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Using a mechanistic model for estimating the NH3 emission from slurry after application in soil Genermont and Cellier (1997) pH was the main factor that influenced NH3 emission.
The highest reaction of NH3 emission to pH was observed when pH ranges from 7 to 10, and NH3 emission below 7 decreases dramatically (Hartung and Phillips 1994).
Interactions between CO2 and NH3 emission influence the effect of model parameters on NH3 emission and result in some unexpected responses.
Our model can inform the development of simpler models for estimating NH3 emission, and the design of experiments aimed at quantifying processes that influence NH3 emission from manure.
The effects of CO2 on NH3 emission deserve more attention, and both experimental and modeling approaches are needed to understand the interactions that control NH3 emission.
Soil pH and cation exchange capacity (CEC) also influenced NH3 emission.
Huijsmans et al. (2001) reported that the rate of NH3 emission decreased with time.
A good agreement observed between the two methods is used for determining of NH3 emission.
The rate and total amount of NH3 emission was related to kind of fertilizers.
Unfortunately, little effort has been made to standardize the laboratory methods for NH3 emission measurement.
A number of techniques have been developed to quantify NH3 emission.
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