Ammonia (NH3) volatilization is a major nitrogen (N) loss from the soil, especially under tropical conditions, NH3 volatilization results in low N use efficiency by crops. Incubation experiments were conducted using five soils (pH 5.5–9.0), three N sources such as, urea, di-ammonium phosphate (DAP), and poultry manure (PM) and two biochars such as, poultry litter biochar (PL-BC) and macadamia nut shell biochar (MS-BC). Ammonia volatilization was higher at soil with higher pH (pH exceeding 8) due to the increased hydroxyl ions. Among the N sources, urea recorded the highest NH3 volatilization (151.6 mg kg−1 soil) followed by PM (124.2 mg kg−1 soil) and DAP (99 mg kg−1 soil). Ammonia volatilization was reduced by approximately 70% with PL-BC ...
Ammonia (NH3) volatilization from ammonia-based fertilizer and animal manure reduces their nitrogen ...
Although urea use in agriculture is on the increase, increase in pH at soil microsite due to urea hy...
Aims: Ammonia (NH₃) can be volatilised from the soil surface following the surface application of ni...
Ammonia (NH₃) volatilization is a major nitrogen (N) loss from the soil, especially under tropical c...
Ammonia (NH3) volatilization is considered as one of the major mechanisms responsible for the loss o...
In order to investigate the effects of biochar on NH3 volatilization in the North China Plain, four ...
Ammonia (NH3) volatilization results in low N use efficiency by crops. The aim of this study were to...
Biochar has been proposed to ameliorate soil properties and plant growth. However, it remains unclea...
Ammonia volatilization is an important nitrogen loss pathway in the paddy field ecosystem which lead...
Chemical nitrogen (N) fertilizers are regarded as one of the environmental contaminants in addition ...
Improving nitrogen (N) use efficiency (NUE) in crop plants is important to reduce the negative impac...
Abstract In this study, we explored the role of biochar (BC) and/or urease inhibitor (UI) in mitigat...
Improving nitrogen (N) use efficiency (NUE) in crop plants is important to reduce the negative impac...
Improving nitrogen (N) use efficiency (NUE) in crop plants is important to reduce the negative impac...
Microplastics (MPs) are verified to affect the fate of ammonia (NH3) in agricultural soils. However,...
Ammonia (NH3) volatilization from ammonia-based fertilizer and animal manure reduces their nitrogen ...
Although urea use in agriculture is on the increase, increase in pH at soil microsite due to urea hy...
Aims: Ammonia (NH₃) can be volatilised from the soil surface following the surface application of ni...
Ammonia (NH₃) volatilization is a major nitrogen (N) loss from the soil, especially under tropical c...
Ammonia (NH3) volatilization is considered as one of the major mechanisms responsible for the loss o...
In order to investigate the effects of biochar on NH3 volatilization in the North China Plain, four ...
Ammonia (NH3) volatilization results in low N use efficiency by crops. The aim of this study were to...
Biochar has been proposed to ameliorate soil properties and plant growth. However, it remains unclea...
Ammonia volatilization is an important nitrogen loss pathway in the paddy field ecosystem which lead...
Chemical nitrogen (N) fertilizers are regarded as one of the environmental contaminants in addition ...
Improving nitrogen (N) use efficiency (NUE) in crop plants is important to reduce the negative impac...
Abstract In this study, we explored the role of biochar (BC) and/or urease inhibitor (UI) in mitigat...
Improving nitrogen (N) use efficiency (NUE) in crop plants is important to reduce the negative impac...
Improving nitrogen (N) use efficiency (NUE) in crop plants is important to reduce the negative impac...
Microplastics (MPs) are verified to affect the fate of ammonia (NH3) in agricultural soils. However,...
Ammonia (NH3) volatilization from ammonia-based fertilizer and animal manure reduces their nitrogen ...
Although urea use in agriculture is on the increase, increase in pH at soil microsite due to urea hy...
Aims: Ammonia (NH₃) can be volatilised from the soil surface following the surface application of ni...