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Heinold B, Helmert J, Hellmuth O, Wolke R, Ansmann A, Marticorena B, Laurent B, Tegen I
(2007) Regional modeling of Saharan dust events using LM-MUSCAT: model description and
case studies. J Geophys Res 112, D11204. doi: 10.1029/2006JD007443
Herman JR, Barthia PK, Torres O, Hsu C, Seftor C, Celarier E (1997) Global distribution of UV-
absorbing aerosols from Nimbus 7/TOMS data. J Geophys Res 102(D14):16911-16922
Huneeus N, Schulz M, Balkanski Y, Griesfeller J, Kinne S, Prospero J, Bauer S, Boucher O, Chin
M, Dentener F, Diehl T, Easter R, Fillmore D, Ghan S, Ginoux P, Grini A, Horowitz L, Koch
D, Krol MC, Landing W, Liu X, Mahowald N, Miller RL, Morcrette J-J, Myhre G, Penner
JE, Perlwitz JP, Stier P, Takemura T, Zender C (2011) Global dust model intercomparison in
AeroCom phase I. Atmos Chem Phys 11:7781-7816. doi: 10.5194/acp-11-7781-2011
Jickells TD, An ZS, Andersen KK, Baker AR, Bergametti G, Brooks N, Cao JJ, Boyd PW, Duce
RA, Hunter KA, Kawahata H, Kubilay N, laRoche J, Liss PS, Mahowald N, Prospero JM,
Ridgwell AJ, Tegen I, Torres R (2005) Global iron connections between desert dust, ocean
biogeochemistry, and climate. Science 308(5718):67-71
Joussaume S (1990) Three-dimensional simulations of the atmospheric cycle of desert dust
particles using a general circulation model. J Geophys Res 95:1909-1941
Kang J-Y, Yoon S-C, Shao Y, Kim S-W (2011) Comparison of vertical dust flux by
implementing three dust emission schemes in WRF/Chem. J Geophys Res 116, D09202.
doi: 10.1029/2010JD014649
Kinne S, Schulz M, Textor C, Guibert S, Balkanski Y, Bauer S, Berntsen T, Berglen T, Boucher
O, Chin M, Collins W, Dentener F, Diehl T, Easter R, Feichter J, Fillmore D, Ghan S, Ginoux
P, Gong S, Grini A, Hendricks J, Herzog M, Horowitz L, Isaksen I, Iversen T, Kirkevåg A,
Kloster S, Koch D, Kristjansson JE, Krol M, Lauer A, Lamarque JF, Lesins G, Liu X, Lohmann
U, Montanaro V, Myhre G, Penner J, Pitari G, Reddy S, Seland O, Stier P, Takemura T, Tie X
(2006) An AeroCom initial assessment - optical properties in aerosol component modules of
global models. Atmos Chem Phys 6:1815-1834. doi: 10.5194/acp-6-1815-2006
Knippertz P, Deutscher C, Kandler K, Müller T, Schulz O, Schütz L (2007) Dust mobilization due
to density currents in the Atlas region: observations from the SAMUM 2006 field campaign.
J Geophys Res 112, D21109. doi: 10.1029/2007JD008774
Kok JF (2011) Does the size distribution of mineral dust aerosols depend on the wind speed at
emission? Atmos Chem Phys 11:10149-10156
Laurent B, Marticorena B, Bergametti G, Chazette P, Maignan F, Schmechtig C (2005). Simulation
of the mineral dust emission frequencies from desert areas of China and Mongolia using an
aerodynamic roughness length map derived from the POLDER/ADEOS 1 surface products.
J Geophys Res 110, D18S04. doi: 10.1029/2004JD005013
Laurent B, Marticorena B, Bergametti G, Mei F (2006) Modeling mineral dust emissions from
Chinese and Mongolian deserts. Global Planet Change 52(1-4):121-141
Laurent B, Tegen I, Heinold B, Schepanski K, Weinzierl B, Esselborn M (2010) A model study of
Saharan dust emissions and distributions during the SAMUM-1 campaign. J Geophys Res 115,
D21210. doi: 10.1029/2009JD012995
Leblanc M, Favreau G, Maley J, Nazoumou Y, Leduc C, Stagnitti F, van Oevelen PJ, Delclaux F,
Lemoalle J (2006) Reconstruction of Megalake Chad using Shuttle Radar Topographic Mission
data. Paleogeogr Paleoclimatol Paleoecol 239(1-2):16-27
Mahowald N, Kohfeld KE, Hansson M, Balkanski Y, Harrison SP, Prentice IC, Schulz M, Rohde
H (1999) Dust sources and deposition during the last glacial maximum and current climate: a
comparison of model results with paleodata from ice cores and marine sediments. J Geophys
Res 104:15895-16436
Mahowald NM, Baker AR, Bergametti G, Brooks N, Duce RA, Jickells TD, Kubilay N, Prospero
JM, Tegen I (2005) Atmospheric global dust cycle and iron inputs to the ocean. Global
Biogeochem Cycles 19(4), GB4025. doi: 10.1029/2004GB002402
Mahowald NM, Muhs DR, Levis S, Rasch PJ, Yoshioka M, Zender CS, Luo C (2006) Change in
atmospheric mineral aerosols in response to climate: last glacial period, preindustrial, modern,
and doubled carbon dioxide climates. J Geophys Res 111, D10202. doi: 10.1029/2005JD006653
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