Microalgae-based carbon dioxide (CO2) biofixation and biorefinery are the most efficient methods of biological CO2 reduction and reutilization. The diversification and high-value byproducts of microalgal biomass, known as microalgae-based biorefinery, are considered the most promising platforms for the sustainable development of energy and the environment, in addition to the improvement and integration of microalgal cultivation, scale-up, harvest, and extraction technologies. In this review, the factors influencing CO2 biofixation by microalgae, including microalgal strains, flue gas, wastewater, light, pH, temperature, and microalgae cultivation systems are summarized. Moreover, the biorefinery of Chlorella biomass for producing biofuels a...
Technical advances and the increased urgency to reduce greenhouse gas emissions have lately revived ...
Intense utilization of natural fuel resources is threatening the global environment and societal sus...
The pure cultures of microalgae Chlorella vulgaris ATCC 13482 and Scenedesmus obliquus FACHB 417 wer...
Microalgae cultivation and biomass to biochar conversion is a potential approach for global carbon s...
Algae are microscopic photosynthetic prokaryotic or eukaryotic organisms that can naturally grow in ...
Algae are microscopic photosynthetic prokaryotic or eukaryotic organisms that can naturally grow in ...
Over the last decade, intensive research has been carried out all over the world to explore the huge...
Microalgae contribute up to 60% of the oxygen content in the Earth’s atmosphere by absorbing carbon ...
Microalgae contribute up to 60% of the oxygen content in the Earth’s atmosphere by absorbing carbon ...
Microalgae have reported to be one of the most promising feedstock for biofuel production. However, ...
Carbon dioxide (CO2) is one of the most important contributors for the increase of the greenhouse ef...
Microalgae have reported to be one of the most promising feedstock for biofuel production. However, ...
Microalgal biomass has been proved to be a sustainable source for biofuels including bio-oil, biodie...
The recognised deficiencies in sustainable development and the extensive environmental deterioration...
ABSTRACT: Microalgae-based bioproducts remain expensive mainly due to microalgae cultivation, harves...
Technical advances and the increased urgency to reduce greenhouse gas emissions have lately revived ...
Intense utilization of natural fuel resources is threatening the global environment and societal sus...
The pure cultures of microalgae Chlorella vulgaris ATCC 13482 and Scenedesmus obliquus FACHB 417 wer...
Microalgae cultivation and biomass to biochar conversion is a potential approach for global carbon s...
Algae are microscopic photosynthetic prokaryotic or eukaryotic organisms that can naturally grow in ...
Algae are microscopic photosynthetic prokaryotic or eukaryotic organisms that can naturally grow in ...
Over the last decade, intensive research has been carried out all over the world to explore the huge...
Microalgae contribute up to 60% of the oxygen content in the Earth’s atmosphere by absorbing carbon ...
Microalgae contribute up to 60% of the oxygen content in the Earth’s atmosphere by absorbing carbon ...
Microalgae have reported to be one of the most promising feedstock for biofuel production. However, ...
Carbon dioxide (CO2) is one of the most important contributors for the increase of the greenhouse ef...
Microalgae have reported to be one of the most promising feedstock for biofuel production. However, ...
Microalgal biomass has been proved to be a sustainable source for biofuels including bio-oil, biodie...
The recognised deficiencies in sustainable development and the extensive environmental deterioration...
ABSTRACT: Microalgae-based bioproducts remain expensive mainly due to microalgae cultivation, harves...
Technical advances and the increased urgency to reduce greenhouse gas emissions have lately revived ...
Intense utilization of natural fuel resources is threatening the global environment and societal sus...
The pure cultures of microalgae Chlorella vulgaris ATCC 13482 and Scenedesmus obliquus FACHB 417 wer...