STEPHEN M. GRIFFITH Project Assistant Professor

附加資訊

  • Education: Ph.D. Indiana University - Bloomington, 2013
  • email: Email住址會使用灌水程式保護機制。你需要啟動Javascript才能觀看它
  • Contact: 33663903

 

Publications (in reverse chronological order)

  • Chang, P.-K., Griffith, S. M., Chuang, H.-C., Chuang, K.-J., Wang, Y.-H., Chang, K.-E., Hsiao, T.-C., “Particulate Matter in a Motorcycle-Dominated Urban Area: Source Apportionment and Cancer Risk of Lung-Deposited Surface Area (LDSA) Concentrations,” J. Haz. Mat. (IF=14.224 [2021]), doi.org/10.1016/j.jhazmat.2021.128188, 427, 128188, 2022.
  • Nguyen, L. S. P., Nguyen, K. T., Griffith, S. M., Sheu, G.-R., Yen, M.-C., Chang, S.-C., Lin, N.-H., “Multi-scale temporal variations of atmospheric mercury distinguished by Hilbert-Huang transform (HHT) analysis reveals multiple ENSO links,” Env. Sci. & Tech. (IF=11.357 [2021]), doi.org/10.1021/acs.est.1c03819, 56, 2, 1423-1432, 2022.
  • Liu, W.-T., Liao, W.-C., Griffith, S. M., Chang, C.-C., Wu, Y.-C., Wang, C. H., Wang, J.-L., “Characterization of odorous industrial plumes by coupling fast and slow mass spectrometry techniques for volatile organic compounds,” Chemosphere (IF=8.943 [2021]), doi.org/10.1016/j.chemosphere.2022.135304, 304, 135304, 2022.
  • Pani, S. K., Lin, N.-H., Lee, C.-T., Griffith, S. M., Chang, J. H-W., Hsu, B.-J., “Insights into aerosol chemical composition and optical properties at Lulin Atmospheric Background Station (2862 m asl) during two contrasting seasons,” Sci. Tot. Env. (IF=10.753 [2021]), doi.org/10.1016/j.scitotenv.2022.155291, 834, 155291, 2022.
  • Kong, S. S.-K., Pani, S. K., Griffith, S. M., Ou-Yang, C.-F., Babu, S. R., Chuang, M.-T., Ooi, M. C. G., Huang, W.-S., Sheu, G.-R., Lin, N.-H., “Distinct transport mechanisms of East Asian dust and the impact on downwind marine and atmospheric environments,” Sci. Tot. Env. (IF=10.753 [2021]), doi.org/10.1016/j.scitotenv.2022.154255, 827, 154255, 2022.
  • Lin, T.-C., Chiueh, P.-T., Griffith, S. M., Liao, C.-C., Hsiao, T.-C., “Deployment of a mobile platform to characterize spatial and temporal variation of on-road fine particles in an urban area,” Env. Res. (IF=8.431 [2021]), doi.org/10.1016/j.envres.2021.112349, 204, 112349, 2022.
  • Nguyen, L. S. P., Chang, J. H.-W., Griffith, S. M., Hien, T. T., Kong, S. S.-K., Le, H. N., Huang, H.-Y., Sheu, G.-R., Lin, N.-H., “Trans-boundary air pollution in a Southeast Asian megacity: Case studies of the synoptic meteorological mechanisms and impacts on air quality,” Atmos. Poll. Res. (IF=4.831 [2021]), doi.org/10.1016/j.apr.2022.101366, 13, 4, 2022.
  • Huang, W.-S., Griffith, S. M.*, Lin, Y-C., Chen, Y.-C., Lee, C.-T., Chou, C. C.-K., Chuang, M.-T., Wang, S.-H., Lin, N.-H.*, “Satellite-based Emission Inventory Adjustments Improve Simulations of Long-Range Transport Events,” Aerosol Air Qual. Res. (IF=4.530 [2021]), doi.org/10.4209/aaqr.210121, 21, 210121, 2021.
  • Do, L. T. T., Griffith, S. M.*, Tseng, W.-T., Lin, N.-H.*, “Long-term trend of wintertime precipitation chemistry at a remote islet site influenced by anthropogenic emissions from continental East Asia,” Atmos. Env. (IF=5.755 [2021]), doi.org/10.1016/j.atmosenv.2021.118626, 262, 118626, 2021.
  • Jin, L., Griffith, S. M., Sun, Z., Yu, J. Z., Chan, W., “On the Flip Side of Mask Wearing: Increased Exposure to Volatile Organic Compounds and a Risk-Reducing Solution,” Env. Sci. & Tech. (IF=11.357 [2021]), doi.org/10.1021/acs.est.1c04591, 55, 20, 14095-14104, 2021.
