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Black carbon and soil properties at historical charcoal production sites in Germany

  • Nils Borchard(corresponding author)
    ,
  • ,
  • Sita Eschemann
    ,
  • Dominik Hegenberg
    ,
  • Bodo Maria Möseler
    ,
  • Wulf Amelung
*Corresponding author for this work
  • University of Bonn
    ,
  • Jülich Research Centre
    ,
  • ,
  • University of New South Wales
    ,
  • Universidad Científica del Sur
Research Output:
Contribution to journal
Article
Peer-review

Publication Information

Output type

Research Output:
Contribution to journal
Article
Peer-review

Original language

English

Pages from-to (Number of pages)

Pages 236-242 (7 pages)

Journal (Volume, Issue Number)

Geoderma (Volume 232-234)

Publication milestones

  • Published - 11/2014

Publication status

Published - 11/2014

ISSN

0016-7061

Publication IDs

  • Scopus: 84901499174

Abstract

The use of charcoal as a soil amendment is currently of great interest to sequester carbon and improve soil fertility, however, studies of sites where charcoal amendments to the soil have been made many years ago are lacking at the moment. In this study we investigated historical charcoal production sites in Germany that have not been in use for >60years, and evaluated the effects of the former charcoal inputs on soil and vegetation parameters relative to those of adjacent, unamended areas. Surface soil samples (0-5, 5-20cm) were taken from five sites located on extremely acidic (Siegerland, pH3.8-4.1) and base rich soils (Eifel, pH4.8-5.3) in species poor (Luzulo-Fagetum) and species rich (Hordelymo-Fagetum) beech forests, respectively. We determined stocks of black carbon (BC) and natural soil organic carbon (SOC=total C minus BC) as well as of soil nutrient stocks (NO3-N, P, K, Mg), cation exchange capacity and water holding capacity, and we mapped plant composition to calculate richness and evenness. The results showed that historical charcoal production sites were enriched with BC and also exhibited increased stocks of natural SOC and total N possibly due to enhanced stabilization of natural SOC by the charcoal. The availability of nitrate-nitrogen, phosphate and potassium was increased when the charcoal was added to the base rich soils and less so when charcoal was added to the extremely acidic soils. Plant biodiversity was not different between the sites of historical charcoal addition and the reference sites. We conclude that charcoal additions may increase soil carbon storage capacity over prolonged periods of time without negatively affecting plant ecological interactions over the long term.

Funding Details

This study was funded by the German Federal Institute for Geo-Science and Natural Resources (grant agreement number 206-4500035451 ). Many thanks are owed to Stefan Viereck the head of the forest administration Burgholdinghausen (Germany), for the support during field work, and especially to Adolf Kiener, Anke Lindecke and Minh-Chi Tran-Thi for the help with laboratory analyses and measurements.
FundersFunding numbers
German Federal Institute for Geo-Science and Natural Resources
206-4500035451