HR: 1340h
AN: OS53A-0980 [Abstracts]
TI: The Study of Geotechnical Properties of Sediment in C-C Zone in the Northeastern Pacific for Deep-sea Mining
AU: * Chi, S
EM: sbchi@kordi.re.kr
AU: Kim, K
EM: kkim@kordi.re.kr
AU: Lee, H
EM: hblee@kordi.re.kr
AU: Ju, S
EM: sjju@kordi.re.kr
AU: Yoo, C
EM: cmyoo@kordi.re.kr
AB:
Recently the market price of valuable metals are rapidly increased due to the high demand and limited resources.
Therefore, manganese (Mn)-nodules (Polymetallic nodules) in the Clarion-Clipperton fracture zone have
stimulated economic interest. Nickel, copper, cobalt and manganese are the economically most interesting
metals of Mn-nodules.
In order to mine Mn-nodules from sea floor, understanding the geotechnical properties of surface sediment are
very important for two major reasons. First, geotechnical data are required to design and build the stable and
environmentally acceptable mining vehicles. Second, deep-sea mining activity could significantly effect on the
surface layer of deep sea floor. For example, surface sediments will be redistributed through the resuspension
and redeposition. Reliable sedimentological and soil mechanical baseline data of the undisturbed benthic
environment are essential to assess and evaluate these environmental impacts by mining activity using physical
and numerical modeling.
The 225 times deployments of the multiple corer guaranteed undisturbed sediment samples in which
geotechnical parameters were measured including sediment grain size, density, water content, shear strength.
The sea floor sediments in this study area are generally characterized into three different types as follow. The
seabed of the middle part (8-12° N) of this study area is mainly covered with biogenic siliceous sediment
compared with pelagic red clays in the northern part (16-17° N). However, the southern part (5-6° N)
is dominant with calcareous sediments because its water depth is shallower than the carbonate compensation
depth (CCD).
This result suggests that middle area, covered with siliceous sediment, is more feasible for commercial mining
than northern area, covered with pelagic red clay, with the consideration of the nodule miner maneuverability and
the environmental impact. Especially, middle part with the highest nodule abundance and valuable metal
contents is mainly (more than 90% of area) covered with consolidated sediments, which are expected to be
appropriate for effective miner movement. Furthermore, middle part with coarse siliceous sediments could be
less environmentally disturbed by the mining activity. It makes middle part more plausible site than other sites in
this study area for the commercial mining.
DE: 3022 Marine sediments: processes and transport
DE: 3050 Ocean observatories and experiments
DE: 4231 Equatorial oceanography
SC: Ocean Sciences [OS]
MN: 2007 Fall Meeting