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Integrated toxicological and hydrological assessments of diazinon and esfenvalerate (Pimephales promales, Ceriodaphnia dubia).

机译:二嗪农和乙草戊酸(Pimephales promales,Ceriodaphnia dubia)的综合毒理学和水文学评估。

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A 7-day-old fathead minnow (Pimephales promales) larval fish model was used to examine chemical interactions between two pesticides, esfenvalerate and diazinon, evaluate a sublethal endpoint, and conduct pulsed studies with esfenvalerate. Combinations of diazinon and esfenvalerate caused acute toxicity to fathead minnow larvae and appeared to have slightly more than additive effects (i.e., synergistic). Examination of the sublethal endpoint (i.e., swimming performance) revealed that fathead minnow larvae were impaired at or below the same effect level when compared to the survival endpoint. Swimming performance may be a more sensitive measure than survival for exposure to low concentrations (0.13 μg/L) of esfenvalerate. Experimental results indicated additional laboratory evaluation strategies may enhance State water quality testing programs and evaluation of potential chemical interactions in water bodies is recommended.; Spatial and temporal diazinon concentrations were examined within an urban stream, Arcade Creek, in the Sacramento River basin, and a storm drain into the Creek. Diazinon concentrations and streamflow measurements within Arcade Creek were characterized for August 2000 to July 2001.{09}The highest concentrations of diazinon occurred in the first fall and winter flush events. The 90th percentile diazinon concentrations at three Creek sample sites were 830, 836, and 773 ng/L and the storm drain was 2 415 ng/L. Ceriodaphnia dubia (C. dubia) toxicity response to storm drain and Arcade Creek waters was evaluated. This study found C. dubia toxicity tests using “environmental renewal water” (daily renewal of creek water with consecutive daily creek grab samples) were a good indicator of real-world toxicity response to storm events. Recommended field strategies include conducting water flow measurements concurrently with chemical concentration measurements, quantifying chemical flux from point of discharge (including storm drains) to receiving waters, and capturing first storm flushes (important for determining loads to the receiving system).
机译:一个7天大的黑头fat鱼( Pimephales promales )幼体鱼模型用于检查两种杀虫剂esfenvalerate和diazinon之间的化学相互作用,评估亚致死终点,并对esfenvalerate进行脉冲研究。二嗪农和依斯戊戊酸酯的组合对黑头fat鱼幼虫产生急性毒性,并且似乎具有比加和作用略大的作用(即协同作用)。对亚致死终点(即游泳表现)的检查表明,与存活终点相比,黑头min鱼幼虫在等于或低于相同作用水平时受损。与暴露于低浓度(<0.13μg/ L)的艾芬戊酸酯相比,游泳成绩可能是比存活率更敏感的指标。实验结果表明,其他实验室评估策略可能会增强州水质测试计划,建议评估水体中潜在的化学相互作用。考察了萨克拉曼多河流域的市区河Arcade Creek内的时空二嗪农浓度以及流入该河的暴雨。从2000年8月至2001年7月表征了Arcade Creek内二嗪农的浓度和流量。{09}二嗪农的最高浓度发生在第一次秋季和冬季潮汐事件中。三个Creek采样点的第90个百分位数二嗪农浓度为830、836和773 ng / L,雨水排放量为2 415 ng / L。评估了 Ceriodaphnia dubia C。dubia )对暴雨排水和Arcade Creek水域的毒性反应。这项研究发现,使用“环境更新水”(连续更新的小溪每天进行小溪水的每日更新)进行的 du。C. dubia 毒性测试是现实世界对风暴事件毒性反应的良好指标。推荐的现场策略包括与化学浓度测量同时进行水流量测量,量化从排放点(包括雨水排放口)到接收水的化学通量,以及捕获第一次暴雨冲刷(对于确定接收系统的负荷很重要)。

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