Mineral Dust
Author:
Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/978-3-030-56787-3_4
Reference116 articles.
1. Albani S, Balkanski Y, Mahowald N, Winckler G, Maggi V, Delmonte B (2018) Aerosol-climate interactions during the last glacial maximum. Curr Clim Chang Rep 4(2):99–114
2. Albani S, Mahowald N, Perry A, Scanza R, Zender C, Heavens N, Maggi V, Kok J, Otto-Bliesner B (2014) Improved dust representation in the community atmosphere model. J Adv Model Earth Syst 6(3):541–570
3. Albani S, Mahowald NM, Delmonte B, Maggi V, Winckler G (2012) Comparing modeled and observed changes in mineral dust transport and deposition to antarctica between the last glacial maximum and current climates. Clim Dyn 38(9–10):1731–1755
4. Alloway BV, Lowe DJ, Barrell DJ, Newnham RM, Almond PC, Augustinus PC, Bertler NA, Carter L, Litchfield NJ, McGlone MS et al (2007) Towards a climate event stratigraphy for new zealand over the past 30 000 years (nz-intimate project). J Quat Sci 22(1):9–35
5. Babin M, Stramski D (2002) Light absorption by aquatic particles in the near-infrared spectral region. Limnol Oceanogr 47(3):911–915
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