BackgroundFor a commercially feasible microalgal triglyceride (TAG) production, high TAG productivities are required. The operational strategy affects TAG productivity but a systematic comparison between different strategies is lacking. For this, physiological responses of Nannochloropsis sp. to nitrogen (N) starvation and N-rich medium replenishment were studied in lab-scale batch and repeated-batch (part of the culture is periodically harvested and N-rich medium is re-supplied) cultivations under continuous light, and condensed into a mechanistic model.ResultsThe model, which successfully described both strategies, was used to identify potential improvements for both batch and repeated-batch and compare the two strategies on optimized TAG...
Background Many microalgae accumulate carbohydrates simultaneously with triacylglycerol (TAG) upon n...
Stress state of microalgal cells is caused under unfavorable conditions such as disordered light reg...
<p>In <strong>chapter 1</strong> we introduce microalgae, photosynthetic microorganisms with potenti...
BackgroundFor a commercially feasible microalgal triglyceride (TAG) production, high TAG productivit...
Microalgal triglycerides (TAGs) represent a sustainable feedstock for food, chemical and biofuel ind...
Microalgal triglycerides (TAGs) are promising feedstocks for the commodity markets (i.e. food, chemi...
Background: Microalgal triacylglycerides (TAGs) are a promising sustainable feedstock for the biofue...
Additional file 3. Maximum photosystem II efficiency in batch and repeated-batch. Time-evolution of ...
Abstract Background Triacylglycerol (TAG) from photosynthetic microalgae is a sustainable feedstock ...
Triacylglycerol (TAG) accumulation in the microalgae Nannochloropsis gaditana is induced by nitrogen...
AbstractBackgroundTriacylglycerol (TAG) from photosynthetic microalgae is a sustainable feedstock fo...
Microalgae-derived lipids in the form of triacylglycerols (TAGs) are considered an alternative resou...
In this paper the hypothesis was tested whether TAG accumulation serves as an energy sink when micro...
Microalgae are a sustainable source of lipids. A commonly used strategy for lipid accumulation in mi...
.<strong>Abstract long</strong> Global demands for food and biofuels increase rapidly, together with...
Background Many microalgae accumulate carbohydrates simultaneously with triacylglycerol (TAG) upon n...
Stress state of microalgal cells is caused under unfavorable conditions such as disordered light reg...
<p>In <strong>chapter 1</strong> we introduce microalgae, photosynthetic microorganisms with potenti...
BackgroundFor a commercially feasible microalgal triglyceride (TAG) production, high TAG productivit...
Microalgal triglycerides (TAGs) represent a sustainable feedstock for food, chemical and biofuel ind...
Microalgal triglycerides (TAGs) are promising feedstocks for the commodity markets (i.e. food, chemi...
Background: Microalgal triacylglycerides (TAGs) are a promising sustainable feedstock for the biofue...
Additional file 3. Maximum photosystem II efficiency in batch and repeated-batch. Time-evolution of ...
Abstract Background Triacylglycerol (TAG) from photosynthetic microalgae is a sustainable feedstock ...
Triacylglycerol (TAG) accumulation in the microalgae Nannochloropsis gaditana is induced by nitrogen...
AbstractBackgroundTriacylglycerol (TAG) from photosynthetic microalgae is a sustainable feedstock fo...
Microalgae-derived lipids in the form of triacylglycerols (TAGs) are considered an alternative resou...
In this paper the hypothesis was tested whether TAG accumulation serves as an energy sink when micro...
Microalgae are a sustainable source of lipids. A commonly used strategy for lipid accumulation in mi...
.<strong>Abstract long</strong> Global demands for food and biofuels increase rapidly, together with...
Background Many microalgae accumulate carbohydrates simultaneously with triacylglycerol (TAG) upon n...
Stress state of microalgal cells is caused under unfavorable conditions such as disordered light reg...
<p>In <strong>chapter 1</strong> we introduce microalgae, photosynthetic microorganisms with potenti...