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Primary Productivity and Biogeochemical Cycles in the Sea

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Key Metrics

  • Paul G Falkowski
  • Springer
  • Hardcover
  • 9780306441929
  • 9.21 X 6.14 X 1.25 inches
  • 2.12 pounds
  • Nature > Animals - Marine Life
  • English
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Book Description

Biological processes in the oceans play a crucial role in regulating the fluxes of many important elements such as carbon, nitrogen, sulfur, oxygen, phosphorus, and silicon. As we come to the end of the 20th century, oceanographers have increasingly focussed on how these elements are cycled within the ocean, the interdependencies of these cycles, and the effect of the cycle on the composition of the earth's atmosphere and climate. Many techniques and tools have been developed or adapted over the past decade to help in this effort. These include satellite sensors of upper ocean phytoplankton distributions, flow cytometry, molecular biological probes, sophisticated moored and shipboard instrumentation, and vastly increased numerical modeling capabilities. This volume is the result of the 37th Brookhaven Symposium in Biology, in which a wide spectrum of oceanographers, chemists, biologists, and modelers discussed the progress in understanding the role of primary producers in biogeochemical cycles. The symposium is dedicated to Dr. Richard W. Eppley, an intellectual giant in biological oceanography, who inspired a generation of scientists to delve into problems of understanding biogeochemical cycles in the sea. We gratefully acknowledge support from the U.S. Department of Energy, the National Aeronautics and Space Administration, the National Science Foundation, the National Oceanic and Atmospheric Administration, the Electric Power Research Institute, and the Environmental Protection Agency. Special thanks to Claire Lamberti for her help in producing this volume.
Primary Productivity and Biogeochemical Cycles in the Sea

Author Bio

After graduating from the University of British Columbia and doing a 9 month post-doc at the University of Rhode Island, I was hired at the Brookhaven National Laboratory as staff scientist in the newly formed Oceanographic and Atmospheric Sciences Division. I worked there for 23 years and developed the field of environmental biophysics. In 1998 I moved my research group to Rutgers University. In 2007 I was elected to the National Academy of Science for my research on the global carbon cycle.

Research Interests 

My research interests are focused on three areas – origins of life, how electron transfer reactions are mediated, and how organisms transformed the geochemistry of Earth. In the evolution of Earth, microbes became a major force in transforming this planet to make it habitable for animals, including humans. 

I seek to understand the basic chemical reactions that enabled microbes to transform Earth’s goechemistry. I work at the molecular level of proteins and fundamental chemical reactions of minerals, and the global scale of how this planet came to have oxygen as the second most abundant gas. I am most interested in understanding how these kinds of processes have transformed our planet and may evolve on planetary bodies in our solar system and on extra-solar planets. There are only two questions I address: Where did we come from? And are we alone?

 

Source: Rutgers, The State University of New Jersey 

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