  • Pani, S. K., Lee, C.-T., Griffith, S. M., Lin N.-H., “Humic-like substances (HULIS) in springtime aerosols at a high-altitude background station in the western North Pacific: Source attribution, abundance, and light absorption,” Sci. Tot. Env. (IF=10.753 [2021]), doi.org/10.1016/j.scitotenv.2021.151180, 809, 151180, 2021.
  • Babu, S. R., Nguyen, L. S. P., Sheu, G.-R., Griffith, S. M., Pani, S. K., Huang, H.-Y., Lin, N.-H., “Long-range transport of La Soufrière volcanic plume to the western North Pacific: Influence on atmospheric mercury and aerosol properties,” Atmos. Env. (IF=5.755 [2021]), doi.org/10.1016/j.atmosenv.2021.118806, 268, 118806, 2021.
  • Ou-Yang, C.-F., Babu, S. R., Lee, J.-R., Yen, M.-C., Griffith, S. M., Lin, C.-C., Chang, S.-C., Lin, N.-H., “Detection of stratospheric intrusion events and their role in ozone enhancement at a mountain background site in sub-tropical East Asia,” Atmos. Env. (IF=5.755 [2021]), doi.org/10.1016/j.atmosenv.2021.118779, 268, 118779, 2021.
  • Chan, W.*, Jin, L., Sun, Z., Griffith, S. M.*, Yu, J. Z.*, “Fabric Masks as a Personal Dosimeter for Quantifying Exposure to Airborne Polycyclic Aromatic Hydrocarbons,” Env. Sci. & Tech. (IF=11.357 [2021]), doi.org/10.1021/acs.est.0c08327, 55, 8, 5128-5135, 2021.
  • Pani, S. K., Lin, N.-H., Griffith, S. M., Chantara, S., Lee, C.-T., Thepnuan, D., Tsai, Y.-I., “Brown carbon light absorption over an urban environment in northern peninsular Southeast Asia,” Env. Poll. (IF=9.988 [2021]), doi.org/10.1016/j.envpol.2021.116735, 276, 116735, 2021.
  • Wang, Y.-C., Wang, S.-H., Lewis, J. R., Chang, S.-C., Griffith, S. M., “Determining planetary boundary layer height by micro-pulse lidar with validation by UAV measurements,” Aero. Air Qual. Res. (IF=4.530 [2021]), doi.org/10.4209/aaqr.200336, 21, 5, 2021.
  • Hansen, R. F., Griffith, S. M., Dusanter, S., Gilman, J. B., Graus, M., Kuster, W. C., Veres, P., de Gouw, J. A., Warneke, C., Washenfelder, R. A., Young, C. J., Brown, S. S., Alvarez, S. L., Flynn, J. H., Grossberg, N. E., Lefer, B., Rappenglueck, B., Stevens, P. S., “Measurements of Total OH Reactivity during CalNex-LA,” J. Geophys. Res. Atmos. (IF=5.217 [2021]), doi.org/10.1029/2020JD032988, 126, 11, 2021.
  • Kong, S. S.-K., Fu, J. S., Dong, X.-Y., Chuang, M.-T., Ooi, M. C. G., Huang, W.-S., Griffith, S. M., Lin, N.-H., “Sensitivity analysis of the dust treatment in CMAQ v5.2.1 and its application to long-range transport over East Asia,” Atmos. Env. (IF=5.755 [2021]), doi.org/10.1016/j.atmosenv.2021.118441, 257, 118441, 2021.
  • Griffith, S. M.*, Huang, W.-S., Lin, C.-C., Chen, Y.-C., Kuo, C.-E., Lin, T.-H., Wang, S.-H., Lin, N.-H.*, “Long-Range Air Pollution Transport in East Asia During the First Week of the COVID-19 Lockdown in China,” Sci. Tot. Env. (IF=10.753 [2021]), doi.org/10.1016/j.scitotenv.2020.140214, 741, 140214, 2020.
  • Zhou, Y., Zhang, Y., Griffith, S. M., Wu, G., Li, L., Zhao, Y., Li, M., Zhou, Z., Yu, J. Z., “Field Evidence of Fe-Mediated Photochemical Degradation of Oxalate and Subsequent Sulfate Formation Observed by Single Particle Mass Spectrometry,” Environ. Sci. Technol. (IF=11.357 [2021]), doi.org/10.1021/acs.est.0c00443, 54, 11, 6562-6574, 2020.
