The Use of Natural 14C and 13C in Soils for Studies on Global Climate Change

Author:

Becker-Heidmann Peter,Scharpenseel Hans-Wilhelm

Abstract

Some examples are given to show that the depth distribution curves of natural 14C and 13C of thin-layer sampled soil profiles can be used for inferring changes in soil organic matter and climate changes. By using a simple exchange model, we can determine whether decomposition products are fixed by clay or transported downward toward the groundwater table. We can also estimate the amount of the Greenhouse gases, CO2 and CH4, produced by the decomposition of the organic matter in terrestrial and paddy soils and emitted from the soil. A change from C3 to C4 plants, which might occur during a predicted temperature rise in some areas, thereby influencing the carbon balance, can be clearly detected by the δ13C depth profiles. A change in organic matter input can also be calculated under certain circumstances.

Publisher

Cambridge University Press (CUP)

Subject

General Earth and Planetary Sciences,Archaeology

Reference23 articles.

1. Becker-Heidmann P. (ms.) 1990 Carbon fluxes in important soil classes, with emphasis on Lessivé soils and on soils of the terrestrial, of the hydromorphic, and temporarily submerged environment. Final report to GTZ and DFG: 177 p.

2. Analysis of Factors Controlling Soil Organic Matter Levels in Great Plains Grasslands

3. Die Tiefenfunktionen der natürlichen Kohlenstoff-Isotopengehalte von vollständig dünnschichtweise beprobten Parabraunerden und ihre Relation zur Dynamik der organischen Substanz in diesen Böden;Becker-Heidmann;Hamburger Bodenkundliche Arbeiten,1989

4. Application du traçage isotopique naturel en 13C à l'étude de la dynamique de la matière organique dans les sols;Cerri;Comptes Rendus des Sceances de l'Academie des Sciences Paris,1985

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