Singh Brajesh Kumar, Walker Allan, Wright Denis J
Soil and Environmental Sciences Department, Horticulture Research International, Wellesbourne, Warwick CV35 9EF, United Kingdom.
Environ Toxicol Chem. 2002 Dec;21(12):2600-5.
The effects of repeated application and of combinations of pesticides on their degradation rates in soil and on some soil microbial properties were studied. Repeated application of chlorpyrifos did not modify its degradation rate, whereas repeated applications of fenamiphos and chlorothalonil suppressed their own rates of degradation. When applied in combination, the presence of chlorothalonil reduced the degradation rate of both chlorpyrifos and fenamiphos, and the half-life of chlorothalonil was extended in the presence of chlorpyrifos. The dynamics of residues of the major metabolites of the different compounds were also affected by the pesticide combinations and, particularly, by the presence of chlorothalonil. The measured soil microbial parameters (enzyme activities and total microbial biomass) were stable in the pesticide-free control soils throughout the 90-d incubation period, but they were all adversely affected by the presence of chlorothalonil in the soil. The effects from fenamiphos or chlorpyrifos on the soil microbial characteristics were either very small or insignificant.
研究了农药的重复施用及其组合对其在土壤中的降解速率以及一些土壤微生物特性的影响。重复施用毒死蜱并未改变其降解速率,而重复施用苯线磷和百菌清则抑制了它们自身的降解速率。当混合施用时,百菌清的存在降低了毒死蜱和苯线磷的降解速率,并且在毒死蜱存在的情况下百菌清的半衰期延长。不同化合物主要代谢物的残留动态也受到农药组合的影响,特别是受到百菌清存在的影响。在整个90天的培养期内,在无农药的对照土壤中测得的土壤微生物参数(酶活性和总微生物生物量)是稳定的,但土壤中百菌清的存在对它们均产生了不利影响。苯线磷或毒死蜱对土壤微生物特性的影响非常小或不显著。