  • Hsiao, T. C., Chuang, H. C., Griffith, S. M., Chen, S. J., Young, L. H., “COVID-19: An Aerosol’s Point of View from Expiration to Transmission to Viral-Mechanism,” Aero. Air Qual. Res. (IF=4.530 [2021]), doi.org/10.4209/aaqr.2020.04.0154, 20, 5, 905-910, 2020.
  • Xue, J., Yu, X., Yuan, Z., Griffith, S. M., Lau, A.K.H., Seinfeld, J.H., & Yu, J. Z., “Efficient control of atmospheric sulfate production based on three formation regimes,” Nature Geosci. (IF=21.531 [2021]), doi.org/10.1038/s41561-019-0485-5, 12, 977-982, 2019.
  • Kuang, B., Yeung, H. S., Lee, C. C., Griffith, S. M., & Yu, J. Z., “Aromatic formulas in ambient PM2.5 samples from Hong Kong determined using FT-ICR ultrahigh-resolution mass spectrometry,” Analyt. and Bioanal. Chem. (IF=4.478 [2021]), doi.org/10.1007/s00216-018-1239-8, 410, 24, 6289-6304, 2018.
  • Wang, Q., Qiao, L., Zhou, M., Zhu, S., Griffith, S., Li, L., & Yu, J. Z., “Source Apportionment of PM2.5 Using Hourly Measurements of Elemental Tracers and Major Constituents in an Urban Environment: Investigation of Time-Resolution Influence,” J. Geophys. Res. Atmos. (IF=5.217 [2021]), doi.org/10.1029/2017JD027877, 123, 2018.
  • de Gouw, J. A., Gilman, J. B., Kim, S.-W., Alvarez, S. L., Dusanter, S., Graus, M., Griffith, S. M., Isaacman-VanWertz, G., Kuster, W. C., Lefer, B., Lerner, B., McDonald, B. C., Rappenglueck, B., Roberts, J. M., Stevens, P. S., Stutz, J., Thalman, R., Veres, P., Volkamer, R., Warneke, C., Washenfelder, R. A., Young, C. J., “Chemistry of Volatile Organic Compounds in the Los Angeles Basin: Formation of Oxygenated Compounds and Determination of Emission Ratios,” J. Geophys. Res. Atmos. (IF=5.217 [2021]), doi.org/10.1002/2017JD027976, 123, 4, 2298-2319, 2018.
  • Wang, Q., Xiao, H., Huang, X. H., Griffith, S. M., Feng, Y., Zhang, T., Zhang, Q., Wu, D., & Yu, J. Z., “Impact of Secondary Organic Aerosol Tracers on Tracer-Based Source Apportionment of Organic Carbon and PM2.5: A Case Study in the Pearl River Delta, China,” ACS Earth and Space Chemistry (IF=3.556 [2021]), doi.org/10.1021/acsearthspacechem.7b00088, 1(9), 2017.
  • Li, Y., Huang, H. X., Griffith, S. M., Wu, C., Lau, A. K., & Yu, J. Z., “Quantifying the relationship between visibility degradation and PM 2.5 constituents at a suburban site in Hong Kong: Differentiating contributions from hydrophilic and hydrophobic organic compounds,” Sci. Tot. Env. (IF=10.753 [2021]), doi.org/10.1016/j.scitotenv.2016.10.082, 575, 1571-1581, 2017.
  • Griffith, S. M., Hansen, R. F., Dusanter, S., Michoud, V., Gilman, J. B., Kuster, W. C., Veres, P. R., Graus, M., de Gouw, J. A., Roberts, J., Young, C., Washenfelder, R., Brown, S. S., Thalman, R., Waxman, E., Volkamer, R., Tsai, C., Stutz, J. Flynn, J. H., Grossberg, N., Lefer, B., Alvarez, S. L., Rappenglueck, B., Mielke, L. H., Osthoff, H. D., Stevens, P. S., “Measurements of Hydroxyl and Hydroperoxy Radicals during CalNex-LA 2010: Model Comparisons and Radical Budgets,” J. Geophys. Res. Atmos. (IF=5.217 [2021]), doi.org/10.1002/2015JD024358, 121, 2016.
  • Wang, Q., Feng, Y., Huang, X. H., Griffith, S. M., Zhang, T., Zhang, Q., & Yu, J. Z., “Nonpolar organic compounds as PM2.5 source tracers: Investigation of their sources and degradation in the Pearl River Delta, China,” J. of Geophys. Res. Atmos. (IF=5.217 [2021]), doi.org/10.1002/2016JD025315, 121(19), 2016.
  • Wu, C., Huang, X. H., Ng, W.M., Griffith, S. M., & Yu, J.Z., “Inter-comparison of NIOSH and IMPROVE protocols for OC and EC determination: implications for inter-protocol data conversion,” Atmos. Meas. Tech. (IF=4.184 [2021]), doi.org/10.5194/amt-9-4547-2016, 9(9), 4547, 2016.
