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Effects of soil pH and soil water content on prosulfuron dissipation

机译:土壤pH值和土壤含水量对硫磺耗散的影响

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The sulfonylurea herbicide prosulfuron, 1-(4-methoxy-6-methyltriazin-2-yl)-3-[2-(3,3,3-trifluoropropyl)phenylsulfo nyl]urea, is used for the selective control of broadleaf weeds in corn, sorghum, and cereal grains. To investigate its fate in soils, this study examined the effects of soil pH and water content on the rates of dissipation processes and the products formed under aerobic conditions. Radiometry and chromatography analyses were used to quantify the degradation products and bound residues formed in incubations of 10 different soils. The pH-dependent hydrolysis of the sulfonylurea bridge to form phenyl sulfonamide was the primary transformation process. Significant microbial degradation of prosulfuron occurred in 2 of the 10 soils, yielding (CO2)-C-14 and desmethyl prosulfuron among the major products. The time required for 50% dissipation of the herbicide (DT50) was determined for each soil and water content treatment. At equivalent water contents, prosulfuron DT50 values were positively correlated with soil pH (P < 0.0001), varying from 6.5 days at pH 5.4 to 122.9 days at pH 7.9. Soil pH and water content strongly influence the fate of sulfonylurea herbicides in agricultural fields. Differences in the effect of soil water content on dissipation kinetics in a comparison of two soils were attributed to differences in soil pH, texture, and the ability of indigenous microorganisms to transform the herbicide. [References: 31]
机译:磺酰脲类除草剂原磺隆1-(4-甲氧基-6-甲基三嗪-2-基)-3- [2-(3,3,3-三氟丙基)苯基磺基]尿素用于选择性防治阔叶杂草玉米,高粱和谷物。为了研究其在土壤中的命运,这项研究检查了土壤pH和水分含量对耗氧过程和有氧条件下形成的产品速率的影响。放射分析和色谱分析被用于量化降解产物和在10种不同土壤中孵育形成的结合残留物。磺酰脲桥的pH依赖性水解形成苯基磺酰胺是主要的转化过程。在10种土壤中的2种中,丙磺隆发生了显着的微生物降解,主要产品中产生(CO2)-C-14和去甲基丙磺隆。对于每种土壤和水含量处理,确定消灭除草剂(DT50)50%所需的时间。在相同的水含量下,原硫磺的DT50值与土壤pH呈正相关(P <0.0001),从pH 5.4的6.5天变化到pH 7.9的122.9天。土壤的pH值和水含量强烈影响农业领域磺酰脲类除草剂的命运。在两种土壤的比较中,土壤水分对耗散动力学的影响方面的差异归因于土壤pH值,质地和本地微生物转化除草剂的能力的差异。 [参考:31]

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