In this study, biomass production and domestic sewage treatment in hybrid systems under bacterial-microalga consortia were assessed. Biomass was grown suspended in the growth media of high-rate ponds (HRPs) and attached in biofilm reactors (BRs). These hybrid systems were operated with and without the addition of CO2 (HS2 and HS1, respectively) in the HRP growth media. The performances of these systems were compared with that of a conventional HRP with CO2 supplementation. Regarding sewage treatment with microalgae and bacteria consortia, the three systems showed no significant differences in the removal of organisms associated with faecal contamination, organic matter and most nutrients. However, nitrate levels were increased in the hybrid...
Abstract Background Microalgae have shown clear advantages for the production of biofuels compared w...
Wastewater treatment plants (WWTPs) contribute to CO2 emissions in atmosphere through direct (biolog...
Microalgae are promising candidates for recycling of carbon dioxide (CO2) into renewable bioproducts...
In this study, biomass production and domestic sewage treatment in hybrid systems under bacterial-mi...
The microalgal biomass applications strongly depend on cell composition and the production of low co...
O presente estudo teve como objetivo a avaliação do desempenho de sistemas híbridos na otimização do...
Challenges regarding microalgal cultivation need to be solved in order to enhance microalgae potenti...
Microalgae can be used for the treatment of municipal wastewater. The application of microalgal biof...
High rate algal ponds (HRAPs) can be utilised as an efficient and economical wastewater treatment me...
In the concept of a circular economy, wastewater is no longer waste but a resource for water, energy...
Symbiotic microalgal–bacterial biofilms can be very attractive for municipal wastewater treatment. M...
Algae can play a positive role in wastewater treatment by recycling of nutrients, by taking up carbo...
Scenedesmus obliquus, Chlorella vulgaris, Chlorella kessleri and a natural Bloom were cultivated in ...
Biofilm-based microalgal growth was determined as functions of organic chemical loading and water te...
Wastewater treatment plants (WWTPs) contribute to CO2 emissions in atmosphere through direct (biolog...
Abstract Background Microalgae have shown clear advantages for the production of biofuels compared w...
Wastewater treatment plants (WWTPs) contribute to CO2 emissions in atmosphere through direct (biolog...
Microalgae are promising candidates for recycling of carbon dioxide (CO2) into renewable bioproducts...
In this study, biomass production and domestic sewage treatment in hybrid systems under bacterial-mi...
The microalgal biomass applications strongly depend on cell composition and the production of low co...
O presente estudo teve como objetivo a avaliação do desempenho de sistemas híbridos na otimização do...
Challenges regarding microalgal cultivation need to be solved in order to enhance microalgae potenti...
Microalgae can be used for the treatment of municipal wastewater. The application of microalgal biof...
High rate algal ponds (HRAPs) can be utilised as an efficient and economical wastewater treatment me...
In the concept of a circular economy, wastewater is no longer waste but a resource for water, energy...
Symbiotic microalgal–bacterial biofilms can be very attractive for municipal wastewater treatment. M...
Algae can play a positive role in wastewater treatment by recycling of nutrients, by taking up carbo...
Scenedesmus obliquus, Chlorella vulgaris, Chlorella kessleri and a natural Bloom were cultivated in ...
Biofilm-based microalgal growth was determined as functions of organic chemical loading and water te...
Wastewater treatment plants (WWTPs) contribute to CO2 emissions in atmosphere through direct (biolog...
Abstract Background Microalgae have shown clear advantages for the production of biofuels compared w...
Wastewater treatment plants (WWTPs) contribute to CO2 emissions in atmosphere through direct (biolog...
Microalgae are promising candidates for recycling of carbon dioxide (CO2) into renewable bioproducts...