Abstract
The kinetics of inhibition of CH4 oxidation by NH4+, NO2-, and NO3- in a humisol was investigated. Soil slurries exhibited nearly standard Michaelis-Menten kinetics, with half-saturation constant [K(m(app))] values for CH4 of 50 to 200 parts per million of volume (ppmv) and V(max) values of 1.1 to 2.5 nmol of CH4 g of dry soil-1 h-1. With one soil sample, N4+ acted as a simple competitive inhibitor, with an estimated K(i) of 8 μM NH4+ (18 nM NH3). With another soil sample, the response to NH4+ addition was more complex and the inhibitory effect of NH4+ was greater than predicted by a simple competitive model at low CH4 concentrations (<50 ppmv). This was probably due to NO2- produced through NH4+ oxidation. Added NO2- was inherently more inhibitory of CH4 oxidation at low CH4 concentrations, and more NO2- was produced as the CH4-to-NH4+ ratio decreased and the competitive balance shifted. NaNO3 was a noncompetitive inhibitor of CH4 oxidation, but inhibition was evident only at > 10 mM concentrations, which also altered soil pHs. Similar concentrations of NaCl were also inhibitory of CH4 oxidation, so there may be no special inhibitory mechanism of nitrate per se.
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CITATION STYLE
Dunfield, P., & Knowles, R. (1995). Kinetics of inhibition of methane oxidation by nitrate, nitrite, and ammonium in a humisol. Applied and Environmental Microbiology, 61(8), 3129–3135. https://doi.org/10.1128/aem.61.8.3129-3135.1995
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