Ravi Kant Pathak
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Summertime PM2.5 ionic species in four major cities of China: nitrate formation in an ammonia-deficient atmosphere
RK Pathak, WS Wu, T Wang
Atmospheric Chemistry and Physics 9 (5), 1711-1722, 2009
Aerosol volatility measurement using an improved thermodenuder: Application to secondary organic aerosol
WJ An, RK Pathak, BH Lee, SN Pandis
Journal of Aerosol Science 38 (3), 305-314, 2007
Ozonolysis of α‐pinene at atmospherically relevant concentrations: Temperature dependence of aerosol mass fractions (yields)
RK Pathak, CO Stanier, NM Donahue, SN Pandis
Journal of Geophysical Research: Atmospheres 112 (D3), 2007
Characteristics of summertime PM2. 5 organic and elemental carbon in four major Chinese cities: Implications of high acidity for water-soluble organic carbon (WSOC)
RK Pathak, T Wang, KF Ho, SC Lee
Atmospheric Environment 45 (2), 318-325, 2011
Ozonolysis of?-pinene: parameterization of secondary organic aerosol mass fraction
RK Pathak, AA Presto, TE Lane, CO Stanier, NM Donahue, SN Pandis
An algorithm for the calculation of secondary organic aerosol density combining AMS and SMPS data
E Kostenidou, RK Pathak, SN Pandis
Aerosol science and technology 41 (11), 1002-1010, 2007
Gas-particle and inter-particle interaction in the sampling artifact of PM2.5
RK Pathak, CK Chan
Atmospheric Environment 39, 1597-1607, 2005
Sampling artifacts of acidity and ionic species in PM2. 5
RK Pathak, X Yao, CK Chan
Environmental science & technology 38 (1), 254-259, 2004
Measurements of the volatility of aerosols from α-pinene ozonolysis
CO Stanier, RK Pathak, SN Pandis
Environmental science & technology 41 (8), 2756-2763, 2007
Acidity and concentrations of ionic species of PM2. 5 in Hong Kong
RK Pathak, X Yao, AKH Lau, CK Chan
Atmospheric Environment 37 (8), 1113-1124, 2003
Characteristics of aerosol acidity in Hong Kong
RK Pathak, PKK Louie, CK Chan
Atmospheric Environment 38 (19), 2965-2974, 2004
Nighttime enhancement of PM2. 5 nitrate in ammonia-poor atmospheric conditions in Beijing and Shanghai: Plausible contributions of heterogeneous hydrolysis of N2O5 and HNO3 …
RK Pathak, T Wang, WS Wu
Atmospheric environment 45 (5), 1183-1191, 2011
Constraining particle evolution from wall losses, coagulation, and condensation-evaporation in smog-chamber experiments: optimal estimation based on size distribution measurements
JR Pierce, GJ Engelhart, L Hildebrandt, EA Weitkamp, RK Pathak, ...
Aerosol Science and Technology 42 (12), 1001-1015, 2008
Evidence of high PM2. 5 strong acidity in ammonia-rich atmosphere of Guangzhou, China: transition in pathways of ambient ammonia to form aerosol ammonium at [NH4+]/[SO42–]= 1.5
X Huang, R Qiu, CK Chan, PR Kant
Atmospheric Research 99 (3-4), 488-495, 2011
Comparison among filter-based, impactor-based and continuous techniques for measuring atmospheric fine sulfate and nitrate
W Nie, T Wang, X Gao, RK Pathak, X Wang, R Gao, Q Zhang, L Yang, ...
Atmospheric Environment 44 (35), 4396-4403, 2010
Impact of the 0.1% fuel sulfur content limit in SECA on particle and gaseous emissions from marine vessels
M Zetterdahl, J Moldanova, X Pei, RK Pathak, B Demirdjian
Atmospheric Environment 145, 338-345, 2016
Contribution of brown carbon to direct radiative forcing over the Indo-Gangetic Plain
PM Shamjad, SN Tripathi, R Pathak, M Hallquist, A Arola, MH Bergin
Environmental Science & Technology 49 (17), 10474-10481, 2015
Ozonolysis of β-pinene: temperature dependence of secondary organic aerosol mass fraction
R Pathak, NM Donahue, SN Pandis
Environmental science & technology 42 (14), 5081-5086, 2008
Photochemical smog in China: scientific challenges and implications for air-quality policies
M Hallquist, J Munthe, M Hu, T Wang, CK Chan, J Gao, J Boman, S Guo, ...
National Science Reviews 3 (4), 401-403, 2016
Characterization of organic nitrate constituents of secondary organic aerosol (SOA) from nitrate-radical-initiated oxidation of limonene using high-resolution chemical …
C Faxon, J Hammes, M Le Breton, RK Pathak, M Hallquist
Atmos. Chem. Phys 18 (8), 5467-5481, 2018
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