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  • African Summer Monsoon; Calculated after Zech et al., (2013); Calendar age; Compound-specific carbon isotopes; Compound-specific hydrogen isotopes; Compound-specific oxygen isotopes; coupled δ2Hn-alkane–δ18Osugar paleohygrometer; DEPTH, sediment/rock; Deuterium excess; Deuterium excess, standard deviation; elemental geochemistry; Grain Size; Humidity, relative; Humidity, relative, standard deviation; hydrology; leaf-wax n-alkane; Paleoclimate; PCUWI; peat geochemistry; Piston corer, UWITEC; precipitation reconstruction; relative humidity; South Africa; sugars; Vankervelsvlei; Westerlies; δ18O, leaf water; δ18O, leaf water, standard deviation; δ18O, source water; δ18O, source water, standard deviation; δ Deuterium, leaf water; δ Deuterium, leaf water, standard deviation; δ Deuterium, source water; δ Deuterium, source water, standard deviation  (1)
  • African Summer Monsoon; Calendar age; Compound-specific carbon isotopes; Compound-specific hydrogen isotopes; Compound-specific oxygen isotopes; coupled δ2Hn-alkane–δ18Osugar paleohygrometer; DEPTH, sediment/rock; elemental geochemistry; Grain Size; Grain size, mean; hydrology; Laser Diffraction Particle Size Analyzer (LS 13320, Beckman Coulter, California, USA); Statistical analyzes: Software Gradistat 4.2 (Blott and Pye, 2001); leaf-wax n-alkane; Median, grain size; Mode, grain size; Paleoclimate; PCUWI; peat geochemistry; Piston corer, UWITEC; precipitation reconstruction; relative humidity; Size fraction 〈 0.002 mm, clay; Size fraction 〉 0.063 mm, sand; Size fraction 0.063-0.002 mm, silt, mud; South Africa; sugars; Vankervelsvlei; Westerlies  (1)
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