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Contrasting dual (C, Cl) isotope fractionation offers potential to distinguish reductive chloroethene transformation from breakdown by permanganate

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cis-DCE, TCE, Dual element isotope, Permanganate, Reductive dechlorination, RATIO MASS-SPECTROMETRY, ORGANIC CONTAMINANTS, STABLE-ISOTOPES, CHLORINATED ETHENES, VINYL-CHLORIDE, CARBON, DECHLORINATION, BIODEGRADATION, OXIDATION, TRICHLOROETHENE

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Citation

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Chicago
Dogan Subasi, Eylem, Martin Elsner, Shiran Qiu, Stefan Cretnik, Siavash Atashgahi, Orfan Shouakar-Stash, Nico Boon, Winnie Dejonghe, and Leen Bastiaens. 2017. “Contrasting Dual (C, Cl) Isotope Fractionation Offers Potential to Distinguish Reductive Chloroethene Transformation from Breakdown by Permanganate.” Science of the Total Environment 596: 169–177.
APA
Dogan Subasi, E., Elsner, M., Qiu, S., Cretnik, S., Atashgahi, S., Shouakar-Stash, O., Boon, N., et al. (2017). Contrasting dual (C, Cl) isotope fractionation offers potential to distinguish reductive chloroethene transformation from breakdown by permanganate. SCIENCE OF THE TOTAL ENVIRONMENT, 596, 169–177.
Vancouver
1.
Dogan Subasi E, Elsner M, Qiu S, Cretnik S, Atashgahi S, Shouakar-Stash O, et al. Contrasting dual (C, Cl) isotope fractionation offers potential to distinguish reductive chloroethene transformation from breakdown by permanganate. SCIENCE OF THE TOTAL ENVIRONMENT. 2017;596:169–77.
MLA
Dogan Subasi, Eylem, Martin Elsner, Shiran Qiu, et al. “Contrasting Dual (C, Cl) Isotope Fractionation Offers Potential to Distinguish Reductive Chloroethene Transformation from Breakdown by Permanganate.” SCIENCE OF THE TOTAL ENVIRONMENT 596 (2017): 169–177. Print.
@article{8523553,
  author       = {Dogan Subasi, Eylem and Elsner, Martin and Qiu, Shiran and Cretnik, Stefan and Atashgahi, Siavash and Shouakar-Stash, Orfan and Boon, Nico and Dejonghe, Winnie and Bastiaens, Leen},
  issn         = {0048-9697},
  journal      = {SCIENCE OF THE TOTAL ENVIRONMENT},
  keyword      = {cis-DCE,TCE,Dual element isotope,Permanganate,Reductive dechlorination,RATIO MASS-SPECTROMETRY,ORGANIC CONTAMINANTS,STABLE-ISOTOPES,CHLORINATED ETHENES,VINYL-CHLORIDE,CARBON,DECHLORINATION,BIODEGRADATION,OXIDATION,TRICHLOROETHENE},
  language     = {eng},
  pages        = {169--177},
  title        = {Contrasting dual (C, Cl) isotope fractionation offers potential to distinguish reductive chloroethene transformation from breakdown by permanganate},
  url          = {http://dx.doi.org/10.1016/j.scitotenv.2017.03.292},
  volume       = {596},
  year         = {2017},
}

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