Abstract
A two-year study based on chemical characteristics of ambient aerosols, from an urban site of a semi-arid region in western India, provides an unequivocal evidence for the quantitative neutralization of acidic constituents by mineral aerosols. The mineral dust component vaded in the range 16-220 μg m-3 (Ay: 88, sd: 42); and contributed to 69 ± 5% of the TSP (range: 43-273 μg m-3, Av: 125, sd: 49). A characteristic feature of the in-situ chemical reactions is well reflected by the relative dominance of Ca2+ and HCO-3 ions in the water-soluble composition of aerosols and anti-correlation among HCO-3- /Ca2+ and "Excess Acid"/Ca2+. A ubiquitous alkaline-nature of rainfall events over this high dust region further attests to our chemical data. Such regional-scale atmospheric transformation processes suggest the over estimation of negative radiative forcing (climate cooling) due to sulphate aerosols in the global climate models. Copyright 2006 by the American Geophysical Union.
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CITATION STYLE
Rastogi, N., & Sarin, M. M. (2006). Chemistry of aerosols over a semi-arid region: Evidence for acid neutralization by mineral dust. Geophysical Research Letters, 33(23). https://doi.org/10.1029/2006GL027708
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