BibTex format
@article{Ojeda:2020:10.1039/c9em00498j,
author = {Ojeda, AS and Phillips, E and Sherwood, Lollar B},
doi = {10.1039/c9em00498j},
journal = {Environ Sci Process Impacts},
pages = {567--582},
title = {Multi-element (C, H, Cl, Br) stable isotope fractionation as a tool to investigate transformation processes for halogenated hydrocarbons.},
url = {http://dx.doi.org/10.1039/c9em00498j},
volume = {22},
year = {2020}
}
RIS format (EndNote, RefMan)
TY - JOUR
AB - 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.
AU - Ojeda,AS
AU - Phillips,E
AU - Sherwood,Lollar B
DO - 10.1039/c9em00498j
EP - 582
PY - 2020///
SP - 567
TI - Multi-element (C, H, Cl, Br) stable isotope fractionation as a tool to investigate transformation processes for halogenated hydrocarbons.
T2 - Environ Sci Process Impacts
UR - http://dx.doi.org/10.1039/c9em00498j
UR - https://www.ncbi.nlm.nih.gov/pubmed/31993605
VL - 22
ER -