While the AEC’s oceanographic research budgets have not been large, they
have contributed materially to knowledge of the oceanic environment.
AEC-sponsored research at Scripps Institution of Oceanography has
determined by a process known as neutron activation analysis[11] that
the concentration of rare earth elements in Pacific Ocean waters appears
to be only about one hundredth of the level previously reported. By
analysis of naturally occurring radioisotopes, they have also discovered
that it takes from one million to 100 million years for lithium,
potassium, barium, strontium, and similar elements introduced into the
ocean from rivers to be deposited in the bottom sediments. Aluminum,
iron, and titanium are deposited in from 100 to 1000 years. They have
also found that sedimentation occurs in the South Pacific at a rate of
from 0.3 to 0.6 millimeter per thousand years, in the North Pacific at a
rate several times that figure, and in the basins on either side of the
Mid-Atlantic Ridge at a rate of several millimeters per thousand years.
The University of Miami has successfully developed two methods for
determining the ages of successive layers of deep ocean sediments based
on the relative abundances of natural radioelements, and thereby has
established a chronology of climatic changes during the last 200,000
years during which the sediments were laid down.
The U. S. is not alone in its use of nuclear energy as a tool of
science. The United Kingdom has carried out radiological studies of the
marine environment for many years, particularly concentrating on the
effects of radionuclides from nuclear power plants on the sea
immediately contiguous to the British Isles. Both the European Atomic
Energy Community and the International Atomic Energy Agency also
encouraged marine radiological studies. Many laboratories and government
agencies in Europe, North and South America, Africa, and the Middle East
and Far East have well-established and productive programs under way.
Scientists in many parts of the world have used both natural and
intentionally injected radiation to study the coastwise movement of
beach materials. British experimenters, for example, activate sand with
scandium-46 and are thus able to follow its movement for up to four
months. Pebbles (shingle) coated with barium-140 and lanthanum-140 are
also used as tracers and are good for 6 weeks. Scientists at the
University of California trace naturally occurring radioisotopes of
thorium, which may be introduced from deposits of thorium sands along
river banks. These studies are of immediate practical importance, for
each year the ocean moves billions of cubic yards of sand, gravel,
shingle, and rock to and from beaches and along shores. This action
destroys recreational beaches, fills channels, blocks off harbors, and
in general rearranges the terrain, often at considerable cost and
inconvenience to mariners and other people who use the coast.
Public-domain text, read in full here on John Shaqi.
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