- Ph. D: Georgia Institute of Technology (Environmental Engineering)
- M.S.: Georgia Institute of Technology (Environmental Engineering)
- B.S.: Carnegie Mellon University (Civil Engineering )
- Email balachsm@ucmail.uc.edu
Krall, J.R., Mulholland, J. A.; Russell, A.G., Balachandran, S., Winquist, A., Tolbert, P.E., Waller, L.A., Sarnat, S.E 2016. Associations between source-apportioned particulate matter and emergency department visits for respiratory disease in four US cities Environmental Health Perspectives, ,
Gass, K, Balachandran, S., Chang, H., Russell, A.G., Strickland, M.J 2015. Ensemble-based source apportionment of fine particulate matter and pediatric asthma emergency department visits American Journal of Epidemiology, 181 7, 504-512
Hu, Y.; Balachandran, S.; Pachon, J.; Baek, J.; Odman, M. T.; Mulholland, J. A.; Russell, A. G 2014. Fine particulate matter source apportionment using a hybrid chemical transport and receptor model approach Atmos. Chem. Phys, 14 , 5415-5431
Oakes, M.M., Baxter, L.K., Duvalle, R., Madden, M., Xie, M., Hannigan, M., Peel, J., Pachon, J.E., Balachandran, S., Russell, A.G., Long, T.C 2014. Comparing Multipollutant Emissions-based Mobile Source Indicators to Other Single Pollutant and Multipollutant Indicators in Different Urban Areas International Journal of Environmental Research and Public Health, 11 , 11727-11752
Balachandran, S.; Chang, H.; Pachon, J. E.; Holmes, H. A.; Mulholland, J. A.; Russell, A. G 2013. A Bayesian – based ensemble technique for source apportionment of PM2.5 Environmental Science and Technology, 47 23, 13511-8
Balachandran, S.; Pachon, J. E.; Lee, S.; Oakes, M. M.; Rastogi, N.; Shi, W.; Tagaris, E.; Yan, B.; Yano, A.; Zhang, X.; Weber, R. J.; Bergin, M. H.; Mulholland, J. A.; Zheng, M.; Russell, A. G 2013. Particulate and gas sampling of a prescribed fire in south Georgia, USA Atmospheric Environment, 81 , 125-135
Maier, M. L.; Balachandran, S.; Sarnat, S. E.; Turner, J. R.; Mulholland, J. A.; Russell, A. G 2013. Application of an ensemble-trained source apportionment approach at a site impacted by multiple point sources Environmental Science and Technology , 47 8, 3743-3751
Balachandran, S.; Pachon, J. E.; Hu, Y.; Lee, D.; Mulholland, J. A.; Russell, A. G 2012. Ensemble-trained source apportionment of fine particulate matter and method uncertainty analysis Atmospheric Environment , 61 , 387-394
Pachon, J. E.; Balachandran, S.; Hu, Y. T.; Mulholland, J. A.; Darrow, L. A.; Sarnat, J. A.; Tolbert, P. E.; Russell, A. G 2012. Development of outcome-based, multipollutant mobile source indicators Journal of the Air & Waste Management Association , 62 4, 431-442
Pachon, J. E.; Balachandran, S.; Hu, Y. T.; Weber, R. J.; Mulholland, J. A.; Russell, A. G 2010. Comparison of SOC estimates and uncertainties from aerosol chemical composition and gas phase data in Atlanta Atmospheric Environment , 44 32, 3907-3914
Lee, D.; Balachandran, S.; Pachon, J.E.; Shankaran, R.; Lee, S.; Mulholland, J. A.; Russell, A. G 2009. Ensemble-Trained PM2.5 Source Apportionment Approach for Health Studies Environmental Science & Technology , 43 18, 7023-7031
Hillamo, R. E.; Kerminen, V. M.; Maenhaut, W.; Jaffrezo, J. L.; Balachandran, S.; Davidson, C. I 1993. Distributions of atmospheric trace-elements at Dye-3, Greenland. 1. Distribution characteristics and dry deposition velocities Atmospheric Environment Part a-General Topics , 27 17-18, 2787-2802