TY - CHAP A1 - Hirsch, Florian A1 - Schneider, Anna A1 - Raab, Alexandra A1 - Raab, Thomas A1 - Buras, Allan A1 - Maaten, Ernst van der A1 - Takla, Melanie A1 - Räbiger, Christin A1 - Cruz-García, Roberto A1 - Wilmking, Martin T1 - Effects of historic charcoal burning on soil properties T2 - European Geosciences Union, General Assembly 2015, Vienna, Austria, 13 April - 17 May 2015 KW - historic charcoal burning Y1 - 2015 UR - http://meetingorganizer.copernicus.org/EGU2015/EGU2015-3574-2.pdf N1 - EGU2015-3574-2 PB - European Geophysical Society CY - Katlenburg-Lindau ER - TY - GEN A1 - Buras, Allan A1 - Hirsch, Florian A1 - Schneider, Anna A1 - Scharnweber, Tobias A1 - Maaten, Ernst van der A1 - Cruz-García, Roberto A1 - Raab, Thomas A1 - Wilmking, Martin T1 - Reduced above-ground growth and wood density but increased wood chemical concentrations of Scots pine on relict charcoal hearths T2 - Science of The Total Environment N2 - Deciphering the drivers of tree growth is a central aim of dendroecology. In this context, soil conditions may play a crucial role, since they determine the availability of water and nutrients for trees. Yet, effects of systematically differing soil conditions on tree growth render a marginally studied topic. In this context, relict charcoal hearths (RCH) – a widespread legacy of anthropogenic charcoal production – render a valuable ‘natural’ experiment to study possible effects of artificially altered soil conditions on tree growth. We hypothesize, that the differing physico-chemical properties of RCH result in differing wood properties if compared to trees growing on unmodified soils. To test this hypothesis, we analyzed tree-growth, wood density, and wood elemental concentrations of Scots pine as well as physico-chemical soil properties. We applied a classic control-treatment design to compare RCH with unmodified soils. Our analyses identified significantly lower above-ground wood production but systematically higher wood elemental concentrations in RCH-trees compared to control trees. Since we could not identify treatment-specific growth patterns, we hypothesize the observed lower above-ground productivity of Scots pine to indicate an increased root-shoot ratio to compensate for a potentially lower plant water availability on RCH-sites. The observed higher wood elemental concentrations likely reflect higher soil elemental concentrations of Fe, Ca, K, and Mn in RCH soils. In conclusion, our study highlights diverse effects of RCH on tree growth and wood properties and strengthens the value of dendro-chemistry to use the tree-ring archive as proxy for soil conditions within a dendro-ecological context. Y1 - 2020 U6 - https://doi.org/10.1016/j.scitotenv.2020.137189 SN - 1879-1026 SN - 0048-9697 VL - 717 ER - TY - CHAP A1 - Buras, Allan A1 - Hirsch, Florian A1 - Maaten, Ernst van der A1 - Takla, Melanie A1 - Räbiger, Christin A1 - Cruz-García, Roberto A1 - Schneider, Anna A1 - Raab, Alexandra A1 - Raab, Thomas A1 - Wilmking, Martin T1 - Charcoal kiln relicts - a favorable site for tree growth? T2 - European Geosciences Union, General Assembly 2015, Vienna, Austria, 13 April – 17 May 2015 Y1 - 2015 N1 - EGU2015-3257 PB - European Geophysical Society CY - Katlenburg-Lindau ER -