In production agriculture, granular urea is the most used nitrogen fertilizer in crop production. However, increase in soil pH following application of urea causes ammonia volatilization and reduces N use efficiency. To minimize ammonia loss, organic amendments are used, however, type of organic amendment use could affect urea use efficiency. This study was to determine the effects of organic amendments derived from forest litter, Leucaena leucocephala, chicken litter, and cow dung on ammonia volatilization and chemical properties of a waterlogged acid soil. Treatments evaluated were: (i) T1, Soil only, (ii) T2, Existing recommended fertilization, (iii) T3, Biochar-forest litter compost, (iv) T4, Biochar-chicken litter compost, (v) T5, Bioc...
Ammonia (NH3) volatilization is a major nitrogen (N) loss from the soil, especially under tropical c...
Ammonia volatilization from surface-applied urea reduces urea-N use efficiency in crop production an...
The increase in microsite soil pH due to surface application of urea to the soil is an important rea...
In production agriculture, granular urea is the most used nitrogen fertilizer in crop production. Ho...
Although urea use in agriculture is on the increase, increase in pH at soil microsite due to urea hy...
Ammonia loss from urea significantly hinders efficient use of urea in agriculture. In order to reduc...
Problem statement: Ammonia volatilization from surface-applied urea may be substantial but it is pos...
Problem statement: Fertilizer N use efficiency is reduced by ammonia volatilization. Under low soil ...
Ammonia volatilization is a major cause of nitrogen loss from surface applied urea. While all top dr...
Ammonia loss from urea significantly hinders efficient use of urea in agriculture. In order to reduc...
Problem statement: Application of urea as a source of nitrogen fertilizer has an adverse effect on a...
Form of nitrogen present in soils is one of the factors that affect nitrogen loss. Nitrate is mobile...
Ammonia (NH₃) volatilization is a major nitrogen (N) loss from the soil, especially under tropical c...
Tropical acid soils are highly weathered as they exist under tropical environment with high rainfall...
Problem statement: Ammonia volatilization is a major pathway for nitrogen loss from surface applied ...
Ammonia (NH3) volatilization is a major nitrogen (N) loss from the soil, especially under tropical c...
Ammonia volatilization from surface-applied urea reduces urea-N use efficiency in crop production an...
The increase in microsite soil pH due to surface application of urea to the soil is an important rea...
In production agriculture, granular urea is the most used nitrogen fertilizer in crop production. Ho...
Although urea use in agriculture is on the increase, increase in pH at soil microsite due to urea hy...
Ammonia loss from urea significantly hinders efficient use of urea in agriculture. In order to reduc...
Problem statement: Ammonia volatilization from surface-applied urea may be substantial but it is pos...
Problem statement: Fertilizer N use efficiency is reduced by ammonia volatilization. Under low soil ...
Ammonia volatilization is a major cause of nitrogen loss from surface applied urea. While all top dr...
Ammonia loss from urea significantly hinders efficient use of urea in agriculture. In order to reduc...
Problem statement: Application of urea as a source of nitrogen fertilizer has an adverse effect on a...
Form of nitrogen present in soils is one of the factors that affect nitrogen loss. Nitrate is mobile...
Ammonia (NH₃) volatilization is a major nitrogen (N) loss from the soil, especially under tropical c...
Tropical acid soils are highly weathered as they exist under tropical environment with high rainfall...
Problem statement: Ammonia volatilization is a major pathway for nitrogen loss from surface applied ...
Ammonia (NH3) volatilization is a major nitrogen (N) loss from the soil, especially under tropical c...
Ammonia volatilization from surface-applied urea reduces urea-N use efficiency in crop production an...
The increase in microsite soil pH due to surface application of urea to the soil is an important rea...