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Adsorption and degradation of imazapic in soils under different environmental conditions

机译:在不同环境条件下土壤中异丁二烯的吸附和降解

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摘要

Imazapic is widely used in peanut production, and its residues can cause damage to succeeding crops planted in the following year. The planting area of peanut is large in Henan province. Inceptisol is the main soil type in Henan Province and was used in laboratory experiments that were conducted to investigate imazapic degradation in soil under various environmental conditions. The results indicated that the imazapic degradation rate increased with an increase in temperature, soil pH, and soil moisture, and decreased with organic matter content. The use of biogas slurry as a soil amendment accelerated imazapic degradation. The half-life of imazapic in sterilized soil (364.7 d) was longer than in unsterilized soil (138.6 d), which suggested that there was a significant microbial contribution to imazapic degradation. Imazapic adsorption was also examined and was found to be well described by the Freundlich isotherm. The results indicate that soil has a certain adsorption capacity for imazapic.
机译:Imazapic被广泛用于花生生产,其残留物可能对次年种植的后续作物造成损害。河南省花生种植面积大。 Inceptisol是河南省的主要土壤类型,用于实验室实验,以研究在各种环境条件下土壤中伊马扎比的降解。结果表明,随着温度,土壤pH值和土壤湿度的增加,异丁二烯的降解速率增加,而有机质含量则降低。沼液作为土壤改良剂的使用加速了伊马扎比降解。灭菌土壤中吡虫啉的半衰期(364.7 d)比未灭菌土壤中的半衰期(138.6 d)更长,这表明微生物对吡虫啉的降解有重要作用。还检查了异马ap吸附,并通过弗氏等温线很好地描述了吸附。结果表明,土壤对吡虫啉具有一定的吸附能力。

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