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gcb2547-sup-0001-AppendixS1.pdfapplication/PDF421KAppendix S1.Soil incubation methods
gcb2547-sup-0002-AppendixS2.pdfapplication/PDF421KAppendix S2.Evidence of denitrification in Experiment 1
gcb2547-sup-0003-AppendixS3.pdfapplication/PDF421KAppendix S3.ƒexchange-abioticis inversely related toinline image
gcb2547-sup-0004-FigureS1.pdfapplication/PDF369KFigure S1. The Monte Carlo simulation results for Experiments 1–3 (scenario b) with variable fractions of N2O produced via nitrifier-denitrification (0.75–1) and via NH2OH oxidation (0–0.25) [where the total N2O from both pathways = 1]
gcb2547-sup-0005-FigureS2a.pdfapplication/PDF285KFigure S2 (a). The Monte Carlo simulation results for Experiment 1 when the fraction of N2O reduction is zero (scenario a) or varies between zero and 0.25 (scenario b). (b) The Monte Carlo simulation results for Experiment 1 when the fraction of N2O reduction varies between 0.25 and 0.5 (scenario c) or between 0.5 and 0.75 (scenario d)
gcb2547-sup-0006-FigureS3a.pdfapplication/PDF337KFigure S3 (a). The Monte Carlo simulation results for Experiment 2 when the fraction of N2O reduction is zero (scenario a) or varies between zero and 0.25 (scenario b). (b) The Monte Carlo simulation results for Experiment 2 when the fraction of N2O reduction varies between 0.25 and 0.5 (scenario c) or between 0.5 and 0.75 (scenario d)
gcb2547-sup-0007-FigureS4a.pdfapplication/PDF655KFigure S4 (a). The Monte Carlo simulation results for Experiment 3 when the fraction of N2O reduction is zero (scenario a) or varies between zero and 0.25 (scenario b). (b) The Monte Carlo simulation results for Experiment 3 when the fraction of N2O reduction varies between 0.25 and 0.5 (scenario c) or between 0.5 and 0.75 (scenario d).

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