Publications

[16] Laboratory measurements of the oxidation kinetics of organic aerosol mixtures using a relative rate constants approach, Kara E. Huff Hartz, Emily Weitkamp, Amy M. Sage, Neil M. Donahue, and Allen L. Robinson, Journal of Geophysical Research, 2007, 112, D04204.

[15] Secondary organic aerosol from limona ketone: Insights into terpene ozonolysis via synthesis of key intermediates, Neil M. Donahue, Joshua E. Tischuk, Bryce J. Marquis, Kara E. Huff Hartz, Physical Chemistry Chemical Physics, 2007, 9, 2991-2998.

[14] Secondary organic aerosol formation from limonene ozonolysis: homogeneous and heterogeneous influences as a function of NOx, Jieyuan Zhang, Kara E. Huff Hartz, Spyros N. Pandis, and Neil M. Donahue, Journal of Physical Chemistry A, 2006, 110, 11053-11063.

[13] Cloud condensation nuclei activation of limited-solubility organic aerosol, Kara E. Huff Hartz, Joshua E. Tischuk, Man Nin Chan, Chak K. Chan, Neil M. Donahue, Spyros N. Pandis, Atmospheric Environment, 2006, 40, 605-617.

[12] Cloud condensation nuclei activation of monoterpene and sesquiterpene secondary organic aerosol, Kara E. Huff Hartz, Thomas Rosenorn, Timothy M. Raymond, Shaun R. Ferchak, Merete Bilde, Neil M. Donahue, Spyros N. Pandis, Journal of Geophysical Research, 2005, 110(D14) D14307.

[11] Critical factors determining the variation in SOA yields from terpene ozonolysis: a combined experimental and computations study,Neil M. Donahue, Kara E. Huff Hartz, Bao Chuong, Albert A. Presto, Charles O. Stanier, Thomas Rosenorn, Allen L. Robinson, Spyros N. Pandis, Faraday Discussions, 2005, 130, 295-309.

[10] Competitive oxidation in atmospheric aerosols: the case for relative kinetics, Neil M. Donahue, Allen R. Robinson, Kara E. Huff Hartz, Amy M Sage, Emily Weitkamp, Geophysical Research Letters, 2005, L16805.

[9] SOA production from terpene ozonolysis: 1. effect of UV radiation, Albert A. Presto, Kara E. Huff Hartz, Neil M. Donahue, Environmental Science & Technology, 2005, 39, 7036-7045.

[8] SOA production from terpene ozonolysis: 2. effect of NOx concentration, Albert A. Presto, Kara E. Huff Hartz, Neil M. Donahue, Environmental Science & Technology, 2005, 39, 7046-7054.

[7] Kinetics and mechanisms of bromine chloride reactions with bromite and chlorite ions, Ihab N. Odeh, Jeffrey S. Nicoson, Kara E. Huff Hartz, and Dale W. Margerum, Inorganic Chemistry, 2004, 43, 7412-7420.

[6] Comment on Kinetics and mechanism of nitrite oxidation by HOBr/BrO- in atmospheric water and comparison with oxidation by HOCl/ClO-, Robert H. Becker, Kara E. Huff Hartz, and Dale W. Margerum, Journal of Physical Chemistry , 2004, 108, 10615-10616.

[5] Kinetics and mechanisms of S(IV) reductions of bromite and chlorite ions, Kara E. Huff Hartz, Jeffery S. Nicoson, Lu Wang, Dale W. Margerum, Inorganic Chemistry, 2003, 42, 78-87.

[4] Kinetics and mechanisms of the reactions of hypochlorous acid, chlorine, and chlorine monoxide with bromite ion, Jeffrey S. Nicoson, Thomas F. Perrone, Kara E. Huff Hartz, Lu Wang, and Dale W. Margerum, Inorganic Chemistry, 2003, 42, 5818-5824.

[3] Role of halogen(I) cation-transfer mechanisms in water chlorination in the presence of bromide ion, Dale W. Margerum and Kara E. Huff Hartz, Journal of Environmental Monitoring, 2002, 4, 20-26.

[2] Bromite ion catalysis of the disproportionation reactions of chlorine dioxide: role of nucleophiles in the redox reaction between ClO2 and BrO2, Lu Wang, Jeffrey S. Nicoson, Kara E. Huff Hartz, Joseph S. Francisco, and Dale W. Margerum, Inorganic Chemistry, 2002, 41, 108-113.

[1] Kinetics and mechanisms of ozone/bromite and ozone/chlorite reactions, Jeffrey S. Nicoson, Lu Wang, Robert H. Becker, Kara E. Huff Hartz, Charles E. Muller, Joseph S. Francisco, and Dale W. Margerum, Inorganic Chemistry, 2002, 41, 2975-2980.

 

Manuscripts in Progress

 

[1] Measurement of organic aerosol aging by relative rates kinetics, Kara E. Huff Hartz, Emily Weitkamp, Amy M. Sage, Allen L. Robinson, and Neil M. Donahue, Journal of Geophysical Research, in review.

[2] Secondary Organic Aerosol Formation from Terpene Ozonylsis: NO2 and Ultraviolet Effects Explored using Aerosol Mass Spectrometry, Jieyuan Zhang, Kara E. Huff Hartz, Ravi K. Pathak, Spyros N. Pandis, Neil M. Donahue, Environmental Science & Technology, in review.