TY - JOUR
T1 - Effects of Sulfidation and Nitrate on the Reduction of N-Nitrosodimethylamine by Zerovalent Iron
AU - Qin, Hejie
AU - Guan, Xiaohong
AU - Tratnyek, Paul G.
N1 - Funding Information:
Portions of this work were supported by the Strategic Environmental Research and Development Program of the U.S. Department of Defense, Award Numbers ER-2308, ER-2620, and ER-2621. Other support of this research was from National Natural Science Foundation of China (Grants 21777117 and 21522704). The author H.Q. acknowledges support from the program of China Scholarships Council. This report has not been subject to review by any sponsor and therefore does not necessarily reflect agency views and no official endorsements should be inferred.
Publisher Copyright:
© 2019 American Chemical Society.
PY - 2019/8/20
Y1 - 2019/8/20
N2 - Competition among oxidizing species in groundwater and wastewater for the reductive capacity of zerovalent iron (ZVI) makes the selectivity of ZVI for target contaminant degradation over other reduction pathways a major determinant of the feasibility of ZVI-based water treatment processes. The selectivity for reduction of contaminants over water is improved by sulfidation, but the effect of sulfidation on other competing reactions is not known. The interaction between these competing reactions was investigated using N-nitrosodimethylamine (NDMA) as the target contaminant, nitrate as a co-contaminant, and micrometer-sized ZVI with and without sulfidation. Unsulfidated ZVI reduced NDMA to dimethylamine via N,N-dimethylhydrazine, but the addition of nitrate decreased the rate of NDMA reduction and increased the quantity of intermediate observed. With sulfidated ZVI, the kinetics and products of NDMA reduction were similar to those with unsulfidated ZVI, but no inhibitory effect of nitrate was observed. Conversely, the reduction of nitrate - which dominated NDMA reduction in unsulfidated ZVI systems - was strongly inhibited by sulfidation. H2 and Fe2+ generation by sulfidated ZVI was almost independent of nitrate concentration. Therefore, sulfidation improved the efficiency of NDMA reduction by ZVI in the presence of nitrate mainly by inhibiting nitrate reduction. The shift in selectivity of ZVI for NDMA over nitrate upon sulfidation was due to replacement of Fe0/FexOy surface sites with FeS.
AB - Competition among oxidizing species in groundwater and wastewater for the reductive capacity of zerovalent iron (ZVI) makes the selectivity of ZVI for target contaminant degradation over other reduction pathways a major determinant of the feasibility of ZVI-based water treatment processes. The selectivity for reduction of contaminants over water is improved by sulfidation, but the effect of sulfidation on other competing reactions is not known. The interaction between these competing reactions was investigated using N-nitrosodimethylamine (NDMA) as the target contaminant, nitrate as a co-contaminant, and micrometer-sized ZVI with and without sulfidation. Unsulfidated ZVI reduced NDMA to dimethylamine via N,N-dimethylhydrazine, but the addition of nitrate decreased the rate of NDMA reduction and increased the quantity of intermediate observed. With sulfidated ZVI, the kinetics and products of NDMA reduction were similar to those with unsulfidated ZVI, but no inhibitory effect of nitrate was observed. Conversely, the reduction of nitrate - which dominated NDMA reduction in unsulfidated ZVI systems - was strongly inhibited by sulfidation. H2 and Fe2+ generation by sulfidated ZVI was almost independent of nitrate concentration. Therefore, sulfidation improved the efficiency of NDMA reduction by ZVI in the presence of nitrate mainly by inhibiting nitrate reduction. The shift in selectivity of ZVI for NDMA over nitrate upon sulfidation was due to replacement of Fe0/FexOy surface sites with FeS.
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U2 - 10.1021/acs.est.9b02419
DO - 10.1021/acs.est.9b02419
M3 - Article
C2 - 31343874
AN - SCOPUS:85070938103
SN - 0013-936X
VL - 53
SP - 9744
EP - 9754
JO - Environmental Science and Technology
JF - Environmental Science and Technology
IS - 16
ER -