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Rima Baalbaki
Rima Baalbaki
Email verificata su helsinki.fi
Titolo
Citata da
Citata da
Anno
Effects of user puff topography, device voltage, and liquid nicotine concentration on electronic cigarette nicotine yield: measurements and model predictions
S Talih, Z Balhas, T Eissenberg, R Salman, N Karaoghlanian, A El Hellani, ...
Nicotine & Tobacco Research 17 (2), 150-157, 2015
3902015
Nicotine and carbonyl emissions from popular electronic cigarette products: correlation to liquid composition and design characteristics
A El-Hellani, R Salman, R El-Hage, S Talih, N Malek, R Baalbaki, ...
Nicotine and Tobacco Research 20 (2), 215-223, 2018
2062018
Rapid growth of new atmospheric particles by nitric acid and ammonia condensation
M Wang, W Kong, R Marten, XC He, D Chen, J Pfeifer, A Heitto, ...
Nature 581 (7807), 184-189, 2020
2052020
Free-base and protonated nicotine in electronic cigarette liquids and aerosols
A El-Hellani, R El-Hage, R Baalbaki, R Salman, S Talih, A Shihadeh, ...
Chemical research in toxicology 28 (8), 1532-1537, 2015
1362015
Role of iodine oxoacids in atmospheric aerosol nucleation
XC He, YJ Tham, L Dada, M Wang, H Finkenzeller, D Stolzenburg, S Iyer, ...
Science 371 (6529), 589-595, 2021
1192021
Oxidative potential and chemical speciation of size-resolved particulate matter (PM) at near-freeway and urban background sites in the greater Beirut area
N Daher, NA Saliba, AL Shihadeh, M Jaafar, R Baalbaki, MM Shafer, ...
Science of the Total Environment 470, 417-426, 2014
1032014
Is reducing new particle formation a plausible solution to mitigate particulate air pollution in Beijing and other Chinese megacities?
M Kulmala, L Dada, KR Daellenbach, C Yan, D Stolzenburg, J Kontkanen, ...
Faraday Discussions 226, 334-347, 2021
902021
Molecular understanding of new-particle formation from α-pinene between −50 and +25 °C
M Simon, L Dada, M Heinritzi, W Scholz, D Stolzenburg, L Fischer, ...
Atmospheric Chemistry and Physics 20 (15), 9183-9207, 2020
812020
Enhanced growth rate of atmospheric particles from sulfuric acid
D Stolzenburg, M Simon, A Ranjithkumar, A Kürten, K Lehtipalo, ...
Atmospheric Chemistry and Physics 20 (12), 7359-7372, 2020
732020
Detection of 5-hydroxymethylfurfural and furfural in the aerosol of electronic cigarettes
S Soussy, ELH Ahmad, R Baalbaki, R Salman, A Shihadeh, NA Saliba
Tobacco control 25 (Suppl 2), ii88-ii93, 2016
662016
The synergistic role of sulfuric acid, bases, and oxidized organics governing new‐particle formation in Beijing
C Yan, R Yin, Y Lu, L Dada, D Yang, Y Fu, J Kontkanen, C Deng, ...
Geophysical Research Letters 48 (7), e2020GL091944, 2021
642021
Formation and growth of sub-3-nm aerosol particles in experimental chambers
L Dada, K Lehtipalo, J Kontkanen, T Nieminen, R Baalbaki, L Ahonen, ...
Nature protocols 15 (3), 1013-1040, 2020
642020
Molecular understanding of the suppression of new-particle formation by isoprene
M Heinritzi, L Dada, M Simon, D Stolzenburg, AC Wagner, L Fischer, ...
Atmospheric Chemistry and Physics 20 (20), 11809-11821, 2020
612020
A proxy for atmospheric daytime gaseous sulfuric acid concentration in urban Beijing
Y Lu, C Yan, Y Fu, Y Chen, Y Liu, G Yang, Y Wang, F Bianchi, B Chu, ...
Atmospheric Chemistry and Physics 19 (3), 1971-1983, 2019
552019
Chemical composition of size-resolved particulate matter at near-freeway and urban background sites in the greater Beirut area
N Daher, NA Saliba, AL Shihadeh, M Jaafar, R Baalbaki, C Sioutas
Atmospheric environment 80, 96-106, 2013
542013
The driving factors of new particle formation and growth in the polluted boundary layer
M Xiao, CR Hoyle, L Dada, D Stolzenburg, A Kürten, M Wang, ...
Atmospheric Chemistry and Physics Discussions 2021, 1-28, 2021
512021
Sources and sinks driving sulfuric acid concentrations in contrasting environments: implications on proxy calculations
L Dada, I Ylivinkka, R Baalbaki, C Li, Y Guo, C Yan, L Yao, N Sarnela, ...
Atmospheric Chemistry and Physics 20 (20), 11747-11766, 2020
472020
Molecular composition and volatility of nucleated particles from α-pinene oxidation between− 50 C and+ 25 C
Q Ye, M Wang, V Hofbauer, D Stolzenburg, D Chen, M Schervish, A Vogel, ...
Environmental science & technology 53 (21), 12357-12365, 2019
382019
Synergistic HNO3–H2SO4–NH3 upper tropospheric particle formation
M Wang, M Xiao, B Bertozzi, G Marie, B Rörup, B Schulze, R Bardakov, ...
Nature 605 (7910), 483-489, 2022
332022
Exposure to atmospheric PMs, PAHs, PCDD/Fs and metals near an open air waste burning site in Beirut
R Baalbaki, R El Hage, J Nassar, J Gerard, NB Saliba, R Zaarour, ...
Lebanese Science Journal 17 (2), 91-103, 2016
322016
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