Solid-state fermentation (SSF) is accompanied inevitably by development of concentration and temperature gradients within the substrate particles and microbial biofilms. These gradients are needed for driving the transport of substrates and products. In addition, concentration gradients have been suggested to be crucial for obtaining the characteristics that define the products of SSF; nevertheless, gradients are also known to result in reduced productivity and unwanted side reactions. Solid-state fermentations are generally batch processes and this further complicates their understanding as conditions change with time. Mathematical models are therefore needed for improving the understanding of SSF processes and allowing their manipulation ...
In solid-state fermentation, the interaction of transport phenomena with biochemical reactions has a...
In solid-state fermentation (SSF) research, it is not possible to separate biomass quantitatively fr...
A dynamic model was evaluated that gives a detailed description of internal diffusion and growth of ...
Solid-state fermentation (SSF) is accompanied inevitably by development of concentration and tempera...
A mathematical model is developed to simulate oxygen consumption, heat generation and cell growth in...
This chapter discusses the biochemical engineering aspects of solid-state fermentation (SSF). Solid-...
Mathematical models are important tools for optimizing the design and operation of solid-state ferme...
Solid-state fermentation (SSF) involves the growth of microorganisms on moist solid substrates in th...
Solid-state fermentation is different from the more well known process of liquid fermentation becaus...
A structured mathematical model of anaerobic solid state fermentation (ASSF) has been developed. Sin...
A mathematical model is presented which predicts the temperature profiles for solid state fermentati...
Solid-state fermentation (SSF) involves the growth of microorganisms on moist solid substrates in th...
The increasing interests in biotechnology for the application of fungi on the one hand, and for chea...
Mass transfer plays an important role in solid state fermentation (SSF) systems. Earlier work on SSF...
The theoretical mathematical models described in this paper are used to evaluate the effects of fung...
In solid-state fermentation, the interaction of transport phenomena with biochemical reactions has a...
In solid-state fermentation (SSF) research, it is not possible to separate biomass quantitatively fr...
A dynamic model was evaluated that gives a detailed description of internal diffusion and growth of ...
Solid-state fermentation (SSF) is accompanied inevitably by development of concentration and tempera...
A mathematical model is developed to simulate oxygen consumption, heat generation and cell growth in...
This chapter discusses the biochemical engineering aspects of solid-state fermentation (SSF). Solid-...
Mathematical models are important tools for optimizing the design and operation of solid-state ferme...
Solid-state fermentation (SSF) involves the growth of microorganisms on moist solid substrates in th...
Solid-state fermentation is different from the more well known process of liquid fermentation becaus...
A structured mathematical model of anaerobic solid state fermentation (ASSF) has been developed. Sin...
A mathematical model is presented which predicts the temperature profiles for solid state fermentati...
Solid-state fermentation (SSF) involves the growth of microorganisms on moist solid substrates in th...
The increasing interests in biotechnology for the application of fungi on the one hand, and for chea...
Mass transfer plays an important role in solid state fermentation (SSF) systems. Earlier work on SSF...
The theoretical mathematical models described in this paper are used to evaluate the effects of fung...
In solid-state fermentation, the interaction of transport phenomena with biochemical reactions has a...
In solid-state fermentation (SSF) research, it is not possible to separate biomass quantitatively fr...
A dynamic model was evaluated that gives a detailed description of internal diffusion and growth of ...