Turbulent flow mixing is essential in optimizing microalgal cultivation in raceway ponds. Microalgal cells are however highly sensitive to hydrodynamic stresses produced by turbulent mixing because of their small size. The mechanical properties (wall deformation and von Misses stress) of the microalgal cell wall structure under the influence of turbulent mixing are yet to be explored. High turbulence magnitudes damage microalgal cell walls by adversely affecting their mechanical properties which consequently destroy the microalgal cells and reduce the biofuel production. Therefore, such a study is required to improve the biofuel productivity of microalgal cells before their cell wall damage in raceway pond. This study developed a novel flui...
International audienceThis paper focuses on mixing strategies to enhance the growth of microalgae in...
Achieving optimal nutrient concentrations is essential to increasing the biomass productivity of alg...
Studies involving the use of microalgae are increasingly intensifying for the potential they present...
Achieving appropriate hydrodynamic mixing in the design and operation of large-scale High Rate Algae...
The current high interest in the algae sector is leading to the development of several demo/commerci...
2021 Fall.Includes bibliographical references.Raceway ponds are widely used as cost-efficient and ea...
The scaling of Raceway bioreactors was studied by geometric and mechanical similarity, with an order...
Aim of the present work is quantifying the mechanical stress generated by some major process equipme...
Biodiesels from microalgae are a promising alternative to fossil fuels with a number of unique benef...
Outdoor studies were conducted on microalgae cultures in two raceway ponds (kept in constant motion ...
A study of the effects of hydrodynamic turbulent shear stress on the biological responses of carrot ...
Microalgae cultivation is a critical prerequisite of biomass and biofuels production, which is condu...
Turbulent mixing plays an important role in the distribution of sunlight, carbon dioxide, and nutrie...
Microalgae are a great source of food and supplements as well as a potential source for the producti...
Not AvailableRaceway Ponds (RWP) are single or multiple closed-loop, oblong and shallow re-circulati...
International audienceThis paper focuses on mixing strategies to enhance the growth of microalgae in...
Achieving optimal nutrient concentrations is essential to increasing the biomass productivity of alg...
Studies involving the use of microalgae are increasingly intensifying for the potential they present...
Achieving appropriate hydrodynamic mixing in the design and operation of large-scale High Rate Algae...
The current high interest in the algae sector is leading to the development of several demo/commerci...
2021 Fall.Includes bibliographical references.Raceway ponds are widely used as cost-efficient and ea...
The scaling of Raceway bioreactors was studied by geometric and mechanical similarity, with an order...
Aim of the present work is quantifying the mechanical stress generated by some major process equipme...
Biodiesels from microalgae are a promising alternative to fossil fuels with a number of unique benef...
Outdoor studies were conducted on microalgae cultures in two raceway ponds (kept in constant motion ...
A study of the effects of hydrodynamic turbulent shear stress on the biological responses of carrot ...
Microalgae cultivation is a critical prerequisite of biomass and biofuels production, which is condu...
Turbulent mixing plays an important role in the distribution of sunlight, carbon dioxide, and nutrie...
Microalgae are a great source of food and supplements as well as a potential source for the producti...
Not AvailableRaceway Ponds (RWP) are single or multiple closed-loop, oblong and shallow re-circulati...
International audienceThis paper focuses on mixing strategies to enhance the growth of microalgae in...
Achieving optimal nutrient concentrations is essential to increasing the biomass productivity of alg...
Studies involving the use of microalgae are increasingly intensifying for the potential they present...