Compared to mechanical extraction methods, pulsed electric field (PEF) treatment provides an energy-efficient and gentle alternative. However, the biological processes involved are poorly understood. The unicellular green microalga Chlorella vulgaris was used as model organism to investigate the effect of PEF treatment on biological cells. A viability assay using fluorescein diacetate measured by flow cytometry was established. The influence of developmental stage on viability could be shown in synchronised cultures when applying PEF treatment with very low specific energies where one part of cells undergoes cell death, and the other part stays viable after treatment. Reactive oxygen species generation after similar low-energy PEF treatment...
Microalgae-based biorefinery concepts can contribute to providing sufficient resources for a growing...
Recovery of intracellular components from microalgae requires a cell disruption step. In recent year...
Recovery of intracellular components from microalgae requires a cell disruption step. In recent year...
Pulsed Electric Fields (PEF) and High Pressure Homogenization (HPH) are promising and scalable cell ...
Pulsed Electric Fields (PEF) and High Pressure Homogenization (HPH) are promising and scalable cell ...
Pulsed Electric Fields (PEF) and High Pressure Homogenization (HPH) are promising and scalable cell ...
One of the major global challenges of the 21st century is the sustainable supply of the growing worl...
There is growing demand for gentle technologies to improve the lipid bioaccessibility (BA) of Chlore...
The synergistic effect of temperature (25–65 C) and total specific energy input (0.55–1.11 kWh kgDW ...
The synergistic effect of temperature (25–65 C) and total specific energy input (0.55–1.11 kWh kgDW ...
The synergistic effect of temperature (25–65 C) and total specific energy input (0.55–1.11 kWh kgDW ...
Pulsed electric field (PEF) treatment is a promising technology for efficient lipid extraction from ...
Pulsed electric field (PEF) treatment can be used to facilitate microbial cell lysis. The aim of thi...
Pulsed electric field (PEF) treatment is a promising technology for efficient lipid extraction from ...
Pulsed electric field (PEF) treatment is a promising technology for efficient lipid extraction from ...
Microalgae-based biorefinery concepts can contribute to providing sufficient resources for a growing...
Recovery of intracellular components from microalgae requires a cell disruption step. In recent year...
Recovery of intracellular components from microalgae requires a cell disruption step. In recent year...
Pulsed Electric Fields (PEF) and High Pressure Homogenization (HPH) are promising and scalable cell ...
Pulsed Electric Fields (PEF) and High Pressure Homogenization (HPH) are promising and scalable cell ...
Pulsed Electric Fields (PEF) and High Pressure Homogenization (HPH) are promising and scalable cell ...
One of the major global challenges of the 21st century is the sustainable supply of the growing worl...
There is growing demand for gentle technologies to improve the lipid bioaccessibility (BA) of Chlore...
The synergistic effect of temperature (25–65 C) and total specific energy input (0.55–1.11 kWh kgDW ...
The synergistic effect of temperature (25–65 C) and total specific energy input (0.55–1.11 kWh kgDW ...
The synergistic effect of temperature (25–65 C) and total specific energy input (0.55–1.11 kWh kgDW ...
Pulsed electric field (PEF) treatment is a promising technology for efficient lipid extraction from ...
Pulsed electric field (PEF) treatment can be used to facilitate microbial cell lysis. The aim of thi...
Pulsed electric field (PEF) treatment is a promising technology for efficient lipid extraction from ...
Pulsed electric field (PEF) treatment is a promising technology for efficient lipid extraction from ...
Microalgae-based biorefinery concepts can contribute to providing sufficient resources for a growing...
Recovery of intracellular components from microalgae requires a cell disruption step. In recent year...
Recovery of intracellular components from microalgae requires a cell disruption step. In recent year...