Impact of anthropogenic atmospheric nitrogen and sulfur deposition on ocean acidification and the inorganic carbon system
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- 11 September 2007
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 104 (37) , 14580-14585
- https://doi.org/10.1073/pnas.0702218104
Abstract
Fossil fuel combustion and agriculture result in atmospheric deposition of 0.8 Tmol/yr reactive sulfur and 2.7 Tmol/yr nitrogen to the coastal and open ocean near major source regions in North America, Europe, and South and East Asia. Atmospheric inputs of dissociation products of strong acids (HNO3 and H2SO4) and bases (NH3) alter surface seawater alkalinity, pH, and inorganic carbon storage. We quantify the biogeochemical impacts by using atmosphere and ocean models. The direct acid/base flux to the ocean is predominately acidic (reducing total alkalinity) in the temperate Northern Hemisphere and alkaline in the tropics because of ammonia inputs. However, because most of the excess ammonia is nitrified to nitrate (NO3−) in the upper ocean, the effective net atmospheric input is acidic almost everywhere. The decrease in surface alkalinity drives a net air–sea efflux of CO2, reducing surface dissolved inorganic carbon (DIC); the alkalinity and DIC changes mostly offset each other, and the decline in surface pH is small. Additional impacts arise from nitrogen fertilization, leading to elevated primary production and biological DIC drawdown that reverses in some places the sign of the surface pH and air–sea CO2 flux perturbations. On a global scale, the alterations in surface water chemistry from anthropogenic nitrogen and sulfur deposition are a few percent of the acidification and DIC increases due to the oceanic uptake of anthropogenic CO2. However, the impacts are more substantial in coastal waters, where the ecosystem responses to ocean acidification could have the most severe implications for mankind.Keywords
This publication has 41 references indexed in Scilit:
- Iron availability limits the ocean nitrogen inventory stabilizing feedbacks between marine denitrification and nitrogen fixationGlobal Biogeochemical Cycles, 2007
- Nitrogen and sulfur deposition on regional and global scales: A multimodel evaluationGlobal Biogeochemical Cycles, 2006
- Nitrogen cycling in the Middle Atlantic Bight: Results from a three‐dimensional model and implications for the North Atlantic nitrogen budgetGlobal Biogeochemical Cycles, 2006
- Anthropogenic ocean acidification over the twenty-first century and its impact on calcifying organismsNature, 2005
- Upper ocean ecosystem dynamics and iron cycling in a global three‐dimensional modelGlobal Biogeochemical Cycles, 2004
- Nitrogen Cycles: Past, Present, and FutureBiogeochemistry, 2004
- A global simulation of tropospheric ozone and related tracers: Description and evaluation of MOZART, version 2Journal of Geophysical Research: Atmospheres, 2003
- A 1°×1° resolution data set of historical anthropogenic trace gas emissions for the period 1890–1990Global Biogeochemical Cycles, 2001
- Major challenges confronting marine biogeochemical modelingGlobal Biogeochemical Cycles, 1999
- A global high‐resolution emission inventory for ammoniaGlobal Biogeochemical Cycles, 1997