Sarmah Ajit K, Close Murray E, Mason Norman W H
Landcare Research New Zealand, Hamilton, New Zealand.
J Environ Sci Health B. 2009 May;44(4):325-36. doi: 10.1080/03601230902800960.
We investigated dissipation and sorption of atrazine, terbuthylazine, bromacil, diazinon, hexazinone and procymidone in two contrasting New Zealand soils (0-10 cm and 40-50 cm) under controlled laboratory conditions. The six pesticides showed marked differences in their degradation rates in both top- and subsoils, and the estimated DT(50) values for the compounds were: 19-120 (atrazine), 10-36 (terbuthylazine), 12-46 (bromacil), 7-25 (diazinon), 8-92 (hexazinone) and 13-60 days for procymidone. Diazinon had the lowest range for DT(50) values, while bromacil and hexazinone gave the highest DT(50) values under any given condition on any soil type. Batch derived effective distribution coefficient (K(d)(eff)) values for the pesticides varied markedly with bromacil and hexazinone exhibiting low sorption affinity for the soils at either depth, while diazinon gave high sorption values. Comparison of pesticide degradation in sterile and non-sterile soils suggests that microbial degradation was the major dissipation pathway for all six compounds, although little influence of abiotic degradation was noticeable for diazinon and procymidone.
我们在可控的实验室条件下,研究了阿特拉津、特丁津、溴莠敏、二嗪农、嗪草酮和腐霉利在新西兰两种截然不同的土壤(0 - 10厘米和40 - 50厘米)中的消散和吸附情况。这六种农药在表土和底土中的降解速率存在显著差异,这些化合物的估计DT(50)值分别为:19 - 120天(阿特拉津)、10 - 36天(特丁津)、12 - 46天(溴莠敏)、7 - 25天(二嗪农)、8 - 92天(嗪草酮)以及13 - 60天(腐霉利)。二嗪农的DT(50)值范围最低,而在任何给定条件下的任何土壤类型中,溴莠敏和嗪草酮的DT(50)值最高。农药的批次衍生有效分配系数(K(d)(eff))值差异显著,溴莠敏和嗪草酮在任一深度对土壤的吸附亲和力较低,而二嗪农的吸附值较高。无菌土壤和非无菌土壤中农药降解情况的比较表明,微生物降解是所有六种化合物的主要消散途径,不过二嗪农和腐霉利的非生物降解影响不明显。