Effect of amendment of manure and corn residues on soil N mineralization and enzyme activity
|
# |
|
Journal |
Effects of cow manure and sewage sludge on the activity and kinetics of L-glutaminase in soil
|
# |
|
Journal |
Decoupling of soil biological properties by deforestation
|
# |
|
Journal |
Plant residue quality influences the response of nitrogen mineralization to salinity
|
# |
|
Journal |
A kinetic approach to evaluate salinity effects on carbon mineralization in a plant residue-amended soil
|
# |
|
Journal |
Enzyme activities and microbial biomass carbon in a soil amended with organic and inorganic fertilizers
|
# |
|
Journal |
Urease activity as affected by cultivation and soil depth A kinetic approach
|
# |
|
Journal |
Fate of carbon and nitrogen from plant residue decomposition in a calcareous soil
|
# |
|
Journal |
Sorption of cadmium on palygorskite sepiolite and calcite Equilibria and organic ligand affected kinetics
|
# |
|
Journal |
The relationship between net nitrogen mineralization/immobilization and short-term respiration rates in a calcareous soil amended with different plant residues
|
# |
|
Journal |
Net nitrogen mineralization or Immobilization potential in a residue-amended calcareous soil
|
# |
|
Journal |
Sorption-desorption of cadmium in aqueous palygorskite sepiolite and calcite suspensions Isotherm hysteresis
|
# |
|
Journal |
Research Note Estimation of field capacity and wilting point from basic soil physical and chemical properties
|
# |
|
Journal |
Effects of soil properties and trace metals on urease activities of calcareous soils
|
# |
|
Journal |
L-Asparaginase activity in some soils of central Iran
|
# |
|
Journal |
Soil chemical and biochemical properties as affected by slope aspect and position in a rangeland ecosystem
|
|
|
Conference |
Inhibitory effects of cadmium on alkaline phosphatase immobilized on palygorskite and sepiolite minerals
|
|
|
Conference |
The variation of Soil Biological Properties along a hill-slope
|
|
|
Conference |
Does endophyte (Neotyphodium coenophialum) symbiosis influence the decomposition of tall fescue (Neotyphodium coenophialum) in soils
|
|
|
Conference |
A kinetic approach to evaluate the biodegradation of 3 3 - diaminobenzidine in the soil environment
|
|
|
Conference |