Zinc isotope variability in three coal-fired power plants: a predictive model for determining isotopic fractionation during combustion
File(s)Manuscript.pdf (845.69 KB) Supporting Information.pdf (332.48 KB)
Accepted version
Supporting information
Author(s)
Ochoa Gonzalez, R
Weiss, DJ
Type
Journal Article
Abstract
The zinc (Zn) isotope compositions of feed materials and combustion byproducts were investigated in three different coal-fired power plants, and the results were used to develop a generalized model that can account for Zn isotopic fractionation during coal combustion. The isotope signatures in the coal (δ66ZnIRMM) ranged between +0.73 and +1.18‰, values that fall well within those previously determined for peat (+0.6 ±2.0‰). We therefore propose that the speciation of Zn in peat determines the isotope fingerprint in coal. All of the bottom ashes collected in these power plants were isotopically depleted in the heavy isotopes relative to the coals, with δ66ZnIRMM values ranging between +0.26‰ and +0.64‰. This suggests that the heavy isotopes, possibly associated with the organic matter of the coal, may be preferentially released into the vapor phase. The fly ash in all of these power plants was, in contrast, enriched in the heavy isotopes relative to coal. The signatures in the fly ash can be accounted for using a simple unidirectional fractionation model with isotope fractionation factors (αsolid–vapor) ranging between 1.0003 and 1.0007, and we suggest that condensation is the controlling process. The model proposed allows, once the isotope composition of the feed coal is known, the constraining of the Zn signatures in the byproducts. This will now enable the integration of Zn isotopes as a quantitative tool for the source apportionment of this metal from coal combustion in the atmosphere.
Date Issued
2015-10-20
Date Acceptance
2015-09-30
Citation
Environmental Science and Technology (Washington), 2015, 49 (20), pp.12560-12567
ISSN
0013-936X
Publisher
American Chemical Society
Start Page
12560
End Page
12567
Journal / Book Title
Environmental Science and Technology (Washington)
Volume
49
Issue
20
Copyright Statement
This document is the Accepted Manuscript version of a Published Work that appeared in final form in Environmental Science & Technology, copyright © American Chemical Society after peer review and technical editing by the publisher. To access the final edited and published work see http://pubs.acs.org/doi/full/10.1021/acs.est.5b02402
Publication Status
Published
Date Publish Online
2015-10-06