Geoscience Reference
In-Depth Information
Sullivan RC, Petters MD, DeMott PJ, Kreidenweis SM, Wex H, Niedermeier D, Hartmann S,
Clauss T, Stratmann F, Reitz P, Schneider J, Sierau B (2010b) Irreversible loss of ice nucleation
active sites in mineral dust particles caused by sulphuric acid condensation. Atmos Chem Phys
10(23):11471-11487. doi: 10.5194/acp-10-11471-2010
Takemura T, Nozawa T, Emori S, Nakajima TY, Nakajima T (2005) Simulation of climate response
to aerosol direct and indirect effects with aerosol transport-radiation model. J Geophys Res 110,
D02202
Tobo Y, DeMott PJ, Raddatz M, Niedermeier D, Hartmann S, Kreidenweis SM, Stratmann F,
Wex H (2012) Impacts of chemical reactivity on ice nucleation of kaolinite particles:
a
case
study
of
levoglucosan
and
sulfuric
acid.
Geophys
Res
Lett
39(19),
L19803.
doi: 10.1029/2012gl053007
Topping D, Connolly P, McFiggans G (2013) Cloud droplet number enhanced by co-condensation
of organic vapours. Nat Geosci 6:443-446. doi: 10.1038/NGEO1809
Trochkine D, Iwasaka Y, Matsuki A, Yamada M, Kim Y-S, Nagatani T, Zhang D, Shi G-Y,
Shen Z (2003) Mineral aerosol particles collected in Dunhuang, China, and their compar-
ison to chemically modified particles collected over Japan. J Geophys Res 108(D23):8642.
doi: 10.1029/2002JD003268
Twohy CH, Kreidenweis SM, Eidhammer T, Browell EV, Heymsfield AJ, Bansemer AR,
Anderson BE, Chen G, Ismail S, DeMott PJ, Van Den Heever SC (2009) Saharan dust
particles
nucleate
droplets
in
eastern
Atlantic
clouds.
Geophys
Res
Lett
36,
L01807.
doi: 10.1029/2008GL035846
Twomey S (1977) The influence of pollution on the shortwave albedo of clouds. J Aerosol Sci
34:1149-1152
Vali G (1985) Nucleation terminology. Bull Am Meteorol Soc 66:1426
Vali G (1994) Freezing rate due to heterogeneous nucleation. J Atmos Sci 51:1843-1856
Vali G (2008) Repeatability and randomness in heterogeneous freezing nucleation. Atmos Chem
Phys 8(16):5017-5031
Van den Heever SC, Carrió GG, Cotton WR, DeMott PJ, Prenni AJ (2006) Impacts of nucleating
aerosol on Florida storms. Part I: mesoscale simulations. J Atmos Sci 63:1752-1775
Vlasenko A, Sjogren S, Weingartner E, Stemmler K, Gäggeler HW, Ammann M (2006) Effect
of humidity on nitric acid uptake to mineral dust aerosol particles. Atmos Chem Phys
6:2147-2160
Westbrook CD, Illingworth AJ (2013) The formation of ice in a long-lived supercooled layer cloud.
Q J R Meteorol Soc, n/a-n/a. doi: 10.1002/qj.2096
Wex H, DeMott PJ, Tobo Y, Hartmann S, Rösch M, Clauss T, Tomsche L, Niedermeier D,
Stratmann F (2013) Kaolinite particles as ice nuclei: learning from the use of different
types of kaolinite and different coatings. Atmos Chem Phys Discuss 13(11):30311-30348.
doi: 10.5194/acpd-13-30311-2013
Wheeler MJ, Bertram AK (2012) Deposition nucleation on mineral dust particles: a case against
classical nucleation theory with the assumption of a single contact angle. Atmos Chem Phys
12(2):1189-1201. doi: 10.5194/acp-12-1189-2012
Wise ME, Baustian KJ, Koop T, Freedman MA, Jensen EJ, Tolbert MA (2012) Depositional ice
nucleation onto crystalline hydrated NaCl particles: a new mechanism for ice formation in the
troposphere. Atmos Chem Phys 12(2):1121-1134. doi: 10.5194/acp-12-1121-2012
Woodcock AH (1950) Condensation nuclei and precipitation. J Meteorol 7:161-162
Wright TP, Petters MD (2013) The role of time in heterogeneous freezing nucleation. J Geophys
Res Atmos 118(9):3731-3743. doi: 10.1002/jgrd.50365
Wright TP, Petters MD, Hader JD, Morton T, Holder AL (2013) Minimal cooling rate dependence
of ice nuclei activity in the immersion mode. J Geophys Res Atmos 118(18):10535-10543.
doi: 10.1002/jgrd.50810
Xue H, Feingold G (2006) Large eddy simulations of trade wind cumuli: investigation of aerosol
indirect effects. J Atmos Sci 63:1605-1622
Yakobi-Hancock JD, Ladino LA, Abbatt JPD (2013) Feldspar minerals as efficient deposition ice
nuclei. Atmos Chem Phys 13(22):11175-11185. doi: 10.5194/acp-13-11175-2013
Search WWH ::




Custom Search