首页> 外文期刊>Journal of Environmental Chemistry and Ecotoxicology >Dissipation processes of 14C-carbofuran in soil from Northwest Morocco as influenced by soil water content, temperature and microbial activity
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Dissipation processes of 14C-carbofuran in soil from Northwest Morocco as influenced by soil water content, temperature and microbial activity

机译:土壤水分,温度和微生物活性对摩洛哥西北部土壤中14 C-呋喃呋喃消散过程的影响

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In order to predict the fate of carbofuran in soil, this study was undertaken to evaluate the influence of soil temperature, soil moisture and soil microbial activity on mineralisation and dissipation rate of carbofuran on a typical sugar beet clayey soil of Loukkos area (Northwest Morocco). Results of incubation studies showed that soil temperature and soil water contents have great influence on mineralization and dissipation rates of carbofuran, and soil autoclaving process significantly increased thehalf-life of the insecticide. The degradation and mineralization rates in non-autoclaved soil increased with increasing soil temperature and soil moisture content. Carbofuran dissipation rates followed first-order kinetics with half-lives ranged from 26 to 90 days in natural soil. In the autoclaved soil however, the half-life increased 3.2-folds from 39 to 142 days. Mineralization was inhibited by autoclaving, indicating the importance of microorganisms in the breakdown process of the insecticide, and in mean time, the insecticide seems to have been degraded by non-biological process since bound residues were formed with high amount (19%) in the autoclaved soil. These data could be helpful for risk assessment studies of the insecticide and for validating pesticide dissipation models for clayey soils in Moroccan sugar beet-growing areas.
机译:为了预测呋喃丹在土壤中的命运,本研究旨在评估土壤温度,土壤湿度和土壤微生物活性对卢浮斯地区(西北摩洛哥)典型甜菜黏土土壤中呋喃丹矿化和消散速率的影响。 。孵化研究结果表明,土壤温度和土壤含水量对呋喃丹的矿化和消散速率有很大影响,土壤高压灭菌过程显着延长了杀虫剂的半衰期。随着土壤温度和土壤含水量的增加,非高压灭菌土壤的降解和矿化速率增加。在自然土壤中,呋喃丹的耗散率遵循一级动力学,其半衰期为26天至> 90天。然而,在高压灭菌的土壤中,半衰期从39天增加到142天,增长了3.2倍。高压灭菌抑制了矿化作用,这表明了微生物在杀虫剂分解过程中的重要性,同时,由于非结合过程中杀虫剂的形成量很高(19%),因此似乎已被非生物过程降解。高压灭菌的土壤。这些数据可能有助于研究杀虫剂的风险,并有助于验证摩洛哥甜菜种植区黏土土壤的农药消散模型。

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