Department of Geosciences, Auburn University, Auburn, Alabama 36849, USA.
Environ Sci Process Impacts. 2020 Mar 1;22(3):567-582. doi: 10.1039/c9em00498j. Epub 2020 Jan 29.
Compound-specific isotope analysis (CSIA) is a powerful tool to evaluate transformation processes of halogenated compounds. Many halogenated hydrocarbons allow for multiple stable isotopic systems (C, H, Cl, Br) to be measured for a single compound. This has led to a large body of literature describing abiotic and biotic transformation pathways and reaction mechanisms for contaminants such as chlorinated alkenes and alkanes as well as brominated hydrocarbons. Here, the current literature is reviewed and a new compilation of Λ values for multi-isotopic systems for halogenated hydrocarbons is presented. Case studies of each compound class are discussed and thereby the current strengths of multi-element isotope analysis, continuing challenges, and gaps in our current knowledge are identified for practitioners of multi-element CSIA to address in the near future.
化合物稳定同位素比值分析(CSIA)是评估卤代化合物转化过程的有力工具。许多卤代烃允许对单个化合物进行多个稳定同位素体系(C、H、Cl、Br)的测量。这导致了大量文献描述了污染物如氯化烯烃和烷烃以及溴代烃的非生物和生物转化途径和反应机制。在这里,综述了当前的文献,并提出了一个新的卤代烃多同位素体系Λ值的综合汇编。讨论了每一类化合物的案例研究,从而确定了多元素同位素分析的当前优势、持续挑战以及我们当前知识中的空白,以便多元素 CSIA 的从业者在不久的将来解决这些问题。