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Nicosulfuron: Alcoholysis, chemical hydrolysis, and degradation on various minerals

机译:烟嘧磺隆:醇解,化学水解和对各种矿物的降解

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Alcoholysis (methanol or ethanol) and hydrolysis (pH ranging from 4 to 11) of the herbicide nicosulfuron at 30 degreesC principally involves the breakdown of the urea part of the molecule. A high yield of the corresponding carbamate was obtained along with aminopyrimidine during alcoholysis. Hydrolysis led to both aminopyrimidine and pyridylsulfonamide. The latter compound may be easily cyclized (pH ?: 7). First-order kinetics describe the rates of alcoholysis and hydrolysis well. The rate constants (0.44 days(-1) for methanolysis) decreased from 0.50 to 0.002 days(-1) as pH increased from 4 to 8, then remained stable under alkaline conditions. In acidic or neutral solution, the hydrolysis path appeared prevalent (greater than or equal to70%), whereas in an alkaline medium it decreased when pH increased. The chemical degradation of nicosulfuron on various dry minerals (calcium bentonite, kaolinite, silica gel, H+ bentonite, montmorillonite K10, and alumina) was investigated at 30 degreesC. The best conditions for the degradation are obtained on acidic minerals after herbicide deposition using the liquid method. Under these conditions an acceptable correlation with pseudo-first-order kinetics was observed, and the major degradation path is similar to that proposed for chemical hydrolysis. Conversely, alumina seemed to favor other unknown degradation processes. The hydrolysis paths of nicosulfuron and rimsulfuron appeared to be different.
机译:除草剂烟嘧磺隆在30℃下的醇解(甲醇或乙醇)和水解(pH为4至11)主要涉及分子中尿素部分的分解。在醇解过程中,与氨基嘧啶一起获得了高产率的相应氨基甲酸酯。水解产生氨基嘧啶和吡啶基磺酰胺。后一种化合物可以容易地环化(pH值:7)。一级动力学很好地描述了醇解和水解的速率。随着pH从4增至8,速率常数(甲醇分解的速率常数(0.44天(-1))从0.50降低至0.002天(-1),然后在碱性条件下保持稳定。在酸性或中性溶液中,水解途径普遍存在(大于或等于70%),而在碱性介质中,当pH升高时,水解途径减少。在30℃下研究了烟嘧磺隆在各种干燥矿物(钙膨润土,高岭石,硅胶,H +膨润土,蒙脱土K10和氧化铝)上的化学降解。使用液体方法在除草剂沉积后在酸性矿物上获得降解的最佳条件。在这些条件下,可以观察到与伪一级动力学相关的可接受的相关性,并且主要降解途径与化学水解方法相似。相反,氧化铝似乎有利于其他未知的降解过程。烟嘧磺隆和利福磺隆的水解路径似乎不同。

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