Abyssal Benthonic Foraminifera as Indicators of Present and Past Deep-Sea Circulation in North Atlantic Ocean: ABSTRACT
Detmar Schnitker
Abstract
Detmar Schnitker
Abstract
Analysis of surface-sediment samples from 5 transects across the western North Atlantic Ocean shows the existence of 2 distinct populations of benthonic Foraminifera. The distribution of these populations correlates well with the distribution of the cold North Atlantic deep water (Epistominella exigua assemblage) and the very cold Arctic/Antarctic bottom-water masses (Epistominella umbonifera assemblage). Slight, but detectable, faunal differentiation is associated with the Arctic and Antarctic deep-water masses respectively. Abyssal, benthonic Foraminifera thus can be utilized to trace the thermohaline circulation of the deep ocean. Analyses of core samples, dating from the last full-glacial period, indicate a shifting of faunal boundaries. First information points to an areal diminution of the fauna associated with the very cold bottom water, indicating a general warming of the bottom water during the last ice age, that possibly was due to the pack-ice cover over ocean areas that now provides the very cold bottom waters. End_of_Article - Last_Page 803------------
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Analysis of surface-sediment samples from 5 transects across the western North Atlantic Ocean shows the existence of 2 distinct populations of benthonic Foraminifera. The distribution of these populations correlates well with the distribution of the cold North Atlantic deep water (Epistominella exigua assemblage) and the very cold Arctic/Antarctic bottom-water masses (Epistominella umbonifera assemblage). Slight, but detectable, faunal differentiation is associated with the Arctic and Antarctic deep-water masses respectively. Abyssal, benthonic Foraminifera thus can be utilized to trace the thermohaline circulation of the deep ocean. Analyses of core samples, dating from the last full-glacial period, indicate a shifting of faunal boundaries. First information points to an areal diminution of the fauna associated with the very cold bottom water, indicating a general warming of the bottom water during the last ice age, that possibly was due to the pack-ice cover over ocean areas that now provides the very cold bottom waters. End_of_Article - Last_Page 803------------
Key concepts: Foraminifera, Geology, Abyssal zone, Oceanography, Deep sea, Abyssal plain, Circulation (fluid dynamics), Thermohaline circulation