Simple formulation of the soil water effect on residue decomposition
dc.contributor.author | Adiku, S.G.K. | |
dc.contributor.author | Amon, N.K. | |
dc.contributor.author | Jones, J.W. | |
dc.contributor.author | Adjadeh, T.A. | |
dc.contributor.author | Kumaga, F.K. | |
dc.contributor.author | Dowuona, G.N. | |
dc.contributor.author | Nartey, E.K. | |
dc.date.accessioned | 2019-04-24T11:05:41Z | |
dc.date.available | 2019-04-24T11:05:41Z | |
dc.date.issued | 2010-02 | |
dc.description.abstract | Soil water content, θ, is a major factor affecting residue decomposition, but simple formulation of this factor is often lacking. We observed that θ significantly (P < 0.001) affected the residue decomposition constant, kd· When θ varied from 0.09gg-1 to 0.23gg-1, kd ranged from 0.009 to 0.013d-1 and from 0.009 to 0.022d-1 for residues with carbon to nitrogen ratio (C/N) > 30 and C/N < 25, respectively. A θ factor was formulated in terms of the field capacity θFC and the air-dry θ d in the form fw = (θ - θd) / (θFC - θd), and this was used to modify the potential kd as θ varied. Coupling fw with a first-order residue decomposition equation resulted in the prediction of the decomposition of four residue types in the greenhouse (R2 = 0.94; relative root mean square error, RRMSE, = 0.06) and in the field (R2 = 0.93; RRMSE = 0.11). © Taylor & Francis Group, LLC. | en_US |
dc.identifier.other | https://doi.org/10.1080/00103620903460781 | |
dc.identifier.other | Volume 41, Issue 3, Pages 267-276 | |
dc.identifier.uri | http://ugspace.ug.edu.gh/handle/123456789/29507 | |
dc.language.iso | en | en_US |
dc.publisher | Communications in Soil Science and Plant Analysis | en_US |
dc.subject | Prediction | en_US |
dc.subject | Residue decomposition | en_US |
dc.subject | Soil water | en_US |
dc.title | Simple formulation of the soil water effect on residue decomposition | en_US |
dc.type | Article | en_US |
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