IRON ENHANCEMENT OF MARINE PHY
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Words: 2018
Pages: 7
(approximately 235 words/page)
Pages: 7
(approximately 235 words/page)
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Iron Enhancement of Marine Phytoplankton
Abstract
As atmospheric carbon dioxide levels increase, efforts have been made to help restore these levels to their natural state. An intriguing hypothesis has been put forward in an attempt to reduce these levels. By seeding regions of the oceans, known as high-nitrate low chlorophyll areas, with iron, it is believed that phytoplankton populations will grow. This in turn, through the process of photosynthesis, will lower atmospheric carbon dioxide levels.
showed first 75 words of 2018 total
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showed first 75 words of 2018 total
showed last 75 words of 2018 total
in seawater. Environ. Sci. Technol. 21:804-810. Peng, T., and W. Broeker. 1991. Factors limiting the reduction of atmospheric CO2 by iron fertilization. Limnol. Oceanogr. 36:1919-1927. Rao U., and S. Chakravarty. 1992. An evaluation of global warming and its impact. Curr. Sci. 62:469-478. Raven J. 1994. Carbon fixation and carbon availability in marine phytoplankton. Photosynth. Res. 39:259-273. Walker J., and J. Kasting. 1992. Effects of fuel and forest conservation on future levels of atmospheric carbon dioxide. Glob. Plan. Change. 97:151-189.
in seawater. Environ. Sci. Technol. 21:804-810. Peng, T., and W. Broeker. 1991. Factors limiting the reduction of atmospheric CO2 by iron fertilization. Limnol. Oceanogr. 36:1919-1927. Rao U., and S. Chakravarty. 1992. An evaluation of global warming and its impact. Curr. Sci. 62:469-478. Raven J. 1994. Carbon fixation and carbon availability in marine phytoplankton. Photosynth. Res. 39:259-273. Walker J., and J. Kasting. 1992. Effects of fuel and forest conservation on future levels of atmospheric carbon dioxide. Glob. Plan. Change. 97:151-189.