Citation Impact

Citing Papers

Dating the rise of atmospheric oxygen
2004 Nature
Sulphur isotope evidence for an oxic Archaean atmosphere
2006 Nature
Geological constraints on the origin of oxygenic photosynthesis
2010
Atmospheric oxygenation caused by a change in volcanic degassing pressure
2011 Nature
The rise of oxygen in Earth’s early ocean and atmosphere
2014 StandoutNature
Widespread iron-rich conditions in the mid-Proterozoic ocean
2011 Nature
Age constraint on Burmese amber based on U–Pb dating of zircons
2012 Standout
Microbial carbonate precipitation in construction materials: A review
2009 Standout
On ultrahigh temperature crustal metamorphism: Phase equilibria, trace element thermometry, bulk composition, heat sources, timescales and tectonic settings
2014 Standout
Iron Formation: The Sedimentary Product of a Complex Interplay among Mantle, Tectonic, Oceanic, and Biospheric Processes
2010
The Neoproterozoic oxygenation event: Environmental perturbations and biogeochemical cycling
2011
Mineralogy and formation conditions of ores in the Bereznyakovskoe ore field, the Southern Urals, Russia
2009 StandoutNobel
Mo isotopic composition of the mid-Neoproterozoic ocean: An iron formation perspective
2013
Experimental syntheses of framboids—a review
2005
The Microbial Engines That Drive Earth's Biogeochemical Cycles
2008 StandoutScience
Modes of Biomineralization of Magnetite by Microbes
2007
Constraints on fluid evolution during metamorphism from U–Th–Pb systematics in Alpine hydrothermal monazite
2012

Works of Bryan Krapež being referenced

Hydrothermal and resedimented origins of the precursor sediments to banded iron formation: sedimentological evidence from the Early Palaeoproterozoic Brockman Supersequence of Western Australia
2003
Deep-marine depositional setting of banded iron formation: sedimentological evidence from interbedded clastic sedimentary rocks in the early Palaeoproterozoic Dales Gorge Member of Western Australia
2004
Palaeoenvironmental significance of rounded pyrite in siliciclastic sequences of the Late Archaean Witwatersrand Basin: oxygen‐deficient atmosphere or hydrothermal alteration?
2002
SHRIMP U–Pb ages of diagenetic and hydrothermal xenotime from the Archaean Witwatersrand Supergroup of South Africa
2001
Late Archean euxinic conditions before the rise of atmospheric oxygen
2011
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2026