首页> 外文期刊>Environmental toxicology and chemistry >EFFECT OF ALACHLOR CONCENTRATION AND AN ORGANIC AMENDMENT ON SOIL DEHYDROGENASE ACTIVITY AND PESTICIDE DEGRADATION RATE
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EFFECT OF ALACHLOR CONCENTRATION AND AN ORGANIC AMENDMENT ON SOIL DEHYDROGENASE ACTIVITY AND PESTICIDE DEGRADATION RATE

机译:浓度和有机物对土壤脱氢酶活性和农药降解率的影响

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摘要

Past studies have shown that extremely high concentrations of alachlor in soil can depress microbial biomass and bioactivity; consequently, degradation of alachlor is also inhibited. Studies were undertaken to further characterize the relationship among alachlor concentration in soil, dehydrogenase activity (as an indicator of microbial activity), and degradation rate. Alachlor initially inhibited soil dehydrogenase in soil at concentrations as low as 250 mg/kg with prolonged inhibition through at least 21 d occurring at concentrations ≥ 750 mg/kg. The inhibition of soil dehydrogenase was associated with a prolonged persistence of alachlor beyond the previously reported ranges of half-life observed at normal field rates of application. Amendment of soil with cornmeal caused degradation of 10 to 250 mg/kg alachlor at rates substantially faster than previously reported for laboratory incubations. At alachlor concentrations ≥ 750 mg/kg, dehydrogenase activities in amended soils surpassed levels in corresponding no-pesticide controls after 21 d; coincidentally, > 50% of the initially added alachlor had degraded during the same period. These results suggested that stimulation of microbial bioactivity by addition of organic amendments may enhance co-metabolism of high concentrations of pesticides in soil.
机译:过去的研究表明,土壤中极高的甲草胺浓度会降低微生物的生物量和生物活性。因此,甲草胺的降解也得到抑制。进行了研究以进一步表征土壤中甲草胺浓度,脱氢酶活性(作为微生物活性的指标)和降解速率之间的关系。甲草胺最初以低至250 mg / kg的浓度抑制土壤中的土壤脱氢酶,并在≥750 mg / kg的浓度下持续至少21天的抑制作用。土壤脱氢酶的抑制与甲草胺的持久性超过先前报道的在正常田间施用率下观察到的半衰期范围有关。用玉米粉改良土壤会导致10到250 mg / kg甲草胺的降解,其降解速度大大快于先前报道的实验室培养。在甲草胺浓度≥750 mg / kg时,改良土壤中的脱氢酶活性在21天后超过了相应的无农药对照的水平;巧合的是,在同一时期,最初加入的甲草胺中有50%以上已降解。这些结果表明,通过添加有机改良剂刺激微生物的生物活性可能会增强土壤中高浓度农药的共代谢。

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