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Emissions of N2O increase with increasing content of N in applied manure.
Emissions of N2O from wetland soil amended with cattle manure increased considerably with increasing content of N in the applied manure.
Given that N2O in agricultural soil is produced predominantly through the microbial transformations of inorganic N, the potential of a soil to emit N2O increases with the increasing availability of N and consequently the N content in applied manure.
Given that N2O in agricultural soil is produced predominantly through the microbial transformations of inorganic N, the potential to produce and emit N2O increases with the increasing availability of N and consequently the concentration of N in applied manure.
These results are in agreement with results of other experiment (Bussink et al. 1996) that showed that the trend of NH3 emission rate from applied manure was not linear.
Similarly, the unconditional probability of a plot with improved seed is 52% and this figure increases to 69% conditional on adoption of inorganic fertilizer and the likelihood of improved seed use is reduced to 12% when households applied manure to a plot, suggesting substitutability between the technologies.
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About 26 32% of applied manure-N was stored in soil organic matter and the buildup of soil-N was related to application rate of organic N. At moderate applications rates (approx. 400 kg N ha−1 a−1), soil N accumulated at about 120 kg ha−1 annually compared to 98 kg ha−1 a−1 of unaccounted N, much of that probably volatilized and denitrified.
The materials constituting high N manure contain high levels of reactive phenols and tannins (Jassal et al. 2011), which polymerize with a range of amino acids (containing N) from microbially degraded crude proteins in applied manures to generate complexes, which are resistant to enzymatic decomposition by micro organisms in wetland soil systems (Zingore et al. 2008).
Mr. Adams said he follows agricultural guidelines for applying manure and, when weather permits, for plowing the manure under within a few days.
This potential could further increase if the social cost of carbon rises covering the costs of applying manure to crops.
No other measured soil properties showed significant biochar or biochar × manure interactions, even though applying manure significantly increased extractable K, Mg, Na, and P levels.
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