HR: 10:55h
AN: OS52A-03 INVITED [Abstracts]
TI: Jack Dymond's "Fingerprints" on Sediment Chemistry, Biogeochemical Fluxes, and my Career
AU: * Leinen, M
EM: mleinen@nsf.gov
AF: National Science Foundation, 4201 Wilson Blvd, Arlington, VA 22230
United States
AB:
I first met Jack Dymond as a graduate student at Oregon State University. He wasn't my thesis advisor. He wasn't even on my
committee. But his ever so gentle counsel and his low key advice did much to shape my career, as a student, as a scientist,
and later as an administrator of science. At the time, Jack was wading through the analysis of a very large number of
surface sediment samples from the Nazca Plate as part of an IDOE project. The number and density of sampling was
extraordinary for the time and his work showed that the geochemistry of the sediments could be deconvolved to understand
the contributions of sediment sources over the entire plate. I had been planning to analyze DSDP samples from the
equatorial Pacific to understand the history of siliceous sedimentation in that region and I began to talk with Jack about
how I could use geochemical signatures to estimate the non-biogenic fraction of the sediment. When Jack's Nazca Plate paper
came out, Debra Stakes and I decided to analyze all of my sample residues for the same elements that Jack had studied. In
the only piece of bad advice that he ever gave me, Jack told me that it was a waste of time because there wouldn't be high
enough concentrations of transition metals in the calcareous and siliceous sediments to measure. We insisted and Jack, in
typical fashion, agreed to pay for reagents and give us instrument time without charge anyway. The larger than expected
concentrations, and the even more surprising match between the accumulation rates of some the metals and the accumulation
rates of biogenic sediment were the subject of many discussions, all of which ended in the need for more information on the
composition, fluxes and transformations of biogenic sediment in the water column and in recent sediments. This, of course,
became another of Jack's specialties: his designs for sediment traps were important contributions to the evolution of this
important sampling device. His studies of fluxes in a wide variety of environments - from hydrothermal vent fields to Crater
Lake --were critical to the development of modern biogeochemical cycling experiments and thinking. And this, of course, was
only one of the fields in which he made major contributions.
DE: 1045 Low-temperature geochemistry
DE: 1050 Marine geochemistry (4835, 4850)
SC: Ocean Sciences [OS]
MN: 2004 AGU Fall Meeting