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Oxygen Isotope Signatures of Phosphate in Wildfire Ash
Laura Bigio
*
,
Alon Angert
*
Corresponding author for this work
Fredy & Nadine Herrmann Institute of Earth Sciences
Research output
:
Contribution to journal
›
Article
›
peer-review
13
Scopus citations
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Dive into the research topics of 'Oxygen Isotope Signatures of Phosphate in Wildfire Ash'. Together they form a unique fingerprint.
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Keyphrases
Phosphate
100%
P Source
100%
Isotopic Signature
100%
Oxygen Isotopes
100%
Wildfire
100%
Resin P
100%
P Concentration
100%
Wildfire Ash
100%
Israel
50%
Saharan Dust
50%
Phosphorus P
50%
Resin
50%
Terrestrial Ecosystems
50%
Marine Ecosystems
50%
Primary Production
50%
Combustion Process
50%
Hereafter
50%
Biogeochemistry
50%
Experimental Fire
50%
Atmospheric Aerosol
50%
Tree Pollen
50%
Dust Samples
50%
Phosphorus Sources
50%
Global P Cycle
50%
Oxygen Isotopes in Phosphate
50%
Aerosol Deposition
50%
Isotope Exchange Reaction
50%
Natural Fire
50%
P Fractions
50%
Airborne Dust
50%
Calcium Carbonate
50%
Probable Sources
50%
Earth and Planetary Sciences
Atmospherics
100%
Oxygen 18
100%
Oxygen
100%
Israel
25%
Atmospheric Aerosol
25%
Primary Production
25%
Biogeochemistry
25%
Aquatic Environment
25%
Protective Atmosphere
25%
Pollen
25%