Fundación CEAM, C/Charles R. Darwin, 14, Parque Tecnológico, 46980 Paterna, Valencia, Spain; Atmospheric Pesticide Research Group of Valencia, Valencia, Spain.
Fundación CEAM, C/Charles R. Darwin, 14, Parque Tecnológico, 46980 Paterna, Valencia, Spain; Atmospheric Pesticide Research Group of Valencia, Valencia, Spain.
Sci Total Environ. 2017 Feb 1;579:1-9. doi: 10.1016/j.scitotenv.2016.11.009. Epub 2016 Nov 21.
The gas phase atmospheric degradation of pirimiphos-methyl (a widely used organophosphate insecticide and acaricide in many European regions) has been investigated at the large outdoor European Photoreactor (EUPHORE) in Valencia, Spain. Its photolysis has been studied under sunlight conditions and its reaction rate constant with OH radicals was measured by the relative rate method. The reaction with ozone was also investigated. The tropospheric degradation of pirimiphos-methyl is controlled mainly by the OH radical reaction. The rate coefficient of the OH reaction with pirimiphos-methyl, k, was measured by a conventional relative rate technique, where aniline was taken as a reference. The resulting value of the OH reaction rate constant with pirimiphos-methyl was k=(1.14±0.2)×10cmmolecules. The tropospheric lifetime of pirimiphos-methyl with respect to the reaction with OH radicals was estimated to be around 1.6h (283±10) K and atmospheric pressure. Significant aerosol formation was observed in the OH reaction with yields that ranged from 25 to 37%, and with particle diameters below 550nm. This therefore reveals a high human risk due to PM<1, without taking into account the chemical composition of the degradation products. SO, glyoxal and other oxygenated and nitrogenated compounds were the main degradation products detected.
在西班牙巴伦西亚的大型户外欧洲光反应器(EUPHORE)中,研究了广泛用于欧洲许多地区的有机磷杀虫剂和杀螨剂的吡虫·甲基的气相大气降解。研究了其在阳光条件下的光解,并通过相对速率法测量了其与 OH 自由基的反应速率常数。还研究了与臭氧的反应。吡虫·甲基的大气降解主要受 OH 自由基反应控制。通过传统的相对速率技术测量了吡虫·甲基与 OH 自由基的反应速率系数 k,其中苯胺被用作参考。与吡虫·甲基的 OH 反应速率常数的测定值为 k=(1.14±0.2)×10cmmolecules。考虑到与 OH 自由基的反应,吡虫·甲基在大气中的半衰期约为 1.6 小时(283±10)K 和大气压力。在与 OH 自由基的反应中观察到大量气溶胶形成,产率范围为 25%至 37%,粒径低于 550nm。因此,这表明由于 PM<1 而存在高人体风险,而不考虑降解产物的化学成分。因此,检测到的主要降解产物为 SO、乙二醛和其他含氧和含氮化合物。