最高浓度的农药为虫,丙氧磷,西咪嗪,毒死rif,多菌灵,三唑磷,二硫丹砜,吡虫啉,癸丁嗪,叔丁嗪,阿特拉津,阿特拉津-去乙基,苯磺隆-甲基,间溴单胞嘧啶,美拉辛,罗替农酮。在凯尔基尼湖,在湖西北侧的沿海点附近,主要测定了氨基甲酸酯和三嗪的浓度。在所施用的农药类别和确定的浓度之间,季节变化很强,表明农药施用方式和降雨的贡献。多伊拉尼湖主要在沿海地区表现出较高浓度的有机磷酸盐农药,而三嗪则在春季采样时成为主要污染物。沃尔维湖的杀虫剂浓度最高,湖中部大部分为三嗪和尿素。极值和非恒定季节变化的出现表明,在第二次采样过程中,浓度的增加不成比例,这是由于施用期后污染源的贡献变化所致。在所有情况下,农药的总浓度在第二个采样期均增加。

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