The attraction of selenium isotopes as a paleoenvironmental tracer lies in the high redox potential of selenium oxyanions (SeIV and SeVI), the two dominant species in the modern ocean. The largest isotopic fractionations occur during oxyanion reduction, which makes selenium isotopes a sensitive proxy for the redox evolution of our planet. As a case study we review existing data from the Neoarchean and Paleoproterozoic, which show that significant isotopic fractionations are absent until 2.5 Ga, and prolonged isotopic deviations only appear around 2.3 Ga. Selenium isotopes have thus begun to reveal complex spatiotemporal redox patterns not reflected in other proxies
Selenium (Se) is an essential trace element, which, with multiple oxidation states and six stable is...
Selenium (Se) is an essential trace element, which, with multiple oxidation states and six stable is...
Mass-dependent variations in selenium stable isotope ratios have recently been developed as a paleo-...
The attraction of selenium isotopes as a paleoenvironmental tracer lies in the high redox potential ...
The attraction of selenium isotopes as a paleoenvironmental tracer lies in the high redox potential ...
Neoproterozoic (1,000–542Myr ago) Earth experienced profound environmental change, including ‘snowba...
Neoproterozoic (1,000–542 Myr ago) Earth experienced profound environmental change, including ‘snowb...
Selenium (Se) undergoes redox transformations and isotopic fractionations at relatively high redox p...
Neoproterozoic (1,000–542 Myr ago) Earth experienced profound environmental change, including ‘snowb...
Neoproterozoic (1,000–542 Myr ago) Earth experienced profound environmental change, including ‘snowb...
Selenium (Se) is an essential trace element, which, with multiple oxidation states and six stable is...
Selenium (Se) is an essential trace element, which, with multiple oxidation states and six stable is...
International audienceSelenium (Se) isotopes can yield substantial isotopic fractionation (up to 20‰...
It has been proposed that an "oxygen overshoot" occurred during the early Paleoproterozoic Great Oxi...
It has been proposed that an “oxygen overshoot” occurred during the early Paleoproterozoic Great Oxi...
Selenium (Se) is an essential trace element, which, with multiple oxidation states and six stable is...
Selenium (Se) is an essential trace element, which, with multiple oxidation states and six stable is...
Mass-dependent variations in selenium stable isotope ratios have recently been developed as a paleo-...
The attraction of selenium isotopes as a paleoenvironmental tracer lies in the high redox potential ...
The attraction of selenium isotopes as a paleoenvironmental tracer lies in the high redox potential ...
Neoproterozoic (1,000–542Myr ago) Earth experienced profound environmental change, including ‘snowba...
Neoproterozoic (1,000–542 Myr ago) Earth experienced profound environmental change, including ‘snowb...
Selenium (Se) undergoes redox transformations and isotopic fractionations at relatively high redox p...
Neoproterozoic (1,000–542 Myr ago) Earth experienced profound environmental change, including ‘snowb...
Neoproterozoic (1,000–542 Myr ago) Earth experienced profound environmental change, including ‘snowb...
Selenium (Se) is an essential trace element, which, with multiple oxidation states and six stable is...
Selenium (Se) is an essential trace element, which, with multiple oxidation states and six stable is...
International audienceSelenium (Se) isotopes can yield substantial isotopic fractionation (up to 20‰...
It has been proposed that an "oxygen overshoot" occurred during the early Paleoproterozoic Great Oxi...
It has been proposed that an “oxygen overshoot” occurred during the early Paleoproterozoic Great Oxi...
Selenium (Se) is an essential trace element, which, with multiple oxidation states and six stable is...
Selenium (Se) is an essential trace element, which, with multiple oxidation states and six stable is...
Mass-dependent variations in selenium stable isotope ratios have recently been developed as a paleo-...