Apparatus for measuring the rate of diffusion of carbon dioxide through granular solids is described and the results obtained with it are shown to conform to the curve connecting D/D0 and S previously obtained for carbon disulphide and acetone. The equation D/D0 = 0·66S, which it is suggested should replace Buckingham's equation D/D0=S2, is applied to a discussion of soil aeration, and it is shown that at all porosities the rate of diffusion of carbon dioxide from the soil is sufficient to account for normal respiration without invoking the assistance of meteorological changes. A further application of the equation to water vapour movement in soils is briefly discussed
For modeling gas transport in soils and other porous media is necessary to know the diffusion coeffi...
In order to evaluate the influence of soil permeability on soil CO2 flux measurements performed with...
The rate of gaseous diffusion in soils affects the exchange of gases between the soil and the atmosp...
The dependence of the coefficient of diffusion, D, upon the porosity, S, of a granular solid is inve...
Experiments of soil respiration are made using a soil sample mixed with a proper amount of compost i...
A mathematical model based on the diffusion theory of gases was developed to account for the oxygen ...
The effective air-filled porosity and the gas diffusion coefficient are important soil parameters de...
Gas diffusion research in soils covers, to a large extent, the transport behavior of practically ins...
A key component of the global C balance includes soil CO emissions. Both chamber- and gradient-based...
Gaseous movement in soil varies with soil's physicochemical properties and biochemical oxygen demand...
Measuring soil carbon dioxide efflux is a challenging task even when it is performed using respirati...
Respiration can be measured either as an increase in CO2 or as a decrease in O2. Because CO2 can be ...
In order to evaluate the influence of soil permeability on soil CO2 flux measurements performed with...
peer reviewedINTRODUCTION Soil respiration is a major component in the carbon balance of terrestrial...
CO and H2 uptake by soil was studied as a diVusion process. A diVusion model was used to determine h...
For modeling gas transport in soils and other porous media is necessary to know the diffusion coeffi...
In order to evaluate the influence of soil permeability on soil CO2 flux measurements performed with...
The rate of gaseous diffusion in soils affects the exchange of gases between the soil and the atmosp...
The dependence of the coefficient of diffusion, D, upon the porosity, S, of a granular solid is inve...
Experiments of soil respiration are made using a soil sample mixed with a proper amount of compost i...
A mathematical model based on the diffusion theory of gases was developed to account for the oxygen ...
The effective air-filled porosity and the gas diffusion coefficient are important soil parameters de...
Gas diffusion research in soils covers, to a large extent, the transport behavior of practically ins...
A key component of the global C balance includes soil CO emissions. Both chamber- and gradient-based...
Gaseous movement in soil varies with soil's physicochemical properties and biochemical oxygen demand...
Measuring soil carbon dioxide efflux is a challenging task even when it is performed using respirati...
Respiration can be measured either as an increase in CO2 or as a decrease in O2. Because CO2 can be ...
In order to evaluate the influence of soil permeability on soil CO2 flux measurements performed with...
peer reviewedINTRODUCTION Soil respiration is a major component in the carbon balance of terrestrial...
CO and H2 uptake by soil was studied as a diVusion process. A diVusion model was used to determine h...
For modeling gas transport in soils and other porous media is necessary to know the diffusion coeffi...
In order to evaluate the influence of soil permeability on soil CO2 flux measurements performed with...
The rate of gaseous diffusion in soils affects the exchange of gases between the soil and the atmosp...