Artikel ; Online: Continuous and simultaneous measurement of triple-oxygen and hydrogen isotopes of liquid and vapor during evaporation experiments.
Rapid communications in mass spectrometry : RCM
2021 Band 35, Heft 10, Seite(n) e9078
Abstract: Rationale: Oxygen and hydrogen isotopes are important tools for studying the modern and past hydrological cycle. Previous evaporation experiments used episodic measurement of liquid and/or vapor or did not measure all isotopologues of water. Here, we ... ...
Abstract | Rationale: Oxygen and hydrogen isotopes are important tools for studying the modern and past hydrological cycle. Previous evaporation experiments used episodic measurement of liquid and/or vapor or did not measure all isotopologues of water. Here, we describe an evaporation experimental system that allows all isotopologues of liquid and water vapor to be measured simultaneously and near-continuously at high precision using cavity ring-down laser spectroscopy (CRDS). Methods: Evaporating liquid is periodically sampled from a closed recirculating loop by a syringe pump that delivers a constant supply of water to the vaporizer, achieving a water vapor concentration of 20,000 ppmV H Results: For liquid measurements, Allan variance analysis indicates an optimum data collection window of 34 min for oxygen isotopes and 27 min for hydrogen isotopes. During these periods, the mean standard error is ±0.0081‰ for δ Conclusions: The experimental method permits measurement of fractionation of triple-oxygen and hydrogen isotopes of evaporating water under varying controlled conditions at high precision. Application of this method will be useful for testing theoretical models of evaporation and conducting experiments to simulate evaporation and isotopic equilibration in natural systems. |
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Sprache | Englisch |
Erscheinungsdatum | 2021-03-04 |
Erscheinungsland | England |
Dokumenttyp | Journal Article |
ZDB-ID | 58731-x |
ISSN | 1097-0231 ; 0951-4198 |
ISSN (online) | 1097-0231 |
ISSN | 0951-4198 |
DOI | 10.1002/rcm.9078 |
Datenquelle | MEDical Literature Analysis and Retrieval System OnLINE |
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