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1) Kang, H., Xie, Z. Q.*, Hu, Q. H. (2012) Ambient protein concentration in PM10 in Hefei City, central China. Atmospheric Environment, 54, 73-79.
2)Hu, Q. H., Xie, Z. Q.*, Wang, X. M., Kang, H., He, Q. F. and Zhang, P.F. (2013) Secondary organic aerosols over oceans via oxidation of isoprene and monoterpenes from Arctic to Antarctic. Scientific Reports, 2280.
3) Hu, Q. H., Xie, Z. Q.*, Wang, X. M., Kang, H. and Zhang, P.F. (2013) Levoglucosan indicates high levels of biomass burning aerosols over oceans from the Arctic to Antarctic. Scientific Reports, 3119.
4) Yu, J., Hu, Q., Xie, Z. Q.*, Kang, H., Li, M., Li, Z., Ye, P. P. (2013) Concentration and Size Distribution of Fungi Aerosol over Oceans along a Cruise Path during the Fourth Chinese Arctic Research Expedition. , 4, 337-348.
5) Yu, J., Xie, Z. Q.*, Kang, H., Li, Z., Sun, C., Bian, L.G., Zhang, P.F. (2014) High variability of atmospheric mercury in the summertime boundary layer through the central Arctic Ocean. Scientific Reports,4, 6091.
6) Hu, Q. H., Kang, H., Li, Z., Wang, Y. S., Ye, P. P., Zhang, L. L., Yu, J., Yu, X. W., Sun, C., Xie, Z. Q.* (2014) Total gaseous mercury and particle mercury in ambient air in Hefei City, central China. Atmospheric Pollution Research, 5, 769-778.
7) Wu, X.G., Lam, J.C.W., Xia, C.H., Kang, H., Xie, Z. Q.*, Lam, P.K.S. (2014) Atmospheric hexachlorobenzene determined during the third China arctic research expedition: Sources and environmental fate. Atmospheric Pollution Research, 5, 477-483.
8) Yu, J., Xie, Z. Q.*, Kang, H., Li, Z., Sun, C., Bian, L.G., Zhang, P.F. (2014) High variability of atmospheric mercury in the summertime boundary layer through the central Arctic Ocean. Scientific Reports, 4, 6091.
9)Hu, Q.H., Kang, H., Li, Z., Wang, Y.S., Ye, P.P., Zhang, L.L., Yu, J., Yu, X.W., Sun, C., Xie, Z.Q.* (2014) Characterization of atmospheric mercury at a suburban site of central China from wintertime to springtime. Atmospheric Pollution Research, 5, 769-778.
10) Kang, H., Xu, S.Q., Yu, X.W., Li, B., Liu, W., Yang, H., Xie, Z.Q. * (2015). Iodine speciation in aerosol particle samples collected over the sea between offshore China and the Arctic Ocean. Advances in Polar Science, 26, 215-221.
11) Yu, J., Xie, Z. Q. *, Sun, L., Kang, H., He, P.Z.,Xing, G. X. (2015) δ13C-CH4 reveals CH4 variations over oceans from mid-latitudes to the Arctic. Scientific reports, 5, 13760.
12) Ye, P.P., Xie, Z.Q.*, Yu, J., Kang, H. (2015) Spatial Distribution of Methanesulphonic Acid in the Arctic Aerosol Collected during the Chinese Arctic Research Expedition. Atmosphere, 6(5), 699-712.
13)Liu, H.R., Xie, Z. Q. *, Ye, P.P., Kang, H., Xu, S. Q. (2015) Methanesulphonic acid in aerosols along a cruise path from China to the Arctic Ocean: Spatial and temporal distributions and link with iodine. Advances in Polar Science, 26, 222-231.
14) Sun, C., Xie, Z. Q.*, Kang, H., Yu, J. (2015) Phosphorus in the aerosols over oceans transported offshore from China to the Arctic Ocean: Speciation, spatial distribution, and potential sources. Advances in Polar Science, 26, 232-238.
15)Hong, Q.Q., Xie Z.Q.*, Liu, C., Wang, F.Y., Xie, P.H., Kang, H., Xu, J., Wang, J.C., Wu, F.C., He, P.Z., Mou, F.S., Fan, S.D., Dong, Y.S., Zhan, H.C., Yu, X.W.,Chi, X.Y., Liu, J.G. (2016) Speciated Atmospheric Mercury during Haze and Non-haze Days in an Inland City in China. Atmospheric Chemistry and Physics, 16, 13807–13821.
16) Chen, Q. J., Geng, L., SchmidtJohan A, Xie, Z.Q., Kang, H., Dachs Jordi, Dai, J.H., Schauer Andrew J, Camp Madeline G, Alexander Becky (2016) Isotopic constraints on the role of hypohalous acids in sulfate aerosol formation in the remote marine boundary layer. Atmospheric Chemistry and Physics, 16, 11433–11450.
17)Li, M., Yu, X.W., Kang, H., Xie, Z.Q. *, Zhang, P.F. (2017) Concentrations and Size Distributions of Bacteria-Containing Particles over Oceans from China to the Arctic Ocean. Atmosphere, 8, 82.
18) Wang, J.C., Xie, Z.Q. *, Wang, F.Y., Kang, H.. (2017) Gaseous elemental mercury in the marine boundary layer and air-sea flux in the Southern Ocean in austral summer. Science of the Total Environment, 603, 510–518.
19) He, P.Z., Becky Alexander, Geng, L., Chi, X.Y., Fan, S.D., Zhan, H.C., Kang, H., Zheng, G.J., Cheng, Y.F., Su, H., Liu, C., Xie, Z.Q.*. (2018) Isotopic constraints on heterogeneous sulfate production in Beijing haze. Atmospheric Chemistry and Physics, 18(8), 5515-5528.
20)He, P.Z., Xie, Z.Q.*, Chi, X.Y., Yu, X.W., Fan, S.D., Kang, H., Liu, C., Zhan, H.C. (2018) Atmospheric Delta O-17(NO3-) reveals nocturnal chemistry dominates nitrate production in Beijing haze. Atmospheric Chemistry and Physics, 18, 14465-14476.
21)Hu, Q.H., Xie, Z.Q.*, Wang, X.M., Kang, H., Zhang, Y.Q., Ding, X., Zhang, P.F. (2018) Monocarboxylic and dicarboxylic acids over oceans from the East China Sea to the Arctic Ocean: Roles of ocean emissions, continental input and secondary formation. Science of the Total Environment, 640–641, 284–292.
22) Chi, X.Y., He, P.Z., Jiang, Z., Yu, X.W., Yue, F.G., Wang, L.Q., Li, B.K., Kang, H., Liu, C., Xie, Z.Q.*. Aerosol Acidity during Winter Heavy Haze Episodes in Beijing and Gucheng, China. Journal of Meteorological Research, 32(1): 14-25.
23) Yue, F.G., Xie, Z.Q.*, Zhang, P.F.**, Song, S.J., He, P.Z., Liu, C., Wang, L.Q., Yu, X.W., Kang, H. (2019) The role of sulfate and its corresponding S(IV)+NO2 formation pathway during the evolution of haze in Beijing. Science of the Total Environment, 687, 741–751.