Lu Jianhang, Wu Laosheng, Newman Julie, Faber Ben, Gan Jianying
Department of Environmental Sciences, University of California-Riverside, Riverside, California 92521, USA.
J Agric Food Chem. 2006 Apr 5;54(7):2658-63. doi: 10.1021/jf060067r.
Recycling or collection ponds are often used in outdoor container nursery production to capture and recycle runoff water and fertilizers. Waters in recycling ponds generally have high concentrations of nutrients, pesticides, and dissolved organic matter, as well as elevated salinity and turbidity. Little is known about pesticide degradation behavior in the unique environment of nursery recycling ponds. In this study, degradation of four commonly used pesticides diazinon, chlorpyrifos, chlorothalonil, and pendimethalin in waters from two nursery recycling ponds was investigated at an initial pesticide concentration of 50 microg/L. Results showed that the persistence of diazinon and chlorpyrifos appeared to be prolonged in recycling pond waters as compared to surface streamwaters, possibly due to decreased contribution from biotic transformation, while degradation of chlorothalonil and pendimethalin was enhanced. Activation energies of biotic degradation of all four pesticides were lower than abiotic degradation, indicating that microbial transformation was less affected by temperature than chemical transformation. Overall, the pesticide degradation capacity of recycling ponds was better buffered against temperature changes than that of surface streamwaters.
循环利用池或收集池常用于户外容器育苗生产,以收集和循环利用径流中的水和肥料。循环利用池中的水通常含有高浓度的养分、农药、溶解有机物,以及较高的盐度和浊度。对于育苗循环利用池这种独特环境中农药的降解行为,人们了解甚少。在本研究中,以初始农药浓度50微克/升,对两个育苗循环利用池水中四种常用农药(二嗪农、毒死蜱、百菌清和二甲戊灵)的降解情况进行了研究。结果表明,与地表径流相比,二嗪农和毒死蜱在循环利用池水中的持久性似乎延长了,这可能是由于生物转化的贡献减少所致,而百菌清和二甲戊灵的降解则有所增强。所有四种农药生物降解的活化能均低于非生物降解,这表明微生物转化受温度的影响小于化学转化。总体而言,与地表径流相比,循环利用池对温度变化的农药降解能力具有更好的缓冲作用。