A model to predict the effects of soil structure on denitrification and N2O emission
نویسنده
چکیده
Please cite this article in press as: Laudone, G.M. doi:10.1016/j.jhydrol.2011.08.026 A model of the void space of soil is presented, and used for the a priori biophysical simulation of denitrification. The model comprises a single critical percolation channel through a 5 cm stack of four unit cells of a dual-porous void structure. Together, the microand macro-porous structures closely replicate the full water retention characteristic of a sandy clay loam soil from theWoburn Experimental Farm operated by Rothamsted Research, UK. Between 1 and 10 micro-porous hot-spot zones of biological activity were positioned at equally spaced distances within 5 cm from the surface, and at either 10 lm or 100 lm from the critical percolation channel. Nitrification and denitrification reactions within the hotspots were assumed to follow Michaelis–Menten kinetics, with estimated values of rate coefficients. Estimates were also made of the threshold values of oxygen concentration below which the anaerobic processes would commence. The pore network was fully saturated following addition of an aqueous ‘amendment’ of nitrate and glucose which started the reactions, and which mirrored an established laboratory protocol. Diffusion coefficients for Fickian and Crank-Nicolson calculations were taken from the literature, and were corrected for the tortuosity of the micro-porosity. The model was used to show the amount of carbon dioxide, nitrous oxide and molecular nitrogen emerging from the simulated soil with time. Adjustment of the rate coefficient and oxygen threshold concentrations, within the context of a sensitivity analysis, gave emission curves in good agreement with previous experimental measurements. Positioning of the hot-spot zones away from the critical percolation path slowed the increase and decline in emission of the gases. The model and its parameters can now be used for modelling the effect of soil compaction and saturation on the emission of nitrous oxide. 2011 Published by Elsevier B.V.
منابع مشابه
Structure and Activity of Denitrifier Communi- ties in Biochar-Amended Soil and Their Impact on N2O Emissions
Nitrous oxide is a greenhouse gas with a global warming potential about 300 times higher than CO2. The main sources of N2O are microbial-mediated nitrogen transformation reactions in soils. Denitrification represents one of the major N2Oproducing pathways in oxygen-limited zones. Soil biochar amendment has been demonstrated to reduce N2O emissions in microcosms and in the field. Although N2O em...
متن کاملPulse Increase of Soil N2O Emission in Response to N Addition in a Temperate Forest on Mt Changbai, Northeast China
Nitrogen (N) deposition has increased significantly globally since the industrial revolution. Previous studies on the response of gaseous emissions to N deposition have shown controversial results, pointing to the system-specific effect of N addition. Here we conducted an N addition experiment in a temperate natural forest in northeastern China to test how potential changes in N deposition alte...
متن کاملImpacts of grazing intensity on denitrification and N2O production in a semi-arid grassland ecosystem
N2O production from denitrification in soils contributes to the enhanced greenhouse effect and the destruction of the stratospheric ozone. Ungulate grazing affects denitrification and the production of N2O. The short-term effect of grazing on denitrification and N2O production has been examined in several grassland ecosystems. However, the effects of long-term grazing have rarely been studied. ...
متن کاملDevelopment of a nitrous oxide routine for the SWAT model to assess greenhouse gas emissions from agroecosystems
Greenhouse gas (GHG) emissions from agroecosystems, particularly nitrous oxide (N2O), are an increasing concern. To quantify N2O emissions from agroecosystems, which occur as a result of nitrogen (N) cycling, a new physically-based routine was developed for the Soil and Water Assessment Tool (SWAT) model to predict N2O flux during denitrification and an existing nitrification routine was modifi...
متن کاملHigh-Resolution Denitrification Kinetics in Pasture Soils Link N2O Emissions to pH, and Denitrification to C Mineralization
Denitrification in pasture soils is mediated by microbial and physicochemical processes leading to nitrogen loss through the emission of N2O and N2. It is known that N2O reduction to N2 is impaired by low soil pH yet controversy remains as inconsistent use of soil pH measurement methods by researchers, and differences in analytical methods between studies, undermine direct comparison of results...
متن کاملIdentifying the agricultural imprint on the global N2O budget using stable isotopes
Agricultural soils are the most important anthropogenic source of nitrous oxide to the atmosphere. We observed large shifts with time in the emission rate (from 170 to 16 ng N cm−2 h−1) and in δ15N of N2O emitted (from −46‰ to +5‰ relative to atmospheric N2) from a urea-fertilized and irrigated agricultural field in Mexico. We calculated overall instantaneous enrichment factors for the sampling...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
دوره شماره
صفحات -
تاریخ انتشار 2011