SSSAJ Journal of Natural Resources and Life Sciences Education
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Published online 12 March 2007
Published in Soil Sci Soc Am J 71:259-265 (2007)
DOI: 10.2136/sssaj2006.0186
© 2007 Soil Science Society of America
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REVIEW & ANALYSIS

A Review of the Use of the Basic Cation Saturation Ratio and the "Ideal" Soil

Peter M. Kopittke* and Neal W. Menzies

School of Land and Food Sciences, The Univ. of Queensland, St. Lucia, Qld, Australia 4072

* Corresponding author (p.kopittke{at}uq.edu.au).

The use of "balanced" Ca, Mg, and K ratios, as prescribed by the basic cation saturation ratio (BCSR) concept, is still used by some private soil-testing laboratories for the interpretation of soil analytical data. This review examines the suitability of the BCSR concept as a method for the interpretation of soil analytical data. According to the BCSR concept, maximum plant growth will be achieved only when the soil's exchangeable Ca, Mg, and K concentrations are approximately 65% Ca, 10% Mg, and 5% K (termed the ideal soil). This "ideal soil" was originally proposed by Firman Bear and coworkers in New Jersey during the 1940s as a method of reducing luxury K uptake by alfalfa (Medicago sativa L.). At about the same time, William Albrecht, working in Missouri, concluded through his own investigations that plants require a soil with a high Ca saturation for optimal growth. While it now appears that several of Albrecht's experiments were fundamentally flawed, the BCSR ("balanced soil") concept has been widely promoted, suggesting that the prescribed cationic ratios provide optimum chemical, physical, and biological soil properties. Our examination of data from numerous studies (particularly those of Albrecht and Bear themselves) would suggest that, within the ranges commonly found in soils, the chemical, physical, and biological fertility of a soil is generally not influenced by the ratios of Ca, Mg, and K. The data do not support the claims of the BCSR, and continued promotion of the BCSR will result in the inefficient use of resources in agriculture and horticulture.

Abbreviations: BCSR, basic cation saturation ratio • CEC, cation exchange capacity







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