Summarization: Analytical models for virus transport in saturated, homogeneous porous media are developed. The models account for three-dimensional dispersion in a uniform flow field, and first-order inactivation of suspended and deposited viruses with different inactivation rate coefficients. Virus deposition onto solid particles is described by two different processes: nonequilibrium adsorption which is applicable to viruses behaving as solutes; and colloid filtration which is applicable to viruses behaving as colloids. The governing virus transport equations are solved analytically by employing Laplace/Fourier transform techniques. Instantaneous and continuous/periodic virus loadings from a point source are examined.Παρουσιάστηκε στο: Tr...
This paper describes the movement of virus in one-dimensional unsaturated porous media. The governin...
A two-dimensional model for virus transport in physically and geochemically heterogeneous subsurface...
A mathematical model is developed to simulate the transport and deposition of virus-sized colloids i...
Analytical models for virus transport in saturated, homogeneous porous media are developed. The mode...
Summarization: Analytical solutions to two mathematical models for virus transport in one-dimensiona...
Summarization: A conceptual mathematical model was developed to describe the simultaneous transport ...
Summarization: A three-dimensional numerical model was developed to investigate the simultaneous tra...
Summarization: A numerical model for one-dimensional virus transport in homogeneous, unsaturated por...
Summarization: A conceptual mathematical model was developed to describe the simultaneous transport ...
A mathematical model is developed to simulate the co-transport of viruses and colloids in unsaturate...
Summarization: A model for virus transport in one-dimensional, homogeneous, saturated porous media i...
Summarization: Analytical models for virus adsorption and inactivation in batch systems of homogeneo...
The fundamental mechanisms involved in fate and transport of colloidal particles (viruses and latex ...
Virus sorption and transport were investigated in controlled laboratory column experiments. Bacterio...
Viruses may have caused 65 percent of all the waterborne disease outbreaks in the United States from...
This paper describes the movement of virus in one-dimensional unsaturated porous media. The governin...
A two-dimensional model for virus transport in physically and geochemically heterogeneous subsurface...
A mathematical model is developed to simulate the transport and deposition of virus-sized colloids i...
Analytical models for virus transport in saturated, homogeneous porous media are developed. The mode...
Summarization: Analytical solutions to two mathematical models for virus transport in one-dimensiona...
Summarization: A conceptual mathematical model was developed to describe the simultaneous transport ...
Summarization: A three-dimensional numerical model was developed to investigate the simultaneous tra...
Summarization: A numerical model for one-dimensional virus transport in homogeneous, unsaturated por...
Summarization: A conceptual mathematical model was developed to describe the simultaneous transport ...
A mathematical model is developed to simulate the co-transport of viruses and colloids in unsaturate...
Summarization: A model for virus transport in one-dimensional, homogeneous, saturated porous media i...
Summarization: Analytical models for virus adsorption and inactivation in batch systems of homogeneo...
The fundamental mechanisms involved in fate and transport of colloidal particles (viruses and latex ...
Virus sorption and transport were investigated in controlled laboratory column experiments. Bacterio...
Viruses may have caused 65 percent of all the waterborne disease outbreaks in the United States from...
This paper describes the movement of virus in one-dimensional unsaturated porous media. The governin...
A two-dimensional model for virus transport in physically and geochemically heterogeneous subsurface...
A mathematical model is developed to simulate the transport and deposition of virus-sized colloids i...