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Compound-Specific Isotope Analysis of RDX and Stable Isotope Fractionation during Aerobic and Anaerobic Biodegradation

机译:有氧和厌氧生物降解过程中RDX的化合物特定同位素分析和稳定同位素分馏

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摘要

Hexahydro-1,3,5-trinitro-1,3,5-triazine (RDX) is a common contaminant at explosives production sites. Here, we report on the use of compound-specific isotope analysis of RDX to obtain δ~(15)N and δ~(18)O enrichment factors during biodegradation in batch cultures. A new preparation method has been developed based on RDX purification using thin-layer chromatography. RDX is then subjected to an elemental analyzer coupled with an isotope-ratio mass spectrometer (EA-IRMS). The precision of the method shows standard deviations of 0.13‰ and 1.18‰ for δ~(15)N and δ~(18)O, respectively, whereas the accuracy of the method has been checked routinely, adhering to external standards. The method was applied to RDX samples subjected to biodegradation under aerobic or anaerobic conditions. Enrichment factors under aerobic conditions were -2.1‰ and -1.7‰ for δ~(15)N and δ~(18)O, respectively, and under anaerobic conditions, -5.0‰ and -5.3‰ for δ~(15)N and δ~(18)O, respectively. The results of this study provide a tool for monitoring natural attenuation of RDX in a contaminated environment.
机译:六氢-1,3,5-三硝基-1,3,5-三嗪(RDX)是炸药生产现场的常见污染物。在这里,我们报道了使用RDX的化合物特异性同位素分析来获得分批培养物中生物降解过程中的δ〜(15)N和δ〜(18)O富集因子。基于薄层色谱的RDX纯化,已经开发出一种新的制备方法。然后将RDX进行元素分析仪和同位素比质谱仪(EA-IRMS)的耦合。该方法的精密度表明δ〜(15)N和δ〜(18)O的标准偏差分别为0.13‰和1.18‰,而该方法的准确性已按照常规进行了定期检查,并遵循外部标准。该方法适用于在需氧或厌氧条件下经过生物降解的RDX样品。需氧条件下δ〜(15)N和δ〜(18)O的富集因子分别为-2.1‰和-1.7‰,厌氧条件下δ〜(15)N和δ〜(15)N和-5.3‰的富集因子分别为-5.0‰和-5.3‰。分别为δ〜(18)O。这项研究的结果为监测受污染环境中RDX的自然衰减提供了一种工具。

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