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Featured researches published by Thomas Marx.


Rapid Communications in Mass Spectrometry | 2014

Reproducibility and accuracy of noble gas measurements on water samples in the microlitre range

Tim Sander; Thomas Marx; Jürgen Engel; Werner Aeschbach-Hertig

RATIONALE In order to derive meaningful noble gas temperatures (NGTs) from speleothem fluid inclusions, precise and accurate measurements of noble gas concentrations on very small water samples are necessary. To optimise these measurements and their reliability, an investigation of the reproducibility and accuracy of the analytical procedure is essential. METHODS Water equilibrated with air under controlled conditions was filled into copper capillaries to produce small (about 1 μL) air-equilibrated water samples (so-called μAEWs). As speleothem samples, the μAEWs were opened in a crusher and the released noble gases analysed with an electron ionisation sector field mass spectrometer run in static mode. For better comparability with speleothem samples, a defined amount of air was added to the noble gases derived from one group of μAEWs. RESULTS The reproducibility of the experimental procedure was found to be better than 2.2% for all relevant noble gases. Within these uncertainties, the measured noble gas concentrations of μAEWs agree with expectations. The corresponding NGTs reproduce within 0.5°C and deviate by less than 1°C from the equilibration temperature. In the case of air addition, the air to water ratio was determined accurately and, excluding one outlier, the NGTs were determined with a reproducibility and accuracy well below 1°C. CONCLUSIONS The results show that the used measurement procedure is generally suitable to reveal major climatic temperature changes, for which an overall NGT error of less than 1°C is desirable, from very small water samples as obtained from speleothem fluid inclusions.


Earth and Planetary Science Letters | 2008

A new tool for palaeoclimate reconstruction: Noble gas temperatures from fluid inclusions in speleothems

Tobias Kluge; Thomas Marx; Denis Scholz; Stephan Niggemann; Augusto Mangini; Werner Aeschbach-Hertig


Chemical Geology | 2012

Hydrogeochemistry and fractionation pathways of Mg isotopes in a continental weathering system: Lessons from field experiments

Sylvia Riechelmann; Dieter Buhl; Andrea Schröder-Ritzrau; Christoph Spötl; Dana F.C. Riechelmann; Detlev K. Richter; Tobias Kluge; Thomas Marx; Adrian Immenhauser


Climate of The Past | 2012

Reconstruction of drip-water δ 18 O based on calcite oxygen and clumped isotopes of speleothems from Bunker Cave (Germany)

Tobias Kluge; H. P. Affek; Thomas Marx; Werner Aeschbach-Hertig; Dana F.C. Riechelmann; Denis Scholz; Sylvia Riechelmann; Adrian Immenhauser; Detlev K. Richter; Jens Fohlmeister; Anne Wackerbarth; Augusto Mangini; Christoph Spötl


Chemical Geology | 2014

Noble gas concentrations in fluid inclusions as tracer for the origin of coarse-crystalline cryogenic cave carbonates

Tobias Kluge; Thomas Marx; Werner Aeschbach-Hertig; Christoph Spötl; Detlev K. Richter


Archive | 2010

Advances in noble gas paleothermometry on speleothems

Thomas Marx; Tobias Kluge; Augusto Mangini; Werner Aeschbach-Hertig


Archive | 2009

Specific water content in speleothem sections as indicator for paleoprecipitation

Thomas Kluge; Thomas Marx; Dana F.C. Riechelmann; Damian N. Schimpf; C. Muhlinghaus; R. Kilian; Werner Aeschbach-Hertig


Archive | 2009

A new approach for the interpretation of stable isotope signals in speleothems using noble gas temperatures

Thomas Kluge; Thomas Marx; Denis Scholz; Christoph Spötl; Stephan Niggemann; Andrea Schröder-Ritzrau; Augusto Mangini; Werner Aeschbach-Hertig


Archive | 2009

Noble gas temperatures from speleothems

Werner Aeschbach-Hertig; Thomas Kluge; Thomas Marx; Denis Scholz; Christoph Spötl; Stephan Niggemann; Augusto Mangini


Archive | 2009

Temporal gradient between temperature and the oxygen isotope value of precipitation in the early Eemian reconstructed from a speleothem from western Germany

Denis Scholz; Thomas Kluge; Christoph Spötl; Thomas Marx; Andrea Schröder-Ritzrau; Dana F.C. Riechelmann; Werner Aeschbach-Hertig; Augusto Mangini; Daniel K. Richter; Stephan Niggemann

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