International audienceMicroalgae are able to convert nutrients (nitrogen and phosphorus) from wastewater into biomass and bio-products, thus improving the sustainability of wastewater treatment. In High Rate Algal Ponds (HRAP), biomass productivity and water treatment efficiency are highly dependent on environmental parameters such as temperature, light intensity and photoperiod. The influence of temperature and photoperiod on biomass productivity and the removal of dissolved nitrogen and phosphorus from municipal wastewater by a native microalgae-bacteria consortium was assessed in batch cultures in view of the development of an HRAP at a larger scale. Temperature affected the growth rate and microalgae biomass production as well as ammoni...
The phosphorus and nitrogen removing capacity of a microalgal treatment step in Sweden was studied d...
Eutrophication of surface water has become an environmental concern in recent decades. High concentr...
This study demonstrates that microalgae can effectively recover all P and N from anaerobically treat...
International audienceMicroalgae are able to convert nutrients (nitrogen and phosphorus) from wastew...
International audienceMicroalgae are able to convert nutrients (nitrogen and phosphorus) from wastew...
AbstractMicroalgae are able to convert nutrients (nitrogen and phosphorus) from wastewater into biom...
AbstractMicroalgae are able to convert nutrients (nitrogen and phosphorus) from wastewater into biom...
[EN] The aim of this study was to evaluate the effect of light intensity and temperature on nutrient...
[EN] The aim of this study was to evaluate the effect of light intensity and temperature on nutrient...
As part of a research project aiming to develop and evaluate a hydroponic system for wastewater trea...
International audienceSeveral studies focused on wastewater treatment in High Rate Algal Ponds (HRAP...
WOS:000468144100032Several studies focused on wastewater treatment in High Rate Algal Ponds (HRAP) s...
High rate algal ponds (HRAPs) are an advanced pond that provide efficient and cost-effective wastewa...
Various resources from a municipal wastewater treatment plant (MWTP) are available for microalgae cu...
WOS: 000471790300001Microalgae are used in wastewater treatment successfully by the uptake of nutrie...
The phosphorus and nitrogen removing capacity of a microalgal treatment step in Sweden was studied d...
Eutrophication of surface water has become an environmental concern in recent decades. High concentr...
This study demonstrates that microalgae can effectively recover all P and N from anaerobically treat...
International audienceMicroalgae are able to convert nutrients (nitrogen and phosphorus) from wastew...
International audienceMicroalgae are able to convert nutrients (nitrogen and phosphorus) from wastew...
AbstractMicroalgae are able to convert nutrients (nitrogen and phosphorus) from wastewater into biom...
AbstractMicroalgae are able to convert nutrients (nitrogen and phosphorus) from wastewater into biom...
[EN] The aim of this study was to evaluate the effect of light intensity and temperature on nutrient...
[EN] The aim of this study was to evaluate the effect of light intensity and temperature on nutrient...
As part of a research project aiming to develop and evaluate a hydroponic system for wastewater trea...
International audienceSeveral studies focused on wastewater treatment in High Rate Algal Ponds (HRAP...
WOS:000468144100032Several studies focused on wastewater treatment in High Rate Algal Ponds (HRAP) s...
High rate algal ponds (HRAPs) are an advanced pond that provide efficient and cost-effective wastewa...
Various resources from a municipal wastewater treatment plant (MWTP) are available for microalgae cu...
WOS: 000471790300001Microalgae are used in wastewater treatment successfully by the uptake of nutrie...
The phosphorus and nitrogen removing capacity of a microalgal treatment step in Sweden was studied d...
Eutrophication of surface water has become an environmental concern in recent decades. High concentr...
This study demonstrates that microalgae can effectively recover all P and N from anaerobically treat...