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- W2259613311 abstract "Abstract Better understanding of process controls over nitrous oxide (N 2 O) production in urine-impacted ‘hot spots’ and fertilizer bands is needed to improve mitigation strategies and emission models. Following amendment with bovine ( Bos taurus ) urine (Bu) or urea (Ur), we measured inorganic N, pH, N 2 O and genes associated with nitrification in two soils (‘ L ’ and ‘ W ’) having similar texture, pH, C and C/N ratio. Solution-phase ammonia ( sl NH 3 ) was also calculated accounting for non-linear ammonium (NH 4 + ) sorption capacities (ASC). Soil W displayed greater nitrification rates and nitrate (NO 3 − ) levels than soil L , but was more resistant to nitrite (NO 2 − ) accumulation and produced two to ten times less N 2 O than soil L . Genes associated with NO 2 − oxidation ( nxr A) increased substantially in soil W but remained static in soil L . Soil NO 2 − was strongly correlated with N 2 O production and cumulative ( c- ) sl NH 3 explained 87% of the variance in c- NO 2 − . Differences between soils were explained by greater sl NH 3 in soil L which inhibited NO 2 − oxidization leading to greater NO 2 − levels and N 2 O production. This is the first study to correlate the dynamics of soil sl NH 3 , NO 2 − , N 2 O and nitrifier genes and the first to show how ASC can regulate NO 2 − levels and N 2 O production." @default.
- W2259613311 created "2016-06-24" @default.
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- W2259613311 date "2015-07-16" @default.
- W2259613311 modified "2023-10-15" @default.
- W2259613311 title "Ammonium sorption and ammonia inhibition of nitrite-oxidizing bacteria explain contrasting soil N2O production" @default.
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- W2259613311 doi "https://doi.org/10.1038/srep12153" @default.
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