Skip to main navigation Skip to search Skip to main content

Climatically driven loss of calcium in steppe soil as a sink for atmospheric carbon

  • Andreil G. Lapenis
  • , G. B. Lawrence
  • , S. W. Bailey
  • , B. F. Aparin
  • , A. I. Shiklomanov
  • , N. A. Speranskaya
  • , M. S. Torn
  • , M. Calef
  • United States Geological Survey
  • United States Department of Agriculture
  • Dokuchaev Central Soil Museum
  • University of New Hampshire
  • Russian Federal Service for Hydrometeorology and Environmental Monitoring
  • Lawrence Berkeley National Laboratory
  • SUNY Albany

Research output: Contribution to journalArticlepeer-review

27 Scopus citations

Abstract

During the last several thousand years the semi-arid, cold climate of the Russian steppe formed highly fertile soils rich in organic carbon and calcium (classified as Chernozems in the Russian system). Analysis of archived soil samples collected in Kemannaya Steppe Preserve in 1920, 1947, 1970, and fresh samples collected in 1998 indicated that the native steppe Chernozems, however, lost 17-28 kg m-2 of calcium in the form of carbonates in 1970-1998. Here we demonstrate that the loss of calcium was caused by fundamental shift in the steppe hydrologic balance. Previously unleached soils where precipitation was less than potential evapotranspiration are now being leached due to increased precipitation and, possibly, due to decreased actual evapotranspiration. Because this region receives low levels of acidic deposition, the dissolution of carbonates involves the consumption of atmospheric CO2. Our estimates indicate that this climatically driven terrestrial sink of atmospheric CO2 is ∼2.1-7.4 g C m-2 a-1. In addition to the net sink of atmospheric carbon, leaching of pedogenic carbonates significantly amplified seasonal amplitude of CO2 exchange between atmosphere and steppe soil.

Original languageEnglish
Article numberGB2010
JournalGlobal Biogeochemical Cycles
Volume22
Issue number2
DOIs
StatePublished - Jun 2008

Fingerprint

Dive into the research topics of 'Climatically driven loss of calcium in steppe soil as a sink for atmospheric carbon'. Together they form a unique fingerprint.

Cite this