期刊
GLOBAL BIOGEOCHEMICAL CYCLES
卷 27, 期 3, 页码 755-767出版社
AMER GEOPHYSICAL UNION
DOI: 10.1002/gbc.20062
关键词
atmospheric dust; iron; aluminum; manganese; Atlantic; wet and dry deposition
资金
- European Union
- UK Natural Environment Research Council (NERC)
- NERC through the Atlantic Meridional Transect (AMT) Consortium [NER/O/S/2001/00680]
- NERC KT [NE/E001696/1]
- [NER/B/S/2002/00301]
- [NE/E010180/1]
- [NE/G000239/1]
- [NE/F017359/1]
- NERC [NE/G000239/1, pml010007, pml010002, pml010009] Funding Source: UKRI
- Natural Environment Research Council [NE/G000239/1, pml010009, pml010002, NER/O/S/2001/00680, pml010007] Funding Source: researchfish
Atmospheric inputs of mineral dust supply iron and other trace metals to the remote ocean and can influence the marine carbon cycle due to iron's role as a potentially limiting micronutrient. Dust generation, transport, and deposition are highly heterogeneous, and there are very few remote marine locations where dust concentrations and chemistry (e.g., iron solubility) are routinely monitored. Here we use aerosol and rainwater samples collected during 10 large-scale research cruises to estimate the atmospheric input of iron, aluminum, and manganese to four broad regions of the Atlantic Ocean over two 3month periods for the years 2001-2005. We estimate total inputs of these metals to our study regions to be 4.2, 17, and 0.27Gmol in April-June and 4.9, 14, and 0.19Gmol in September-November, respectively. Inputs were highest in regions of high rainfall (the intertropical convergence zone and South Atlantic storm track), and rainfall contributed higher proportions of total input to wetter regions. By combining input estimates for total and soluble metals for these time periods, we calculated overall percentage solubilities for each metal that account for the contributions from both wet and dry depositions and the relative contributions from different aerosol types. Calculated solubilities were in the range 2.4%-9.1% for iron, 6.1%-15% for aluminum, and 54%-73% for manganese. We discuss sources of uncertainty in our estimates and compare our results to some recent estimates of atmospheric iron input to the Atlantic.
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