Howard L. Hendrix
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Also affiliated: Electric Power Research Institute (2013); Southern Company (United States) (2002)
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Biography and Research Information
OverviewAI-generated summary
Howard L. Hendrix's research program focuses on the environmental impacts and material science considerations of energy systems. His work includes an analysis of greenhouse gas emissions associated with algal biorefineries and ethanol production, examining various CO2 sourcing scenarios. Additionally, he has investigated the materials required for advanced ultrasupercritical steam turbines, including component demonstration projects.
Hendrix has also studied filtration systems for high-temperature and high-pressure applications in gasification and combustion operations. His collaborative work extends to broader educational initiatives, as evidenced by his role as Co-PI on an NSF grant aimed at expanding the scientific workforce in rural regions through scholarships and community investment.
With an h-index of 7, 17 total publications, and 132 citations, Hendrix maintains an active research presence. His recent work in 2023 addresses the modeling and optimization of carbon-negative natural gas combined cycle plants integrated with direct air capture technology.
Metrics
- h-index: 7
- Publications: 17
- Citations: 132
Selected Publications
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Modeling and optimization of carbon-negative NGCC plant enabled by modular direct air capture (2023)
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Positive Power with Negative Emission Flexible NGCC Enable by Modular Direct Air Capture (Final Report) (2022)
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Greenhouse Gas Impact of Algal Bio-Crude Production for a Range of CO2 Supply Scenarios (2021)
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Lifecycle greenhouse gas emissions for an ethanol production process based on genetically modified cyanobacteria: CO2 sourcing options (2020)
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Life cycle greenhouse gas emissions of different CO2 supply options for an algal biorefinery (2020)
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The once and future beast: Human technological success and the nostalgia for a superpredator (1996)
Federal Grants 1 $2,499,998 total
Collaboration Network
Top Collaborators
- Life cycle greenhouse gas emissions of different CO2 supply options for an algal biorefinery
- Modeling and optimization of carbon-negative NGCC plant enabled by modular direct air capture
- Greenhouse Gas Impact of Algal Bio-Crude Production for a Range of CO2 Supply Scenarios
- Lifecycle greenhouse gas emissions for an ethanol production process based on genetically modified cyanobacteria: CO2 sourcing options
- Positive Power with Negative Emission Flexible NGCC Enable by Modular Direct Air Capture (Final Report)
- Life cycle greenhouse gas emissions of different CO2 supply options for an algal biorefinery
- Greenhouse Gas Impact of Algal Bio-Crude Production for a Range of CO2 Supply Scenarios
- Lifecycle greenhouse gas emissions for an ethanol production process based on genetically modified cyanobacteria: CO2 sourcing options
- Life cycle greenhouse gas emissions of different CO2 supply options for an algal biorefinery
- Greenhouse Gas Impact of Algal Bio-Crude Production for a Range of CO2 Supply Scenarios
- Lifecycle greenhouse gas emissions for an ethanol production process based on genetically modified cyanobacteria: CO2 sourcing options
- Life cycle greenhouse gas emissions of different CO2 supply options for an algal biorefinery
- Greenhouse Gas Impact of Algal Bio-Crude Production for a Range of CO2 Supply Scenarios
- Lifecycle greenhouse gas emissions for an ethanol production process based on genetically modified cyanobacteria: CO2 sourcing options
- Life cycle greenhouse gas emissions of different CO2 supply options for an algal biorefinery
- Greenhouse Gas Impact of Algal Bio-Crude Production for a Range of CO2 Supply Scenarios
- Lifecycle greenhouse gas emissions for an ethanol production process based on genetically modified cyanobacteria: CO2 sourcing options
- Modeling and optimization of carbon-negative NGCC plant enabled by modular direct air capture
- Positive Power with Negative Emission Flexible NGCC Enable by Modular Direct Air Capture (Final Report)
- Modeling and optimization of carbon-negative NGCC plant enabled by modular direct air capture
- Positive Power with Negative Emission Flexible NGCC Enable by Modular Direct Air Capture (Final Report)
- Lifecycle greenhouse gas emissions for an ethanol production process based on genetically modified cyanobacteria: CO2 sourcing options
- Modeling and optimization of carbon-negative NGCC plant enabled by modular direct air capture
- Modeling and optimization of carbon-negative NGCC plant enabled by modular direct air capture
- Modeling and optimization of carbon-negative NGCC plant enabled by modular direct air capture
- Positive Power with Negative Emission Flexible NGCC Enable by Modular Direct Air Capture (Final Report)
- Positive Power with Negative Emission Flexible NGCC Enable by Modular Direct Air Capture (Final Report)
- Positive Power with Negative Emission Flexible NGCC Enable by Modular Direct Air Capture (Final Report)
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