X-ray computed tomography (CT) provides an insight into the progression of dissolution in the tests of planktonic foraminifera. Four species of foraminifera (G. ruber [white], G. sacculifer, N. dutertrei and P. obliquiloculata) from Pacific, Atlantic and Indian Ocean core-top samples were examined by CT and SEM. Inner chamber walls began to dissolve at Δ[CO32−] values of 12–14 μmol/kg. Close to the calcite saturation horizon, dissolution and precipitation of calcite may occur simultaneously. Inner calcite of G. sacculifer, N. dutertrei and P. obliquiloculata from such sites appeared altered or replaced, whereas outer crust calcite was dense with no pores. Unlike the other species, there was no distinction between inner and outer calcite in ...
Temperatures derived from Mg/Ca ratios of the calcite tests of planktonic foraminifera are distorted...
Accurately quantifying deep-sea calcite dissolution is crucial for understanding the role of the mar...
We present the dissolution kinetics of mixed planktic foraminifera, the benthic foraminifera Amphist...
X-ray computed tomography (CT) provides an insight into the progression of dissolution in the tests ...
X-ray computed tomography (CT) provides an insight into the progression of dissolution in the tests ...
Evaluation of foraminiferal test dissolution in deep-sea sediments facilitates reconstruction of sea...
Evaluation of foraminiferal test dissolution in deep-sea sediments facilitates reconstruction of sea...
An empirical dissolution index for planktonic foraminifera, XDX, was established based on the appear...
In this thesis, the effect of dissolution on the chemistry and structure of perforate planktonic for...
Their ubiquitous distribution and common occurrence in marine sediments make planktonic foraminifera...
The mass of well-preserved calcite in planktonic foraminifera shells provides an indication of the c...
International audience[1] Several authors suggested that the thinning, with increasing depth of depo...
The mass of well-preserved calcite in planktonic foraminifera shells provides an indication of the c...
Calcite dissolution of planktic foraminifers that settle from the surface ocean to depths has been a...
This research was supported in part by a Royal Society Newton International postdoctoral Fellowship ...
Temperatures derived from Mg/Ca ratios of the calcite tests of planktonic foraminifera are distorted...
Accurately quantifying deep-sea calcite dissolution is crucial for understanding the role of the mar...
We present the dissolution kinetics of mixed planktic foraminifera, the benthic foraminifera Amphist...
X-ray computed tomography (CT) provides an insight into the progression of dissolution in the tests ...
X-ray computed tomography (CT) provides an insight into the progression of dissolution in the tests ...
Evaluation of foraminiferal test dissolution in deep-sea sediments facilitates reconstruction of sea...
Evaluation of foraminiferal test dissolution in deep-sea sediments facilitates reconstruction of sea...
An empirical dissolution index for planktonic foraminifera, XDX, was established based on the appear...
In this thesis, the effect of dissolution on the chemistry and structure of perforate planktonic for...
Their ubiquitous distribution and common occurrence in marine sediments make planktonic foraminifera...
The mass of well-preserved calcite in planktonic foraminifera shells provides an indication of the c...
International audience[1] Several authors suggested that the thinning, with increasing depth of depo...
The mass of well-preserved calcite in planktonic foraminifera shells provides an indication of the c...
Calcite dissolution of planktic foraminifers that settle from the surface ocean to depths has been a...
This research was supported in part by a Royal Society Newton International postdoctoral Fellowship ...
Temperatures derived from Mg/Ca ratios of the calcite tests of planktonic foraminifera are distorted...
Accurately quantifying deep-sea calcite dissolution is crucial for understanding the role of the mar...
We present the dissolution kinetics of mixed planktic foraminifera, the benthic foraminifera Amphist...