There is a need for biomethane capture and carbon dioxide sequestration to mitigate evident global climate change. This research work investigated the potential for microalgae to remove CO2 from biogas as a biotechnical method for upgrading the thermal value for subsequent compression, liquification, or introduction to natural gas pipelines. Because biogas is largely methane, the effect of high methane environments on mixed microalgae was explored and found that specific carbon utilization rates were not statistically different when microalgae were exposed to biogas environments (70% v/v CH4) , relative to high CO2 environment. The uses of conventional bubbled column photobioreactors (PBR) were assessed for CO2 removal and subsequent CH4 en...
Bio-methane as renewable energy can generate slurry waste and CO2. Utilization of slurry has been e...
Global warming is a worldwide problem due to increasing emissions of greenhouse gases (GHGs) in the ...
Photosynthetic biogas upgrading constitutes, to the best of our knowledge, the only biotechnology ca...
There is a need for biomethane capture and carbon dioxide sequestration to mitigate evident global c...
© 2017 Dr. Qi ZhengMicroalgae have great yet relatively untapped potential as a highly productive cr...
The CO₂ emission has encouraged the research on C0₂ mitigation by microalgae. However, low carbonati...
Aims: To achieve the functional specialization of a microalgae community through operational tuning ...
Microalgae are able to absorb CO2 generated from sources such as flue gas to produce biomass with hi...
Biogas is known as an alternative source of energy, due to the high methane content present in the g...
Recent studies showed that as low as 5% CO2 increased microalgae growth. However, common bioreactor ...
Biohydrogen (H2) has been identified as a potential renewable energy source to substitute energy-bas...
With increasing anthropogenic influence on earth, fossil fuel usage, the principal emission source o...
Algae are microscopic photosynthetic prokaryotic or eukaryotic organisms that can naturally grow in ...
Technical advances and the increased urgency to reduce greenhouse gas emissions have lately revived ...
Carbon dioxide (CO2) is one of the most important contributors for the increase of the greenhouse ef...
Bio-methane as renewable energy can generate slurry waste and CO2. Utilization of slurry has been e...
Global warming is a worldwide problem due to increasing emissions of greenhouse gases (GHGs) in the ...
Photosynthetic biogas upgrading constitutes, to the best of our knowledge, the only biotechnology ca...
There is a need for biomethane capture and carbon dioxide sequestration to mitigate evident global c...
© 2017 Dr. Qi ZhengMicroalgae have great yet relatively untapped potential as a highly productive cr...
The CO₂ emission has encouraged the research on C0₂ mitigation by microalgae. However, low carbonati...
Aims: To achieve the functional specialization of a microalgae community through operational tuning ...
Microalgae are able to absorb CO2 generated from sources such as flue gas to produce biomass with hi...
Biogas is known as an alternative source of energy, due to the high methane content present in the g...
Recent studies showed that as low as 5% CO2 increased microalgae growth. However, common bioreactor ...
Biohydrogen (H2) has been identified as a potential renewable energy source to substitute energy-bas...
With increasing anthropogenic influence on earth, fossil fuel usage, the principal emission source o...
Algae are microscopic photosynthetic prokaryotic or eukaryotic organisms that can naturally grow in ...
Technical advances and the increased urgency to reduce greenhouse gas emissions have lately revived ...
Carbon dioxide (CO2) is one of the most important contributors for the increase of the greenhouse ef...
Bio-methane as renewable energy can generate slurry waste and CO2. Utilization of slurry has been e...
Global warming is a worldwide problem due to increasing emissions of greenhouse gases (GHGs) in the ...
Photosynthetic biogas upgrading constitutes, to the best of our knowledge, the only biotechnology ca...