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首页> 外文期刊>Agronomie >Influence of flooding on the degradation of linuron, isoproturon and metolachlor in soil.
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Influence of flooding on the degradation of linuron, isoproturon and metolachlor in soil.

机译:淹水对土壤中的利鲁隆,异丙隆和异丙甲草胺降解的影响。

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Degradation of pesticides in soil usually refers to normally aerated conditions. However, considering that under some circumstances, fields treated with pesticide can be subject to flooding phenomena, more information on pesticide persistence under these conditions is needed. The main objective of the present study was to investigate the persistence of linuron, isoproturon and metolachlor in soil samples incubated under flooding conditions. During the whole incubation period, changes in soil Eh, pH and microbial C were measured. Flooding conditions produced different effects on the persistence of the three herbicides. More specifically, flooding conditions led to a significant increase in linuron and isoproturon persistence. The half-lives of linuron and isoproturon in flooded soil were 1.8 and 1.4 times higher than in nonflooded soil, respectively. An opposite phenomenon was observed with metolachlor. The half-life of metolachlor was reduced from 32.2 to 24.1 days in nonflooded and flooded soil, respectively. Soil Eh rapidly decreased in soil samples incubated under flooding conditions, passing form 368.0 mV to -225.5 mV within the first week of flooding. No significant changes in soil microbial C in soil samples incubated under the two water regimes were observed. The results obtained from the present experiment showed that information from normally aerated soil conditions is not correctly applicable to predict herbicide persistence under flooding conditions..
机译:土壤中农药的降解通常是指正常的曝气条件。但是,考虑到在某些情况下,用农药处理过的田地可能会发生水灾现象,因此需要更多有关这些条件下农药持久性的信息。本研究的主要目的是研究在淹水条件下培养的土壤样品中亚麻酸,异丙隆和异丙甲草胺的持久性。在整个孵育过程中,测量土壤中Eh,pH和微生物C的变化。洪水条件对三种除草剂的持久性产生了不同的影响。更具体地说,水淹条件导致线性神经递质和异丙隆的持久性显着增加。淹水土壤中的linuron和isoproturon的半衰期分别比未淹水土壤的半衰期高1.8倍和1.4倍。异丙甲草胺观察到相反的现象。在未淹水和淹水的土壤中,甲草胺的半衰期分别从32.2天和24.1天减少到24.1天。在淹没条件下孵育的土壤样品中,土壤Eh迅速降低,在淹没的第一周内从368.0 mV变为-225.5 mV。在两种水分制度下温育的土壤样品中,土壤微生物C均未见明显变化。从本实验获得的结果表明,正常充气土壤条件下的信息不能正确地用于预测洪水条件下除草剂的持久性。

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