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Methods for the Stable Isotopic Analysis of Chlorine in Chlorate and Perchlorate Compounds

机译:氯酸盐和高氯酸盐化合物中氯的稳定同位素分析方法

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Chlorate and perchlorate compounds, used as herbicides, solid fuel propellants, and explosives, are increasingly recognized as pollutants in groundwater. Stable isotope characterization would permit both environmental monitoring of extent of remediation and forensic characterization. Stoichiometric reduction to chloride (greater than 98% yield), by Fe(II) for chlorate and alkaline fusion-decomposition for perchlorate, allows analysis by standard methods to give highly reproducible and accurate 250L膥(37)Cl results (0.05‰, 2×standard error). Analysis of various compounds from different suppliers yielded δ~(37)Cl values for chlorate samples near to +0.2‰ (SMOC), but one has within-sample heterogeneity of 0.5‰, possibly due to crystallization processes during manufacture. Results for perchlorate samples also are generally near +0.2‰, but one is +2.3‰ (SMOC). The initial results suggest that both forensic and environmental applications might be feasible.
机译:用作除草剂,固体燃料推进剂和炸药的氯酸盐和高氯酸盐化合物越来越被认为是地下水中的污染物。稳定的同位素表征既可以对补救程度进行环境监测,又可以进行法医表征。用化学计量法将Fe(II)用于氯酸盐还原为氯化物(大于98%的产率),并对高氯酸盐进行碱性熔融分解,可以通过标准方法进行分析,从而获得高度可再现且准确的250L膥(37)Cl结果(0.05‰, 2×标准误差)。对来自不同供应商的各种化合物进行分析,得出氯酸盐样品的δ〜(37)Cl值接近+ 0.2‰(SMOC),但一种样品内异质性为0.5‰,这可能是由于制造过程中的结晶过程所致。高氯酸盐样品的结果通常也接近+ 0.2‰,但一个为+ 2.3‰(SMOC)。初步结果表明,法医和环境方面的应用都是可行的。

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