Bending Gary D, Lincoln Suzanne D, Edmondson Rodney N
Warwick HRI, University of Warwick, Wellesbourne, Warwick CV35 9EF, UK.
Environ Pollut. 2006 Jan;139(2):279-87. doi: 10.1016/j.envpol.2005.05.011. Epub 2005 Jul 25.
The extent of within field variability in the degradation rate of the pesticides isoproturon, azoxystrobin and diflufenican, and the role of intrinsic soil factors and technical errors in contributing to the variability, was investigated in sites on sandy-loam and clay-loam. At each site, 40 topsoil samples were taken from a 160 x 60 m area, and pesticides applied in the laboratory. Time to 25% dissipation (DT25) ranged between 13 and 61 weeks for diflufenican, 5.6 and 17.2 weeks for azoxystrobin, and 0.3 and 12.5 weeks for isoproturon. Variability in DT25 was higher in the sandy-loam in which there was also greatest variability in soil chemical and microbial properties. Technical error associated with pesticide extraction, analysis and lack of model fit during derivation of DT25 accounted for between 5.3 and 25.8% of the variability for isoproturon and azoxystrobin, but could account for almost all the variability for diflufenican. Azoxystrobin DT25, sorption and pH were significantly correlated.
研究了异丙隆、嘧菌酯和二氟吡隆等农药降解率在田间的变异性程度,以及内在土壤因素和技术误差在导致变异性方面所起的作用,研究地点为沙壤土和粘壤土。在每个地点,从160×60米的区域采集了40个表土样本,并在实验室中施用农药。二氟吡隆的25%消散时间(DT25)在13至61周之间,嘧菌酯为5.6至17.2周,异丙隆为0.3至12.5周。沙壤土中DT25的变异性更高,其土壤化学和微生物特性的变异性也最大。与农药提取、分析以及DT25推导过程中模型拟合不足相关的技术误差,在异丙隆和嘧菌酯的变异性中占5.3%至25.8%,但几乎可以解释二氟吡隆的所有变异性。嘧菌酯的DT25、吸附和pH值显著相关。