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Input, flux, and persistence of six select pesticides in San Francisco Bay

机译:旧金山湾六种精选农药的输入,流量和持久性

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Temporal patterns of pesticide inputs to San Francisco Bay were identified and correlated with timing of application and transport mechanism. Fluxes were calculated from measured concentrations and estimated flow. Persistence of the pesticides under typical riverine or estuarine conditions were estimated from laboratory experiments. Simazine was detected most frequently and had the highest flux into the Bay, which could be explained by its continuous use and long half-life. In comparison, diazinon was detected at lower concentrations and had a lower flux which corresponded to its lower use and shorter half-life. The order-of-magnitude lower fluxes of carbofuran and methidathion corresponded to their lower use and expected hydrolysis. Molinate was detected at the highest concentration but its flux was lower than expected, considering its very high use and persistence in the laboratory experiments. Additional loss of molinate is likely to occur from volatilization and photodegradation on the rice fields. Although thiobencarb had the second highest use, it had the lowest flux of the six pesticides, which can be attributed to its loss via hydrolysis, photodegradation, volatilization, and sorption to sediments. Fluxes into San Francisco Bay were equal to or greater than those reported for other estuaries, except for the Gulf of Mexico.
机译:确定了向旧金山湾输入农药的时间模式,并将其与施药时间和运输机制相关联。由测得的浓度和估计的流量计算通量。通过实验室实验评估了农药在典型河流或河口条件下的持久性。 Simazine最常被检测到,并且进入海湾的通量最高,这可以通过连续使用和半衰期长来解释。相比之下,检测到的二嗪农浓度较低,通量较低,这对应于其较低的使用量和较短的半衰期。碳氢呋喃和甲基硫磷的数量级较低的通量对应于它们的较低用量和预期的水解。考虑到其含量很高,并且在实验室实验中具有持久性,因此可以检测到最高浓度的草酸盐,但通量却低于预期。稻田中的挥发物和光降解作用可能会进一步增加草酸盐的损失。尽管苯硫威的使用量居第二位,但在六种农药中通量却最低,这可以归因于其因水解,光降解,挥发和对沉积物的吸附而损失。除墨西哥湾外,进入旧金山湾的通量等于或大于其他河口的通量。

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