Dynamics of topsoil carbon and nitrogen along a tropical forest–cropland chronosequence: Evidence from stable isotope analysis and spectroscopy

Author:

Awiti Alex O.,Walsh Markus G.,Kinyamario Jenesio

Publisher

Elsevier BV

Subject

Agronomy and Crop Science,Animal Science and Zoology,Ecology

Reference55 articles.

1. Isotope discrimination during decomposition of organic matter: a theoretical analysis;Agren;Soil Science Society of American Journal,1996

2. Tropical Soil Fertility and Biological Fertility: A Handbook of Methods;Anderson,1993

3. Modelling organic carbon turnover in cleared temperate forest soils converted to maize cropping by using 13C natural abundance measurements;Arrouays;Plant and Soil,1995

4. Awiti, A.O., Walsh, M.G., Shepherd, K.D., 2004. Opportunities for sustainable management of nutrients in agricultural lands and conservation of forest ecosystems: assessment of biogeochemical variables across the Kakamega Forest ecotone. Final technical report submitted to Rockefeller Foundation. Grant number 2002 FS 180.

5. Soil condition classification using infrared spectroscopy: a proposition for assessment of soil condition along a tropical forest–cropland chronosequence;Awiti;Geoderma,2008

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