首页> 外文期刊>Journal of analytical chemistry >Spectrophotometric determination of hydrazine, methylhydrazine, and 1,1-dimethylhydrazine with preliminary derivatization by 5-nitro-2-furaldehyde
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Spectrophotometric determination of hydrazine, methylhydrazine, and 1,1-dimethylhydrazine with preliminary derivatization by 5-nitro-2-furaldehyde

机译:分光光度法测定肼,甲基肼和1,1-二甲基肼的初步衍生化5-硝基-2-呋喃醛

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摘要

5-Nitro-2-furaldehyde, a new derivatizing agent for the spectrophotometric determination of hydrazine, methylhydrazine, and 1,1-dimethylhydrazine is proposed. It is characterized by high solubility in water and by a substantial difference in the positions of absorption bands of the formed colored derivatives. The kinetics of the reaction of analyte derivatization is studied, and reaction conditions (pH 5, concentration of derivatizing agent 2 mM, 60A degrees C, duration 40 min) are optimized. The limits of detection are 5, 3, and 1.5 mu g/L for hydrazine, methylhydrazine, and 1,1-dimetlhydrazine, respectively. A possibility of the spectrophotometric determination of analytes in their simultaneous presence using the Firordt method is shown. The developed approach is successfully applied to the analysis of polluted peat bog soil selected at a place of impact of the first step of a carrier rocket.
机译:提出了一种用于分光光度法测定肼,甲基肼和1,1-二甲基肼的新衍生剂的新衍生剂。 其特征在于水中高溶解度,并通过形成的着色衍生物的吸收带的位置的显着差异。 研究了分析物衍生化反应的动力学,并进行了反应条件(pH5,衍生剂浓度2mm,60a℃,持续时间40分钟)。 检测限为5,3和1.5μg/ L用于肼,甲基肼和1,1-二甲酰肼。 示出了分光光度法使用Firordt方法同时存在分析物的可能性。 开发的方法成功地应用于在载体火箭第一步的影响位置选择污染的泥炭沼泽土壤的分析。

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