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The quality of exogenous organic matter: short‐term effects on soil physical properties and soil organic matter fractions
Author(s) -
Leroy B. L. M.,
Herath H. M. S. K.,
Sleutel S.,
De Neve S.,
Gabriels D.,
Reheul D.,
Moens M.
Publication year - 2008
Publication title -
soil use and management
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.709
H-Index - 81
eISSN - 1475-2743
pISSN - 0266-0032
DOI - 10.1111/j.1475-2743.2008.00142.x
Subject(s) - organic matter , hydraulic conductivity , chemistry , zoology , soil organic matter , silt , environmental chemistry , soil water , soil science , environmental science , geology , organic chemistry , paleontology , biology
We examined the short‐term effect of five organic amendments and compared them to plots fertilized with inorganic fertilizer and unfertilized plots on aggregate stability and hydraulic conductivity, and on the OC and ON distribution in physically separated SOM fractions. After less than 1 year, the addition of organic amendments significantly increased ( P < 0.01) the aggregate stability and hydraulic conductivity. The stability index ranged between 0.97 and 1.76 and the hydraulic conductivity between 1.23 and 2.80 × 10 −3 m/s for the plots receiving organic amendments, compared with 0.34–0.43, and 0.42–0.64 × 10 −3 m/s, respectively, for the unamended plots. There were significant differences between the organic amendments (P < 0.01), although these results were not unequivocal for both soil physical parameters. The total OC and ON content were significantly increased ( P < 0.05) by only two applications of organic fertilizers: between 1.10 and 1.51% OC for the amended plots versus 0.98–1.08% for the unamended and between 0.092 and 0.131% ON versus 0.092–0.098% respectively. The amount of OC and ON in the free particulate organic matter fraction was also significantly increased ( P < 0.05), but there were no significant differences ( P < 0.05) in the OC and ON content in the POM occluded in micro‐aggregates and in the silt + clay‐sized organic matter fraction. The results showed that even in less than 1 year pronounced effects on soil physical properties and on the distribution of OC and ON in the SOM fractions occurred.