After describing the main characteristics of porous media (porosity, tortuosity, permeability, and diffusivity), the role of porous media in mass transfer is analyzed with the help of numerical examples. Significant differences between the behavior of inert and biological porous media with respect to the response to external factors are considered. Current and prospective applications of porous media in biotechnology and biomedicine are highlighted.info:eu-repo/semantics/publishedVersio
This paper reports a theoretical and experimental research in the field of mass transport through po...
The movement of microorganisms through porous media is particularly significant as pathogens may be...
Thin porous media are common and encountered in numerous applications. These include papers and cart...
The paper illustrates numerous biomedical applications in which porous media mechanics is needed to ...
This monograph presents an integrated perspective of the wide range of phenomena and processes appli...
Today,the focus of physical scientists is shifting to biology more than ever before. Because there i...
Extensive employment of biomaterials in the areas of biomedical and microbiological applications is ...
Flow and heat transfer in biological tissues are analyzed in this investigation. Pertinent works are...
Biofilm is a dominant form of existence for bacteria in most natural and synthetic environments. Dep...
This study investigates the functional correspondence between porescale hydrodynamics, mass transfer...
Transport of bacteria is an important aspect from scientific, industrial and environmental point of ...
Porous media are ubiquitous in our common life : typically, the soil, our skin, our clothes, the co...
This book examines the relationship between transport properties and pore structure of porous materi...
In this paper, the coupled heat and mass transfer within porous media has been studies. First, the s...
Natural, artificial, and biological porous media can be seen everywhere in our daily lives. Transpor...
This paper reports a theoretical and experimental research in the field of mass transport through po...
The movement of microorganisms through porous media is particularly significant as pathogens may be...
Thin porous media are common and encountered in numerous applications. These include papers and cart...
The paper illustrates numerous biomedical applications in which porous media mechanics is needed to ...
This monograph presents an integrated perspective of the wide range of phenomena and processes appli...
Today,the focus of physical scientists is shifting to biology more than ever before. Because there i...
Extensive employment of biomaterials in the areas of biomedical and microbiological applications is ...
Flow and heat transfer in biological tissues are analyzed in this investigation. Pertinent works are...
Biofilm is a dominant form of existence for bacteria in most natural and synthetic environments. Dep...
This study investigates the functional correspondence between porescale hydrodynamics, mass transfer...
Transport of bacteria is an important aspect from scientific, industrial and environmental point of ...
Porous media are ubiquitous in our common life : typically, the soil, our skin, our clothes, the co...
This book examines the relationship between transport properties and pore structure of porous materi...
In this paper, the coupled heat and mass transfer within porous media has been studies. First, the s...
Natural, artificial, and biological porous media can be seen everywhere in our daily lives. Transpor...
This paper reports a theoretical and experimental research in the field of mass transport through po...
The movement of microorganisms through porous media is particularly significant as pathogens may be...
Thin porous media are common and encountered in numerous applications. These include papers and cart...