  • Xue, J., Yuan, Z., Griffith, S. M., Yu, X., Lau, A. K., & Yu, J. Z., “Sulfate Formation Enhanced by a Cocktail of High NO x, SO2, Particulate Matter, and Droplet pH during Haze-Fog Events in Megacities in China: An Observation-Based Modeling Investigation” Env. Sci. Tech. (IF=11.357 [2021]), doi.org/10.1021/acs.est.6b00768, 50(14), 7325-7334, 2016.
  • Zhou, Y., Huang, X. H., Griffith, S. M., Li, M., Li, L., Zhou, Z., & Yu, J. Z., “A field measurement based scaling approach for quantification of major ions, organic carbon, and elemental carbon using a single particle aerosol mass spectrometer,” Atmos. Env. (IF=5.755 [2021]), doi.org/10.1016/j.atmosenv.2016.08.054, 143, 300-312, 2016.
  • Griffith, S. M., Huang, X. H. H., Louie, P. K. K., Yu, J. Z., “Characterizing the thermodynamic and chemical composition factors controlling PM2.5 nitrate: Insights gained from two years of online measurements in Hong Kong,” Atmos. Env. (IF=5.755 [2021]), doi.org/10.1016/j.atmosenv.2015.02.009, 122, 864-875, 2015.
  • Zhou, Y., Huang, X. H. H., Bian, Q. J., Griffith, S. M., Louie, P. K. K., Yu, J. Z., “Sources and atmospheric processes impacting oxalate at a suburban coastal site in Hong Kong: Insights inferred from 1 year hourly measurements,” J. Geophys. Res. Atmos. (IF=5.217 [2021]), doi.org/10.1002/2015JD023531, 120, 18, 9772-9788, 2015.
  • Xue, J., Griffith, S. M., Yu, X., Lau, A. K. H., Yu, J. Z., “Effect of nitrate and sulfate relative abundance in PM2.5 on liquid water content explored through half-hourly observations of inorganic soluble aerosols at a polluted receptor site,” Atmos. Env. (IF=5.755 [2021]), doi.org/10.1016/j.atmosenv.2014.09.049, 99, 24-31, 2014.
  • Hansen, R. F., Griffith, S. M., Dusanter, S., Rickly, P. S., Stevens, P. S., Bertman, S. B., Carroll, M. A., Erickson, M. H., Flynn, J. H., Grossberg, N., Jobson, B. T., Lefer, B. L., Wallace, H. W., “Measurements of total hydroxyl radical reactivity during CABINEX 2009 – Part 1: field measurements,” Atmos. Chem. Phys. (IF=7.197 [2021]), doi.org/10.5194/acp-14-2923-2014,14, 6, 2923-2937, 2014.
  • Griffith, S. M.*, Hansen, R. F., Dusanter, S., Stevens, P. S., Alaghmand, M., Bertman, S., Carroll, M. A., Erickson, M., Galloway, M., Grossberg, N., Hottle, J., Hou, J., Jobson, B. T., Kammrath, A., Keutsch, F. N., Lefer, B. L., Mielke, L. H., O’Brien, A., Shepson, P. B., Thurlow, M., Wallace, W., Zhang, N., Zhou, X. L., “OH and HO2 radical chemistry during PROPHET 2008 and CABINEX 2009 – Part 1: Measurements and model comparison,” Atmos. Chem. Phys. (IF=7.197 [2021]), doi.org/10.5194/acp-13-5403-2013, 13, 11, 5403-5423, 2013.
  • Pratt, K. A., Mielke, L. H., Shepson, P. B., Bryan, A. M., Steiner, A. L., Ortega, J., Daly, R., Helmig, D., Vogel, C. S., Griffith, S., Dusanter, S., Stevens, P. S., Alaghmand, M., “Contributions of individual reactive biogenic volatile organic compounds to organic nitrates above a mixed forest,” Atmos. Chem. Phys. (IF=7.197 [2021]), doi.org/10.5194/acp-12-10125-2012  12, 21, 10125-10143, 2012.
  • Zhou, X, Zhang, N., TerAvest, M., Tang, D., Hou, J., Bertman, S., Alaghmand, M., Shepson, P. B., Carroll, M. A., Griffith, S., Dusanter, S., Stevens, P. S., “Nitric acid photolysis on forest canopy surface as a source for tropospheric nitrous acid,” Nature Geoscience (IF=21.531 [2021]), doi.org/10.1038/ngeo1164, 4, 7, 440-443, 2011.