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Effects of Three Commonly Used Herbicides in Maize on Short-Term Soil Organic Carbon Mineralization

机译:三种常用除草剂在玉米对短期土壤有机碳矿化的影响

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Toxicological effects of herbicides on the non-target microorganisms in the soil that play important roles in degrading organic matter, nutrient cycling, and decomposition should be considered if they were applied at higher concentrations. This study was conducted to reveal the toxicity of three modern herbicides (dicamba + tritosulfuron; DT, isoxinutole + thlencarbuone-methyl + cyprosulfamide; ITC and nicosulfuron; N) on soil carbon mineralization for short term. Recommended concentration (25 g/day for DT1, 30 ml/day for ITC1, and 125 ml/day N1), its 5 (DT5, ITC5, and N5), and 10 (DT10, ITC10, and N10) folds of herbicides were applied on a clay soil with no pesticide application history. Soil + herbicide mixes and soil without herbicide as control were incubated under constant temperature (28 degrees C) and moisture (80% of soil field capacity) for 42 days. In general, all doses of herbicides were significantly decreased soil carbon mineralization in short term (P 0.05). Cumulative carbon mineralization was declined for 3.4% by DT1, for 15.0% by DT5, for 22.4% by DT10, for 13.7% by ITC1, for 14.2% by ITC5, for 18.6% by ITC10, for 4.7% by N1, for 10.0% by N5, and for 21.0% by N10, respectively, compared to control. Significant decreases were observed in the rates of carbon mineralization except DT1 and N1. Results suggested that higher doses of these herbicides negatively affected on soil microbial respiration.
机译:除了在较高浓度施加时,应考虑除了有机质,营养循环和分解中起到重要作用的土壤中非靶微生物的毒理学作用。进行了本研究以揭示三种现代除草剂(Dicamba + Tritosulfuron; DT,异氧丁醇+ Thlencarbuone-甲基+硫酰磺酰胺; ITC和Nicosulfuron; N)对短期进行土壤碳矿化的毒性。推荐浓度(25克/天的DT1,ITC1的30mL /天,125ml /天N1),其5(DT5,ITC5和N5)和10(DT10,ITC10和N10)除草剂折叠涂在粘土土壤上,没有农药应用历史。在恒温(28℃)和水分(土壤场容量的80%)下,将土壤+除草剂的混合物和土壤无需除草剂。通常,所有剂量的除草剂在短期内显着降低土壤碳矿化(P <0.05)。累积碳矿化的DT1下降3.4%,DT5的15.0%,22.4%,ITC1的13.7%,ITC5的14.2%,ITC10的18.6%,4.7%(N1),为10.0%与对照相比,通过N5和21.0%(N10)分别为21.0%。在除DT1和N1之外的碳矿化率下观察到显着降低。结果表明,较高剂量的这些除草剂对土壤微生物呼吸产生负面影响。

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