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Geochimica et cosmochimica acta, ISSN 0016-7037, 2016, Volume 184, pp. 132 - 150
Forest biomass has the potential to significantly impact the chemistry and volume of diffuse recharge to cave dripwater via the processes of nutrient uptake, transpiration and forest fire... 
Forest bioproductivity | Mass balance | Speleothem | Fire on karst | Golgotha Cave | Cave dripwater chemistry | ISOTOPIC ARCHIVES | ORGANIC-MATTER | SULFUR | GEOCHEMISTRY & GEOPHYSICS | SPELEOTHEM PALEOCLIMATOLOGY | TRACE-ELEMENTS | SULFATE | DRIP WATERS | X-RAY | KARST SYSTEM | STALAGMITE | Water balance (Hydrology) | Analysis | Uptakes | Transpiration | Forests | Fires | Caves | Nutrients | Trace elements | Biomass
Journal Article
GEOCHIMICA ET COSMOCHIMICA ACTA, ISSN 0016-7037, 09/2019, Volume 261, pp. 342 - 367
.... However, a large unknown is how C-14 is transferred from the atmosphere to any individual speleothem owing to the site-specific residence times of organic matter above cave systems... 
CAVE DRIPWATER CHEMISTRY | speleothems | DIOXIDE | ORGANIC-MATTER | modelling | UNSATURATED ZONE | GEOCHEMISTRY & GEOPHYSICS | GROUND AIR | MEAN RESIDENCE TIME | DRIP WATER | GOLGOTHA CAVE | DEAD CARBON | vadose zone | Carbon 14
Journal Article
Ars Lyrica, ISSN 1043-3848, 1992, Volume 6, pp. 87 - 102
Journal Article
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